USPatent applicationPatented

Method of chinese herbal medicine extract used for treating multiple diseases caused by drug resistant bacteria infection

Granted 26 Oct 2021 · 6 office actions

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Abstract

Disclosed is a new drug application of a Pithecellobium Clypearia Benth Extract (EA), and particularly is a method of the EA used for treating multiple diseases caused by drug resistant bacteria infection. Related drug resistant bacteria include a Multi-Drug Resistant (MDR) Acinetobacter Baumannii (MDRAB), an MDR Pseudomonas Aeruginosa (MDRPA), an Extended-Spectrum Beta-Lactamase (ESBL) producing Escherichia Coli (ECO) and an ESBL-producing Klebsiella Pneumonia (KPN).

Description

14 parts
›CROSS-REFERENCE TO RELATED APPLICATIONS

The present application is a continuation application of PCT application No. PCT/CN2017/071671 filed on Jan. 19, 2017, which claims the benefit of Chinese patent application Nos. 201610308716.7, 201610308717.1, 201610308207.4 and 201610308718.6, each filed on May 10, 2016. The contents of all of the above are hereby incorporated by reference.

›TECHNICAL FIELD

The present disclosure relates to a new drug application of a Pithecellobium Clypearia Benth Extract (EA), and particularly, to a method of the EA used for treating multiple diseases caused by drug resistant bacteria infection.

›BACKGROUND

The twenty-first century is an age of Multi-Drug Resistant (MDR) bacteria. After 60 years of clinical use of an antibiotic, more and more hospital infections and infections with the MDR bacteria have become a major challenge to clinical antibacterial treatment at present. Since a first case of clinical Methicillin-Resistant Staphylococcus Aureus (MRSA) infected patient was reported by Jerons in 1961, the MRSA infections have gradually spread all over the world till now. In 2011, China Bacterial Resistance Surveillance in clinic showed that, in distribution of main drug resistant bacteria, escherichia coli and klebsiella pneumonia produced Extended-Spectrum Beta-Lactamase (ESBL) strains respectively were 50.7% and 38.5%, and the transition and current status of the drug resistance thereof are highly concerned. In addition, according to an annual report 2010 from a Drug Resistance Surveillance Cooperating Group of Ministry of Health, pathogenic bacteria separated by acinetobacter baumannii and pseudomonas aeruginosa in a hospital ICU ranked the top, and the drug resistance rates of the acinetobacter baumannii to imipenem (IMP) and meropenem respectively were up to 60.4% and 61.4%. To sum up, in various MRSA and ESBL produced bacteria, the clinical occupied rates of the MDR Acinetobacter Baumannii (MDRAB) and Pseudomonas Aeruginosa (MDRPA) have been growing every year. Under the pressure that the drug resistance rates are rising continuously, the antibiotic treatment is facing an enormous challenge. In order to prevent further deterioration of a bacterial drug resistant phenomenon, experts and scholars are sparing no effort to discover a new method for inhibiting bacterial growth and treating a bacteria-induced disease. A research has been reported and proved that traditional Chinese herbal medicines such as Coptis chinensis, Scutellaria baicalensis and Forsythia suspensa have a certain inhibition effect to different drug resistant bacteria. The key to further research the Chinese herbal medicine to inhibit the growth of the drug resistant bacteria is to discover a new Chinese herbal medicine with a stronger bactericidal capacity and a wider drug resistant inhibitory spectrum.

With Pithecellobium bigemimum (L.) Benth as a scientific name, the Pithecellobium clypearia Benth is dry young branches and leaves of mimosa pithecellobium plant that is the Pithecellobium clypearia Benth. It is cold, tastes bitter and has the effects of clearing away heat and toxic materials, astringing dampness and healing sore. It is a unique southern medicinal material for treating multiple heat toxin symptoms.

Currently, there has disclosed in a literature that the Pithecellobium clypearia Benth and an extract thereof have an antiviral effect, but lacks a research in an effect of the Pithecellobium clypearia Benth and the extract thereof in aspect of anti-drug resistant bacteria.

›SUMMARY

In order to overcome the above defects, the present disclosure discloses an application of an EA in preparing a drug resistant bacteria resistant drug and in an aspect of a sensibilization effect by using with a similar antibiotic thereof, specifically:

1. a method of the EA used for treating disease caused by an MDRAB resistant infection, in which the EA is used with an antibiotic IMP or Tetracycline (TE) or Polymycin B (POLB) or Ceftazidime (CAZ) or Levofloxacin (LVX) and all show an obvious sensibilization effect;

2. a method of the EA used for treating disease caused by an MDRPA resistant infection, in which the EA is used with an antibiotic LVX or IMP or Amikacin (AMK) or CAZ or Cefoperazone (CFP) and all show an obvious sensibilization effect;

3. a method of the EA used for treating disease caused by an ESBL-producing Escherichia Coli (ECO) resistant infection, in which the EA is used with an antibiotic AMK or Compound Sulfamethoxazole (SXT) and all show an obvious sensibilization effect;

4. a method of the EA used for treating disease caused by an ESBL-producing Klebsiella Pneumonia (KPN) resistant infection, in which the EA shows an obvious inhibitory effect to the ESBL-producing KPN.

The EA preferably is a Pithecellobium clypearia Benth water extract or a Pithecellobium clypearia Benth ethanol extract.

A method for preparing the EA is as follows: extracting Pithecellobium clypearia Benth coarse powder with water or an ethanol aqueous solution having a concentration of 10%-95% by a volume ratio, and then extracting an obtained extracting solution with ethyl acetate, in which the obtained extract is a final product. The ethanol aqueous solution preferably is an ethanol aqueous solution having the concentration of 60% by the volume ratio.

In the present disclosure, the drug includes a human drug or an animal drug, or a soil treatment drug or preparation.

The present disclosure achieves the following beneficial effects.

The present disclosure first discloses the antibacterial effect of the EA to the MDRAB, the MDRPA, the ESBL-producing ECO and the ESBL-producing KPN and the sensibilization effect by using with the antibiotics thereof.

A test proves that the EA by using with the IMP or the TE or the POLB or the CAZ or the LVX has a synergistic effect to the MDRA resistance, and compared with the single use, the usage of the antibiotic is reduced by 50%-87%.

The EA by using with the LVX or the IMP or the AMK or the CAZ or the CFP has a synergistic effect to the MDRPA resistance, and compared with the single use, the usage of the antibiotic is reduced by 50%-99.2%.

The EA by using with the AMK or the SXT has a synergistic effect to the ESBL-producing ECO, and compared with the single use, the usage of the antibiotic is reduced by 75%-99.3%.

The EA in the present disclosure can be taken as a natural antibacterial drug for the above drug resistant bacteria or a sensitizer similar to the antibiotic, and is applied to treatment of a disease caused by the above bacteria. The present disclosure provides a new way and a replacement drug to solve the drug resistant problem of the antibiotics, and is applied to the human drug, other animal drugs and soil remediation of corresponding infectious bacteria. It is a natural plant extract and has no side effect, and the extracting method is simple and environment-friendly.

›DETAILED DESCRIPTION OF THE EMBODIMENTS

The EA to resist the drug resistant bacteria and the pharmacological actions of the sensibilization effect to similar antibiotics will be further described with the reference to the following implementation solutions.

Preparation of the EA: the Pithecellobium clypearia Benth is provided by Guangzhou Huacheng Pharmaceutical Factory. An appropriate amount of Pithecellobium clypearia Benth medicinal materials are taken and are crushed into coarse powder; the coarse powder is reflowed for two times with water or with a 10%-95% ethanol aqueous solution, each time for 2 h, and is filtered; filtrates are merged and are condensed to obtain an extractum (namely, the Pithecellobium clypearia Benth water or ethanol extract); after being taken and suspended in the water, the extractum is extracted with ethyl acetate for three times, and ethyl acetate extracting solutions are merged and are condensed to obtain an ethyl acetate extract. The extract obtained by reflowing with a 10% ethanol aqueous solution is referred to as a Pithecellobium clypearia Benth 10% ethanol extract, and the extract obtained by reflowing with other concentrations of ethanol aqueous solutions are by that analogy.

Strains: test strains in the present disclosure all are provided by the Clinical Microbiology Lab of Department of Lab Medicine at First Affiliated Hospital of Sun Yat-Sen University and the drug resistance is tested and confirmed by the same.

Mycoplasma Hominis (MH) broth culture medium: 2.1 g of MH broth dry powder (British OXOID LTD.) is taken and a volume is fixed to 100 ml; the pH is adjusted to 7.0 with NAOH; and the culture medium is sterilized at a high pressure and is placed into a refrigerator at 4° C. for later use.

Determination methods of a Minimal Inhibitory Concentration (MIC) and a Minimum Bactericidal Concentration (MBC) of a test product: the MIC and the MBC of the Pithecellobium clypearia Benth water or ethanol extract to the MDRAB are determined by a microdilution broth method. And it is operated by referring to the microdilution broth method recommended by National Committee for Clinical Laboratory Standards (NCCLS).

Test methods of the sensibilization effects of the test product to similar antibiotics: it is operated by referring to a checkerboard assay recommended by NCCLS.

I. Inhibitory and bactericidal tests of MDRA resistance of the EA and test of the sensibilization effect by respectively using with the IMP or the TE or the POLB or the CAZ or the LVX

›Embodiment 1 · 1 of 3

1. Test Method

1) MIC Determination

The EA, the IMP, the TE, the POLB, the CAZ and the LVX are respectively diluted in the MH broth culture medium by a series of ratios, with each pore for 50 μl; the inoculant bacteria are adjusted to 1.0*10 6 CFU/ml and 50 μl of a bacteria solution is added to each pore; the culture is at 35° C. and for 24 h; and the concentration, at which no precipitate occurs, of a minimum antibacterial drug is the MIC.

2) MBC Determination

A spread plate count method is adopted. 50 μl of bacterial suspension is absorbed from a pore for sterile growth in item 1) to a blood plate, is uniformly coated and is cultured for 24 h at 35° C. Bacterial colonies are counted, and the concentration, at which the initial number of experimental viable bacteria is reduced by 99.9% or more, of the minimum antibacterial drug is the MBC.

By determining the MIC and the MBC of the drug and making statistics of the data to obtain MIC 50 , MIC 90 , MBC 50 and MBC 90 , the effect of the MDRA resistance of the drug is evaluated.

3) Checkerboard Assay

The checkerboard assay is performed in a 96-pore sterile culture plate. The EA, the IMP, the TE, the POLB and the CAZ are respectively diluted into a series of concentrations in a doubling manner in the MH broth culture medium, and two drugs are combined respectively at ¼MIC to 4 MIC; 25 μl of A drug and 25 μl of B drug are respectively added to each pore, the concentration of the bacterial suspension is adjusted to 1.0*10 6 CFU/ml, 50 μl of the bacteria solution is inoculated to each pore and is cultured for 24 h at 35° C.; and then, the MIC to the MDRAB after the A drug is used with the B drug is observed.

Calculation of a Fractional Inhibitory Concentration (FIC): FIC=S20b combined-use MIC/S20b single-use MIC+antibiotic combined-use MIC/antibiotic single-use MIC. By calculating the FIC, the combined antibacterial interaction between the EA and the antibiotic is evaluated, with synergistic effect for FIC≤0.5, additive effect for 0.5<FIC≤1, indifferent effect for 1<FIC≤2 and antagonistic effect for FIC>2. According to a sterile growth pore, the optimum concentration ratio between the EA and the antibiotic is founded out. At last, the effect of the EA to strengthen the efficacy of the antibiotic is evaluated.

The test products in the embodiment include: the Pithecellobium clypearia Benth water extract, the Pithecellobium clypearia Benth 10% ethanol extract, the Pithecellobium clypearia Benth 60% ethanol extract and the Pithecellobium clypearia Benth 95% ethanol extract.

The MDRABs are numbered as A1-A20.

2. Test Results

2.1 In-vitro inhibitory test results of the Pithecellobium clypearia Benth water extract and the five antibiotics (the IMP, the TE, the POLB, the CAZ and LVX) to the MDRABs are shown in table A1.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth water extract to the MDRABs are shown in table A2.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth water extract and the five antibiotics to the MDRABs is shown in table A3.

The statistic analysis on MBC 50 and MBC 90 of the Pithecellobium clypearia Benth water extract to the MDRABs is shown in table A4.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth water extract and the five antibiotics and distribution statistical results of the FIC values are shown in table A5 and table A6.

The sensibilization effects of the Pithecellobium clypearia Benth water extract to the five antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables A7-A12.

With the single use of the Pithecellobium clypearia Benth water extract to the MDRABs, the MIC 50 is 600 μg/ml, the MIC 90 is 600 μg/ml, the MBC 50 is 1200 μg/ml, and the MBC 90 is 1200 μg/ml.

It is indicated by FIC≤1 with the combined use of the Pithecellobium clypearia Benth water extract and the IMP that the two drugs have the synergistic effect or partial synergistic effect, wherein 35% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the concentration of the Pithecellobium clypearia Benth water extract is smaller than or equal to the single-use MIC, the MIC 50 of the IMP is reduced from single-use 32 μg/ml to 8 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 32 μg/ml to 16 μg/ml and is reduced by 50%.

It is indicated by FIC≤1 with the combined use of the Pithecellobium clypearia Benth water extract and the TE to the 20 MDRABs that the two drugs have the synergistic effect or partial synergistic effect, wherein 35% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth water extract is smaller than or equal to the single-use MIC, the MIC 50 of the TE is reduced from single-use 256 μg/ml to 64 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 512 μg/ml to 128 μg/ml and is reduced by 75%.

For the 20 MDRABs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth water extract and the POLB that the two drugs have no antagonistic effect, wherein 25% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth water extract is smaller than or equal to the single-use MIC, the MIC 50 of the POLB is reduced from single-use 4 μg/ml to 1 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 16 μg/ml to 4 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth water extract and the CAZ to the 20 MDRABs that the two drugs have no antagonistic effect, wherein 20% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth water extract is smaller than or equal to the single-use MIC, the MIC 50 of the CAZ is reduced from single-use 512 μg/ml to 128 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 512 μg/ml to 256 μg/ml and is reduced by 50%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth water extract and the LVX to the 20 MDRABs that the two drugs have no antagonistic effect, wherein 35% with FIC≤0.5 show that the two drugs have a certain synergistic effect. For the 20 MDRAB, when the Pithecellobium clypearia Benth water extract is smaller than or equal to the single-use MIC, the MIC 50 of the LVX is reduced from single-use 8 μg/ml to 2 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 32 μg/ml to 8 μg/ml and is reduced by 75%.

›Embodiment 1 · 2 of 3

2.2. In-vitro inhibitory test results of the Pithecellobium clypearia Benth 10% ethanol extract and the five antibiotics (the IMP, the TE, the POLB, the CAZ and the LVX) to the MDRABs are shown in table A13.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth 10% ethanol extract to the MDRABs are shown in table A14.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth 10% ethanol extract and the five antibiotics to the MDRABs is shown in table A15.

The statistic analysis on MBC 50 and MBC 90 of the EA to the MDRABs is shown in table A16.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth 10% ethanol extract and the five antibiotics and distribution statistical results of the FIC values are shown in table A17 and table A18.

The sensibilization effects of the Pithecellobium clypearia Benth 10% ethanol extract to the five antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables A19-A24.

With the single use of the Pithecellobium clypearia Benth 10% ethanol extract to the MDRABs, the MIC 50 is 600 μg/ml, the MIC 90 is 600 μg/ml, the MBC 50 is 1200 μg/ml, and the MBC 90 is 1200 μg/ml.

It is indicated by FIC≤1 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the IMP that the two drugs have the synergistic effect or partial synergistic effect, wherein 45% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the concentration of the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to ½ of the single-use MIC, the MIC 50 of the IMP is reduced from single-use 32 μg/ml to 8 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 32 μg/ml to 16 μg/ml and is reduced by 50%.

It is indicated by FIC≤1 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the TE to the 20 MDRABs that the two drugs have the synergistic effect or partial synergistic effect, wherein 45% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to ½ of the single-use MIC, the MIC 50 of the TE is reduced from single-use 256 μg/ml to 64 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 512 μg/ml to 256 μg/ml and is reduced by 50%.

For the 20 MDRABs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the POLB that the two drugs have no antagonistic effect, wherein 15% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the POLB is reduced from single-use 4 μg/ml to 1 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 16 μg/ml to 4 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the CAZ to the 20 MDRABs that the two drugs have no antagonistic effect, wherein 30% with FIC≤0.5 have the synergistic effect. When an ethyl acetate extract of the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to ½ of the single-use MIC, the MIC 50 of the CAZ is reduced from single-use 512 μg/ml to 128 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 512 μg/ml to 256 μg/ml and is reduced by 50%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the LVX to the 20 MDRABs that the two drugs have no antagonistic effect, wherein 25% with FIC≤0.5 show that the two drugs have a certain synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the LVX is reduced from single-use 8 μg/ml to 4 μg/ml and is reduced by 50%; and the MIC 90 is reduced from 32 μg/ml to 8 μg/ml and is reduced by 75%.

2.3. In-vitro inhibitory test results of the Pithecellobium clypearia Benth 60% ethanol extract and the five antibiotics (the IMP, the TE, the POLB, the CAZ and the LVX) to the MDRABs are shown in table A25.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth 60% ethanol extract to the MDRABs are shown in table A26.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth 60% ethanol extract and the five antibiotics to the MDRABs is shown in table A27.

The statistic analysis on MBC 50 and MBC 90 of the EA to the MDRABs is shown in table A28.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth 60% ethanol extract and the five antibiotics and distribution statistical results of the FIC values are shown in table A29 and table A30.

The sensibilization effects of the Pithecellobium clypearia Benth 60% ethanol extract to the five antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables A31-A36.

With the single use of the Pithecellobium clypearia Benth 60% ethanol extract to the MDRABs, the MIC 50 is 300 μg/ml, the MIC 90 is 600 μg/ml, the MBC 50 is 600 μg/ml, and the MBC 90 is 1200 μg/ml.

It is indicated by FIC≤1 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the IMP that the two drugs have the synergistic effect or partial synergistic effect, wherein 70% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the concentration of the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to ½ of the single-use MIC, the MIC 50 of the IMP is reduced from single-use 32 μg/ml to 8 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 32 μg/ml to 16 μg/ml and is reduced by 50%.

It is indicated by FIC≤1 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the TE to the 20 MDRABs that the two drugs have the synergistic effect or partial synergistic effect, wherein 50% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to ½ of the single-use MIC, the MIC 50 of the TE is reduced from single-use 256 μg/ml to 32 μg/ml and is reduced by 87.5%; and the MIC 90 is reduced from 512 μg/ml to 128 μg/ml and is reduced by 75%.

›Embodiment 1 · 3 of 3

For the 20 MDRABs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the POLB that the two drugs have no antagonistic effect, wherein 15% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the POLB is reduced from single-use 4 μg/ml to 0.5 μg/ml and is reduced by 87.5%; and the MIC 90 is reduced from 16 μg/ml to 4 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the CAZ to the 20 MDRABs that the two drugs have no antagonistic effect, wherein 10% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to ½ of the single-use MIC, the MIC 50 of the CAZ is reduced from single-use 512 μg/ml to 128 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 512 μg/ml to 256 μg/ml and is reduced by 50%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the LVX to the 20 MDRABs that the two drugs have no antagonistic effect, wherein 5% with FIC≤0.5 show that the two drugs have a certain synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the LVX is reduced from single-use 8 μg/ml to 4 μg/ml and is reduced by 50%; and the MIC 90 is reduced from 32 μg/ml to 8 μg/ml and is reduced by 75%.

2.4. In-vitro inhibitory test results of the Pithecellobium clypearia Benth 95% ethanol extract and the five antibiotics (the IMP, the TE, the POLB, the CAZ and the LVX) to the MDRABs are shown in table A37.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth 95% ethanol extract to the MDRABs are shown in table A38.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth 95% ethanol extract and the five antibiotics to the MDRABs is shown in table A39.

The statistic analysis on MBC 50 and MBC 90 of the EA to the MDRABs is shown in table A40.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth 95% ethanol extract and the five antibiotics and distribution statistical results of the FIC values are shown in table A41 and table A42.

The sensibilization effects of the Pithecellobium clypearia Benth 95% ethanol extract to the five antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables A43-A48.

With the single use of the Pithecellobium clypearia Benth 95% ethanol extract to the MDRABs, the MIC 50 is 600 μg/ml, the MIC 90 is 600 μg/ml, the MBC 50 is 1200 μg/ml, and the MBC 90 is 1200 μg/ml.

It is indicated by FIC≤1 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the IMP that the two drugs have the synergistic effect or partial synergistic effect, wherein 55% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the concentration of the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the IMP is reduced from single-use 32 μg/ml to 8 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 32 μg/ml to 16 μg/ml and is reduced by 50%.

It is indicated by FIC≤1 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the TE to the 20 MDRABs that the two drugs have the synergistic effect or partial synergistic effect, wherein 35% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the TE is reduced from single-use 256 μg/ml to 32 μg/ml and is reduced by 87.5%; and the MIC 90 is reduced from 512 μg/ml to 128 μg/ml and is reduced by 75%.

For the 20 MDRABs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the POLB that the two drugs have no antagonistic effect, wherein 20% with FIC≤0.5 have the synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the POLB is reduced from single-use 4 μg/ml to 1 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 16 μg/ml to 4 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the CAZ to the 20 MDRABs that the two drugs have no antagonistic effect, wherein 10% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the CAZ is reduced from single-use 512 μg/ml to 128 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 512 μg/ml to 256 μg/ml and is reduced by 50%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the LVX to the 20 MDRABs that the two drugs have no antagonistic effect, wherein 20% with FIC≤0.5 show that the two drugs have a certain synergistic effect. For the 20 MDRABs, when the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the LVX is reduced from single-use 8 μg/ml to 4 μg/ml and is reduced by 50%; and the MIC 90 is reduced from 32 μg/ml to 8 μg/ml and is reduced by 75%.

II. Inhibitory and bactericidal tests of the MDRPA resistance of the EA and test of the sensibilization effect by respectively using with the LVX, the IMP, the AMK, the CAZ and the CFP

›Embodiment 2 · 1 of 3

1. Test method: the MDRPA (serial No.: P1-P20) strains are tested and are evaluated with reference to the method in the first embodiment.

2. Test Results:

2.1. In-vitro inhibitory test results of the Pithecellobium clypearia Benth water extract and the five antibiotics (the LVX, the IMP, the AMK, the CAZ and the CFP) to the MDRPAs are shown in table P1.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth water extract to the MDRPAs are shown in table P2.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the EA and the five antibiotics to the MDRPAs is shown in table P3.

The statistic analysis on MBC 50 and MBC 90 of the EA to the MDRPAs is shown in table P4.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth water extract and the five antibiotics and distribution statistical results of the FIC values are shown in table P5 and table P6.

The sensibilization effects of the Pithecellobium clypearia Benth water extract to the five antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables P7-P12.

With the single use of the EA to the MDRPA, the MIC 50 is 800 μg/ml, the MIC 90 is 1600 μg/ml, the MBC 50 is 1600 μg/ml, and the MBC 90 is 1600 μg/ml.

For the 20 MDRPAs, it is indicated by FIC≤2 with the combined use of the EA and the CAZ that the two drugs have no antagonistic effect, wherein 45% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the EA is smaller than or equal to the single-use MIC, the MIC 50 of the CAZ is reduced from single-use 32 μg/ml to 8 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 256 μg/ml to 64 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the EA and the CFP to the 20 MDRPAs that the two drugs have no antagonistic effect, wherein 35% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the EA is smaller than or equal to the single-use MIC, the MIC 50 of the CFP is reduced from single-use 64 μg/ml to 0.5 μg/ml and is reduced by 99.2%; and the MIC 90 is reduced from 512 μg/ml to 256 μg/ml and is reduced by 50%.

It is indicated by FIC≤2 with the combined use of the EA and the AMK that the two drugs have no antagonistic effect, wherein 35% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the EA is smaller than or equal to the single-use MIC, the MIC 50 of the AMK is reduced from single-use 1 μg/ml to 0.0625 μg/ml and is reduced by 93.75%; and the MIC 90 is reduced from 32 μg/ml to 2 μg/ml and is reduced by 93.75%.

It is indicated by FIC≤2 with the combined use of the EA and the IMP that the two drugs have no antagonistic effect, wherein 40% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the EA is smaller than or equal to the single-use MIC, the MIC 50 of the IMP is reduced from single-use 32 μg/ml to 2 μg/ml and is reduced by 93.75%; and the MIC 90 is reduced from 64 μg/ml to 16 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the EA and the LVX to the 20 MDRPAs that the two drugs have no antagonistic effect, wherein 15% with FIC≤0.5 show that the two drugs have a certain synergistic effect. For the 20 MDRPA, when the concentration of the EA is smaller than or equal to the single-use MIC, the MIC 50 of the LVX is reduced from single-use 4 μg/ml to 1 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 32 μg/ml to 8 μg/ml and is reduced by 75%.

2.2. In-vitro inhibitory test results of the Pithecellobium clypearia Benth 10% ethanol extract and the five antibiotics (the LVX, the IMP, the AMK, the CAZ and the CFP) to the MDRPAs are shown in table P13.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth 10% ethanol extract to the MDRPAs are shown in table P14.

According to statistic analysis, the in-vitro inhibitory and bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia Benth 10% ethanol extract and the five antibiotics to the MDRPAs are shown in table P15.

According to statistic analysis, the bactericidal MBC 50 and MBC 90 of the EA to the MDRPAs are shown in table P16.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth 10% ethanol extract and the five antibiotics and distribution statistical results of the FIC values are shown in table P17 and table P18.

The sensibilization effects of the Pithecellobium clypearia Benth 10% ethanol extract to the five antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables P19-P24.

With the single use of the Pithecellobium clypearia Benth 10% ethanol extract to the MDRPA, the MIC 50 is 800 μg/ml, the MIC 90 is 1600 μg/ml, the MBC 50 is 1600 μg/ml, and the MBC 90 is 1600 μg/ml.

For the 20 MDRPAs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the CAZ that the two drugs have no antagonistic effect, wherein 35% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the CAZ is reduced from single-use 32 μg/ml to 16 μg/ml and is reduced by 50%; and the MIC 90 is reduced from 256 μg/ml to 64 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the CFP to the 20 MDRPAs that the two drugs have no antagonistic effect, wherein 35% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the CFP is reduced from single-use 64 μg/ml to 4 μg/ml and is reduced by 93.75%; and the MIC 90 is reduced from 512 μg/ml to 256 μg/ml and is reduced by 50%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the AMK that the two drugs have no antagonistic effect, wherein 30% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the AMK is reduced from single-use 1 μg/ml to 0.0625 μg/ml and is reduced by 93.75%; and the MIC 90 is reduced from 32 μg/ml to 4 μg/ml and is reduced by 87.5%.

›Embodiment 2 · 2 of 3

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the IMP that the two drugs have no antagonistic effect, wherein 50% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the IMP is reduced from single-use 32 μg/ml to 2 μg/ml and is reduced by 93.75%; and the MIC 90 is reduced from 64 μg/ml to 16 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the LVX to the 20 MDRPAs that the two drugs have no antagonistic effect, wherein 15% with FIC≤0.5 show that the two drugs have a certain synergistic effect. For the 20 MDRPA, when the concentration of the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the LVX is reduced from single-use 4 μg/ml to 1 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 32 μg/ml to 4 μg/ml and is reduced by 87.5%.

2.3. In-vitro inhibitory test results of the Pithecellobium clypearia Benth 60% ethanol extract and the five antibiotics (the LVX, the IMP, the AMK, the CAZ and the CFP) to the MDRPAs are shown in table P25.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth 60% ethanol extract to the MDRPAs are shown in table P26.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth 60% ethanol extract and the five antibiotics to the MDRPAs is shown in table P27.

The statistic analysis on bactericidal MBC 50 and MBC 90 of the EA to the MDRPAs is shown in table P28.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth 60% ethanol extract and the five antibiotics and distribution statistical results of the FIC values are shown in table P29 and table P30.

The sensibilization effects of the Pithecellobium clypearia Benth 60% ethanol extract to the five antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables P31-P36.

With the single use of the Pithecellobium clypearia Benth 60% ethanol extract to the MDRPA, the MIC 50 is 800 μg/ml, the MIC 90 is 1600 μg/ml, the MBC 50 is 1600 μg/ml, and the MBC 90 is 1600 μg/ml.

For the 20 MDRPAs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the CAZ that the two drugs have no antagonistic effect, wherein 40% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the CAZ is reduced from single-use 32 μg/ml to 8 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 256 μg/ml to 64 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the CFP to the 20 MDRPAs that the two drugs have no antagonistic effect, wherein 20% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the CFP is reduced from single-use 64 μg/ml to 4 μg/ml and is reduced by 93.75%; and the MIC 90 is reduced from 512 μg/ml to 256 μg/ml and is reduced by 50%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the AMK that the two drugs have no antagonistic effect, wherein 20% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the AMK is reduced from single-use 1 μg/ml to 0.0625 μg/ml and is reduced by 93.75%; and the MIC 90 is reduced from 32 μg/ml to 2 μg/ml and is reduced by 93.75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the IMP that the two drugs have no antagonistic effect, wherein 15% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the IMP is reduced from single-use 32 μg/ml to 2 μg/ml and is reduced by 93.75%; and the MIC 90 is reduced from 64 μg/ml to 16 μg/ml and is reduced by 75%.

With the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the LVX to the 20 MDRPAs, there are four strains with FIC greater than 2 and has the antagonistic effect, wherein 10% with FIC≤0.5 show that the two drugs have a certain synergistic effect. For the 20 MDRPA, when the concentration of the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the LVX is reduced from single-use 4 μg/ml to 1 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 32 μg/ml to 8 μg/ml and is reduced by 75%.

2.4. In-vitro inhibitory test results of the Pithecellobium clypearia Benth 95% ethanol extract and the five antibiotics (the LVX, the IMP, the AMK, the CAZ and the CFP) to the MDRPAs are shown in table P37.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth 95% ethanol extract to the MDRPAs are shown in table P38.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth 95% ethanol extract and the five antibiotics to the MDRPAs is shown in table P39.

The statistic analysis on bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia Benth 95% ethanol extract to the MDRPAs is shown in table P40.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth 95% ethanol extract and the five antibiotics and distribution statistical results of the FIC values are shown in table P41 and table P42.

›Embodiment 2 · 3 of 3

The sensibilization effects of the Pithecellobium clypearia Benth 95% ethanol extract to the five antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables P43-P48.

With the single use of the Pithecellobium clypearia Benth 95% ethanol extract to the MDRPA, the MIC 50 is 800 μg/ml, the MIC 90 is 800 μg/ml, the MBC 50 is 1600 μg/ml, and the MBC 90 is 1600 μg/ml.

For the 20 MDRPAs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the CAZ that the two drugs have no antagonistic effect, wherein 25% with FIC≤0.5 have the synergistic effect.

For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the CAZ is reduced from single-use 32 μg/ml to 16 μg/ml and is reduced by 50%; and the MIC 90 is reduced from 256 μg/ml to 128 μg/ml and is reduced by 50%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the CFP to the 20 MDRPAs that the two drugs have no antagonistic effect, wherein 40% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the CFP is reduced from single-use 64 μg/ml to 4 μg/ml and is reduced by 93.75%; and the MIC 90 is reduced from 512 μg/ml to 128 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the AMK that the two drugs have no antagonistic effect, wherein 40% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the AMK is reduced from single-use 1 μg/ml to 0.12 μg/ml and is reduced by 87.5%; and the MIC 90 is reduced from 32 μg/ml to 4 μg/ml and is reduced by 87.5%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the IMP that the two drugs have no antagonistic effect, wherein 40% with FIC≤0.5 have the synergistic effect. For the 20 MDRPAs, when the concentration of the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the IMP is reduced from single-use 32 μg/ml to 4 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 64 μg/ml to 16 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the LVX to the 20 MDRPAs that the two drugs have no antagonistic effect, wherein 10% with FIC≤0.5 show that the two drugs have a certain synergistic effect. For the 20 MDRPA, when the concentration of the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 of the LVX is reduced from single-use 4 μg/ml to 1 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 32 μg/ml to 4 μg/ml and is reduced by 87.5%.

III. Inhibitory and bactericidal tests of the ESBL-producing escherichia coli (hereinafter referred to as an ESBL-producing ECO) resistance of the EA and test of the sensibilization effect by respectively using with the AMK or the SXT

›Embodiment 3 · 1 of 2

1. Test method: the MDRPA (serial No.: E1-E20) strains are tested and are evaluated with reference to the method in the first embodiment.

2. Test Results

2.1. In-vitro inhibitory test results of the Pithecellobium clypearia Benth water extract and the two antibiotics (the AMK and the SXT) to the ESBL-producing ECOs are shown in table E1.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth water extract to the ESBL-producing ECOs are shown in table E2.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth water extract and the two antibiotics to the ESBL-producing ECOs is shown in table E3.

The statistic analysis on bactericidal MBC 50 and MBC 90 of the EA to the ESBL-producing ECOs is shown in table E4.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth water extract and the two antibiotics and distribution statistical results of the FIC values are shown in table E5 and table E6.

The sensibilization effects of the Pithecellobium clypearia Benth water extract to the two antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables E7-E9.

The test results shows that, with the single use of the Pithecellobium clypearia Benth water extract to the ESBL-producing ECOs, the MIC 50 is 1600 μg/ml, the MIC 90 is 1600 μg/ml, the MBC 50 is 3200 μg/ml, and the MBC 90 is 3200 μg/ml.

For the 20 ESBL-producing ECOs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth water extract and the AMK that the two drugs have no antagonistic effect, wherein 50% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth water extract is smaller than or equal to ½ MIC, the MIC 50 of the AMK is reduced from single-use 16 μg/ml to 4 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 64 μg/ml to 16 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth water extract and the SXT to the 20 ESBL-producing ECOs that the two drugs have no antagonistic effect, wherein 25% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth water extract is smaller than or equal to the single-use MIC, the MIC 50 and the MIC 90 of the SXT are respectively reduced from single-use 2432/128 μg/ml to 19/1 μg/ml, and are reduced by 99.3%.

2.2. In-vitro inhibitory test results of the Pithecellobium clypearia Benth 10% ethanol extract and the two antibiotics (the AMK and the SXT) to the ESBL-producing ECOs are shown in table E10.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth 10% ethanol extract to the ESBL-producing ECOs are shown in table E11.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth 10% ethanol extract and the two antibiotics to the ESBL-producing ECOs is shown in table E12.

The statistic analysis on bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia Benth 10% ethanol extract to the ESBL-producing ECOs is shown in table E13.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth 10% ethanol extract and the two antibiotics and distribution statistical results of the FIC values are shown in table E14 and table E15.

The sensibilization effects of the Pithecellobium clypearia Benth 10% ethanol extract to the two antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables E16-E18.

The test results shows that, with the single use of the Pithecellobium clypearia Benth 10% ethanol extract to the ESBL-producing ECOs, the MIC 50 is 1600 μg/ml, the MIC 90 is 1600 μg/ml, the MBC 50 is 3200 μg/ml, and the MBC 90 is 3200 μg/ml.

For the 20 ESBL-producing ECOs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the AMK that the two drugs have no antagonistic effect, wherein 50% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to ½ MIC, the MIC 50 of the AMK is reduced from single-use 16 μg/ml to 4 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 64 μg/ml to 16 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 10% ethanol extract and the SXT to the 20 ESBL-producing ECOs that the two drugs have no antagonistic effect, wherein 20% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth 10% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 and the MIC 90 of the SXT are respectively reduced from single-use 2432/128 μg/ml to 19/1 μg/ml, and are reduced by 99.3%.

2.3. In-vitro inhibitory test results of the Pithecellobium clypearia Benth 60% ethanol extract and the two antibiotics (the AMK and the SXT) to the ESBL-producing ECOs are shown in table E19.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth 60% ethanol extract to the ESBL-producing ECOs are shown in table E20.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth 60% ethanol extract and the two antibiotics to the ESBL-producing ECOs is shown in table E21.

The statistic analysis on bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia Benth 60% ethanol extract to the ESBL-producing ECOs is shown in table E22.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth 60% ethanol extract and the two antibiotics and distribution statistical results of the FIC values are shown in table E23 and table E24.

The sensibilization effects of the Pithecellobium clypearia Benth 60% ethanol extract to the two antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables E25-E27.

The test results shows that, with the single use of the Pithecellobium clypearia Benth 60% ethanol extract to the ESBL-producing ECOs, the MIC 50 is 800 μg/ml, the MIC 90 is 800 μg/ml, the MBC 50 is 1600 μg/ml, and the MBC 90 is 1600 μg/ml.

›Embodiment 3 · 2 of 2

For the 20 ESBL-producing ECOs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the AMK that the two drugs have no antagonistic effect, wherein 70% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to ¼ MIC, the MIC 50 of the AMK is reduced from single-use 16 μg/ml to 4 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 64 μg/ml to 8 μg/ml.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 60% ethanol extract and the SXT to the 20 ESBL-producing ECOs that the two drugs have no antagonistic effect, wherein 30% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth 60% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 and the MIC 90 of the SXT are respectively reduced from single-use 2432/128 μg/ml to 19/1 μg/ml, and are reduced by 99.3%.

2.4. In-vitro inhibitory test results of the Pithecellobium clypearia Benth 95% ethanol extract and the two antibiotics (the AMK and the SXT) to the ESBL-producing ECOs are shown in table E28.

In-vitro bactericidal test results of the Pithecellobium clypearia Benth 95% ethanol extract to the ESBL-producing ECOs are shown in table E29.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia Benth 95% ethanol extract and the two antibiotics to the ESBL-producing ECOs is shown in table E30.

The statistic analysis on bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia Benth 95% ethanol extract to the ESBL-producing ECOs is shown in table E31.

FIC values of a combined drug sensitive test of the Pithecellobium clypearia Benth 95% ethanol extract and the two antibiotics and distribution statistical results of the FIC values are shown in table E32 and table E33.

The sensibilization effects of the Pithecellobium clypearia Benth 95% ethanol extract to the two antibiotics and the MIC 50 and MIC 90 after combined use are shown in tables E34-E36.

The test results shows that, with the single use of the Pithecellobium clypearia Benth 95% ethanol extract to the ESBL-producing ECOs, the MIC 50 is 1600 μg/ml, the MIC 90 is 1600 μg/ml, the MBC 50 is 3200 μg/ml, and the MBC 90 is 3200 μg/ml.

For the 20 ESBL-producing ECOs, it is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the AMK that the two drugs have no antagonistic effect, wherein 50% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to ½ MIC, the MIC 50 of the AMK is reduced from single-use 16 μg/ml to 4 μg/ml and is reduced by 75%; and the MIC 90 is reduced from 64 μg/ml to 16 μg/ml and is reduced by 75%.

It is indicated by FIC≤2 with the combined use of the Pithecellobium clypearia Benth 95% ethanol extract and the SXT to the 20 ESBL-producing ECOs that the two drugs have no antagonistic effect, wherein 20% with FIC≤0.5 have the synergistic effect. When the Pithecellobium clypearia Benth 95% ethanol extract is smaller than or equal to the single-use MIC, the MIC 50 and the MIC 90 of the SXT are respectively reduced from single-use 2432/128 μg/ml to 19/1 μg/ml, and are reduced by 99.3%.

IV. Inhibitory and bactericidal tests of ESBL-producing klebsiella pneumoniae (hereinafter referred to as an ESBL-producing KPN) resistance of the EA

›Embodiment 4

1. Test method: the ESBL-producing KPN (serial No.: K1-K20) strains are tested and are evaluated with reference to the inhibitory and bactericidal test method in the first embodiment.

2. Test Results

In-vitro inhibitory and bactericidal test results of the Pithecellobium clypearia Benth water extract to the ESBL-producing KPNs are shown in table K1.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 , MIC 90 , MBC 50 and MBC 90 of the Pithecellobium clypearia Benth water extract to the ESBL-producing KPNs is shown in table K2 and table K3.

In-vitro inhibitory and bactericidal test results of the Pithecellobium clypearia Benth 10% ethanol extract to the ESBL-producing KPNs are shown in table K4.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 , MIC 90 , MBC 50 and MBC 90 of the Pithecellobium clypearia Benth 10% ethanol extract to the ESBL-producing KPNs is shown in table K5 and table K6.

In-vitro inhibitory and bactericidal test results of the Pithecellobium clypearia Benth 60% ethanol extract to the ESBL-producing KPNs are shown in table K7.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 , MIC 90 , MBC 50 and MBC 90 of the Pithecellobium clypearia Benth 60% ethanol extract to the ESBL-producing KPNs is shown in table K8 and table K9.

In-vitro inhibitory and bactericidal test results of the Pithecellobium clypearia Benth 95% ethanol extract to the ESBL-producing KPNs are shown in table K10.

The statistic analysis on in-vitro inhibitory and bactericidal MIC 50 , MIC 90 , MBC 50 and MBC 90 of the Pithecellobium clypearia Benth 95% ethanol extract to the ESBL-producing KPNs is shown in table K11 and table K12.

With the single use of the Pithecellobium clypearia Benth water extract to the ESBL-producing KPNs, the MIC 50 is 1600 μg/ml, the MIC 90 is 1600 μg/ml, and both the MBC 50 and the MBC 90 are greater than 1600 μg/ml.

With the single use of the Pithecellobium clypearia Benth 10% ethanol extract to the KPNs, the MIC 50 is 1600 μg/ml, the MIC 90 is 1600 μg/ml, and both the MBC 50 and the MBC 90 are greater than 1600 μg/ml.

With the single use of the Pithecellobium clypearia Benth 60% ethanol extract to the ESBL-producing KPNs, the MIC 50 is 1600 μg/ml, the MIC 90 is 1600 μg/ml, and both the MBC 50 and the MBC 90 are greater than 1600 μg/ml.

With the single use of the Pithecellobium clypearia Benth 95% ethanol extract to the ESBL-producing KPNs, the MIC 50 is 1600 μg/ml, the MIC 90 is 1600 μg/ml, and both the MBC 50 and the MBC 90 are greater than 1600 μg/ml.

›Tables in the description — 13
TABLE A1 In-vitro inhibitory test results of the Pithecellobium clypearia Benth water extract and the five antibiotics to the MDRABs MIC (μg/ml)
Strain No.EAIMPTELVXCAZPOLB
A1600120.51288
A260032256165122
A36003225645122
A4600880.52562
A560032324644
A6600322568>5128
A7600325128>5124
A86003225645128
A96003225645121
A10600161283251232
A1160032256451216
A1260032512325122
A1360032512322562
A1460032256165120.5
A15120032>512322562
A166003251285124
A17600165121625664
A186003251285124
A1960032512162564
A2060032256165122
ATCC2785330018141
TABLE A2
In-vitro bactericidal test results of the Pithecellobium clypearia
Benth water extract to the MDRABs
Strain No.MBC (μg/ml)
A11200
A21200
A31200
A41200
A51200
A61200
A71200
A81200
A91200
A101200
A111200
A121200
A131200
A141200
A152400
A161200
A171200
A181200
A191200
A201200
TABLE A3
Statistical results on in-vitro inhibitory MIC 50
and MIC 90 of the Pithecellobium clypearia Benth
water extract and the antibiotics to the MDRABs
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA600-1200600600
IMP1-323232
TE2-512256512
POLB0.5-64416
CAZ64-512512512
LVX0.5-32832
TABLE A4
Bactericidal MIC 50 and MIC 90 of the Pithecellobium clypearia
Benth water extract to the MDRABs
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA1200-240012001200
TABLE A5
FIC values of the combined drug sensitive test of the Pithecellobium
clypearia Benth water extract and the five antibiotics
StrainFIC
No.EA + IMPEA + TEEA + POLBEA + CAZEA + LVX
A1111.50.750.625
A211111.5
A310.751.250.750.375
A40.6250.750.50.6250.375
A51.50.3750.37510.5
A610.50.511
A7110.7511
A8111.00781311.25
A91.50.751.06250.3750.265625
A1011.50.510.75
A111.250.750.511
A1210.751.031250.50.5625
A131.50.51.510.75
A140.3750.3750.6250.3751
A150.3750.31250.5312510.501953
A160.50.6250.5156251.1250.5
A170.3751.251.031250.6251
A180.3750.751.510.375
A190.50.375111
A200.50.510.3750.5
TABLE A6
Distribution statistics of the FIC values of the combined
drug sensitive test of the Pithecellobium clypearia
Benth water extract and the five antibiotics
EA +EA +EA +EA +EA +
FIC_RangeIMPTEPOLBCAZLVX
FIC ≤ 0.535%35%25%20%35%
0.5 < FIC ≤ 145%55%35%75%55%
1 < FIC ≤ 220%10%40%5%10%
FIC > 2—————
TABLE A7
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the IMP and MIC after combined use
EAEAIMPIMP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160030010.5
A26003003216
A36003003216
A460030081
A56006003216
A66003003216
A76003003216
A86003003216
A96006003216
A10600300168
A11600600328
A126003003216
A136006003216
A14600150324
A151200300324
A16600150328
A17600150162
A1860075328
A19600150328
A20600150328
TABLE A8
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the TE and MIC after combined use
EAEATETE
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160030021
A2600300256128
A360030025664
A460030082
A5600150324
A660015025664
A7600300512256
A8600300256128
A960030025664
A1060060012864
A1160030025664
A12600150512256
A13600150512128
A1460015025632
A151200300102464
A1660030051264
A17600600512128
A18600300512128
A1960015051264
A2060015025664
TABLE A9
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the POLB and MIC after combined use
EAEAPOLBPOLB
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160060084
A260030021
A360060020.5
A460015020.5
A560015040.5
A660015082
A760030041
A860060080.0625
A960060010.0625
A10600150328
A11600150164
A1260060020.0625
A1360060021
A146003000.50.0625
A15120060020.0625
A1660030040.0625
A17600600642
A1860060042
A1960030042
A2060030021
TABLE A10
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the CAZ and MIC after combined use
EAEACAZCAZ
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160015012864
A2600300512256
A3600150512256
A460030025632
A56003006432
A66003001024512
A76003001024512
A8600300512256
A960015051264
A10600300512256
A11600300512256
A12600150512128
A13600300256128
A1460015051264
A151200600256128
A1660060051264
A1760030025632
A18600300512256
A19600300256128
A2060015051264
TABLE A11
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the LVX and MIC after combined use
EAEALVXLVX
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A16003000.50.0625
A26003001616
A3600150162
A46001500.50.0625
A560015041
A660030084
A760030084
A860015044
A960015040.0625
A10600300328
A1160030042
A12600300322
A13600300328
A14600300168
A151200600320.0625
A1660015082
A17600300168
A1860015081
A19600300168
A20600150164
TABLE A12
MIC 50 and MIC 90 of the five antibiotics after combined use
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + IMP816
EA + TE64128
EA + POLB14
EA + CAZ128256
EA + LVX28
TABLE A13 In-vitro inhibitory test results of the Pithecellobium clypearia Benth 10% ethanol extract and the five antibiotics to the MDRABs MIC (μg/ml)
Strain No.EAIMPTELVXCAZPOLB
A1600120.51288
A260032256165122
A36003225645122
A4600880.52562
A560032324644
A6600322568>5128
A7600325128>5124
A86003225645128
A96003225645121
A10600161283251232
A1160032256451216
A1260032512325122
A1360032512322562
A1460032256165120.5
A1560032>512322562
A166003251285124
A17600165121625664
A186003251285124
A1960032512162564
A2060032256165122
ATCC2785330018141
TABLE A14
In-vitro bactericidal test results of the Pithecellobium clypearia
Benth 10% ethanol extract to the MDRABs
Strain No.MBC (μg/ml)
A11200
A21200
A31200
A41200
A51200
A61200
A71200
A81200
A91200
A101200
A111200
A121200
A131200
A141200
A151200
A161200
A171200
A181200
A191200
A201200
TABLE A15
Statistical results on in-vitro inhibitory MIC 50 and
MIC 90 of the Pithecellobium clypearia Benth 10%
ethanol extract and the antibiotics to the MDRABs
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA600600600
IMP1-323232
TE2-512256512
POLB0.5-64416
CAZ64-512512512
LVX0.5-32832
TABLE A16
bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia
Benth 10% ethanol extract to the MDRABs
MBC (μg /ml)
DrugRangeMBC 50MBC 90
EA120012001200
TABLE A17
FIC values of the combined drug sensitive test of the Pithecellobium
clypearia Benth 10% ethanol extract and the five antibiotics
StrainFIC
No.EA + IMPEA + TEEA + POLBEA + CAZEA + LVX
A111110.625
A20.750.75111
A30.750.75110.625
A41.50.510.50.625
A50.50.3750.7511
A60.6250.750.37511
A70.50.50.37511
A810.50.5078130.751
A90.3750.3750.56250.750.265625
A100.750.750.37510.75
A110.50.510.751
A120.50.510.750.75
A130.51110.75
A14110.6250.3751
A150.750.625111
A160.510.750.50.75
A170.750.3750.750.50.5
A1810.50.7511
A190.510.750.50.375
A200.51.510.50.5
TABLE A18
Distribution statistics of the FIC values of the combined
drug sensitive test of the Pithecellobium clypearia Benth
10% ethanol extract and the five antibiotics
EA +EA +EA +EA +EA +
FIC RangeIMPTEPOLBCAZLVX
FIC ≤ 0.545%45%15%30%20%
0.5 < FIC ≤ 150%50%85%70%80%
1 < FIC ≤ 25%5%———
FIC > 2—————
TABLE A19
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the IMP and MIC after combined use
EAEAIMPIMP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160030010.5
A2600300328
A3600300328
A460030088
A5600150328
A6600300324
A7600150328
A86003003216
A960075328
A10600150168
A11600150328
A12600150328
A13600150328
A146003003216
A15600300328
A16600150328
A17600300164
A186003003216
A19600150328
A20600150328
TABLE A20
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the TE and MIC after combined use
EAEATETE
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160030021
A260030025664
A360030025664
A460015082
A5600150324
A660030025664
A7600150512128
A860015025664
A960015025632
A1060030012832
A1160015025664
A12600150512128
A13600300512256
A14600300256128
A156003001024128
A16600300512256
A1760015051264
A18600150512128
A19600300512256
A20600300256256
TABLE A21
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the POLB and MIC after combined use
EAEAPOLBPOLB
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160030084
A260030021
A360030021
A460030021
A560030041
A660015081
A76007541
A860030080.0625
A960030010.0625
A10600150324
A11600300168
A1260030021
A1360030021
A146003000.50.0625
A1560030021
A1660030041
A176003006416
A1860030041
A1960030041
A2060030021
TABLE A22
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the CAZ and MIC after combined use
EAEACAZCAZ
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160030012864
A2600300512256
A3600300512256
A460015025664
A56003006432
A66003001024512
A76003001024512
A8600150512256
A9600300512128
A10600300512256
A11600300512128
A12600300512128
A13600300256128
A1460015051264
A15600300256128
A16600150512128
A1760015025664
A18600300512256
A1960015025664
A20600150512128
TABLE A23
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the LVX and MIC after combined use
EAEALVXLVX
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A16003000.50.0625
A2600300168
A3600300162
A46003000.50.0625
A560030042
A660030084
A760030084
A860030042
A960015040.0625
A10600300328
A1160030042
A12600300328
A13600300328
A14600300168
A156003003216
A1660015084
A17600150164
A1860030084
A19600150162
A20600150164
TABLE A24
MIC 50 and MIC 90 of the five antibiotics after combined use
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + IMP816
EA + TE64256
EA + POLB14
EA + CAZ128256
EA + LVX48
TABLE A25 In-vitro inhibitory test results of the Pithecellobium clypearia Benth 60% ethanol extract and the five antibiotics to the MDRABs MIC (μg/ml)
Strain No.EAIMPTELVXCAZPOLB
A1300120.51288
A230032256165122
A36003225645122
A4600880.52562
A530032324644
A6300322568>5128
A7300325128>5124
A83003225645128
A96003225645121
A10300161283251232
A1160032256451216
A1230032512325122
A1330032512322562
A1460032256165120.5
A1560032>512322562
A163003251285124
A17300165121625664
A183003251285124
A1930032512162564
A2030032256165122
ATCC2785330018141
TABLE A26
In-vitro bactericidal test results of the Pithecellobium clypearia
Benth 60% ethanol extract to the MDRABs
Strain No.MBC (μg/ml)
A1600
A2600
A31200
A41200
A5600
A6600
A7600
A81200
A9600
A10600
A11600
A12600
A13600
A141200
A151200
A161200
A17600
A18600
A19600
A20600
TABLE A27
Statistics on in-vitro inhibitory MIC 50 and
MIC 90 of the Pithecellobium clypearia Benth 60%
ethanol extract and the antibiotics to the MDRABs
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA300-600300600
IMP1-323232
TE2-512256512
POLB0.5-64416
CAZ64-512512512
LVX0.5-32832
TABLE A28
Bactericidal MBC 50 and MIC 90 of the Pithecellobium clypearia
Benth 60% ethanol extract to the MDRABs
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA600-12006001200
TABLE A29
FIC values of the combined drug sensitive test of the Pithecellobium
clypearia Benth 60% ethanol extract and the five antibiotics
StrainFIC
No.EA + IMPEA + TEEA + POLBEA + CAZEA + LVX
A10.750.751.50.750.375
A20.50.51.250.751.25
A30.3750.37510.51.0040
A40.18750.6250.750.50.625
A50.50.7510.751.25
A60.6250.750.511
A70.6250.750.750.751
A80.6250.6251.00800.751.25
A90.3750.3750.56250.6250.5156
A100.750.750.50.751.0020
A110.3750.3750.50.6251.125
A120.31250.51.250.751.03125
A130.50.51.511.0020
A140.250.3750.6250.6250.625
A150.3750.31250.531250.750.5020
A160.50.51.01560.750.75
A170.62511.031250.750.75
A180.50.6251.1250.750.75
A190.3750.51.12511
A200.50.6251.2511
TABLE A30
Distribution statistics of the FIC values of the combined
drug sensitive test of the Pithecellobium clypearia Benth
60% ethanol extract and the five antibiotics
EA +EA +EA +EA +EA +
FIC RangeIMPTEPOLBCAZLVX
FIC ≤ 0.570%50%15%10%5%
0.5 < FIC ≤ 130%50%35%85%55%
1 < FIC ≤ 2——50%5%40%
FIC > 2—————
TABLE A31
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the IMP and MIC after combined use
EAEAIMPIMP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A13007510.5
A230075328
A360075328
A46007580.5
A530075328
A630037.53216
A730037.53216
A830037.53216
A9600150324
A1030075168
A11600150324
A1230018.75328
A1330075328
A1460075324
A15600150324
A1630075328
A17300150162
A1830075328
A1930037.5328
A2030075328
TABLE A32
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the TE and MIC after combined use
EAEATETE
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A13007521
A23007525664
A360015025632
A460030081
A5300150328
A630075256128
A7300150512128
A830015025632
A960015025632
A1030015012832
A1160015025632
A1230075512128
A1330075512128
A1460015025632
A15600150102464
A1630075512128
A17300150512256
A1830015051264
A1930075512128
A2030015025632
TABLE A33
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the POLB and MIC after combined use
EAEAPOLBPOLB
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A130030084
A230030020.5
A360030021
A460015021
A530015042
A63007582
A73007542
A830030080.0625
A960030010.0625
A1030075328
A11600150164
A1230030020.5
A1330030021
A146003000.50.0625
A1560030020.0625
A1630030040.0625
A17300300642
A1830030040.5
A1930030040.5
A2030030020.5
TABLE A34
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the CAZ and MIC after combined use
EAEACAZCAZ
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A13007512864
A2300150512128
A3600150512128
A460015025664
A5300756432
A63001501024512
A73001501024256
A830075512256
A960030051264
A10300150512128
A1160030051264
A12300150512128
A13300150256128
A1460075512256
A15600150256128
A16300150512128
A1730075256128
A18300150512128
A19300150256128
A20300150512256
TABLE A35
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the LVX and MIC after combined use
EAEALVXLVX
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A1300750.50.0625
A2300751616
A3300300160.0625
A46003000.50.0625
A53007544
A630015084
A730015084
A83007544
A960030040.0625
A10300300320.0625
A116007544
A12300300321
A13300300320.0625
A1460075168
A15600300320.0625
A163007584
A17300150164
A183007584
A19300150168
A20300150168
TABLE A36
MIC 50 and MIC 90 of the five antibiotics after combined use
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + IMP816
EA + TE32128
EA + POLB0.54
EA + CAZ128256
EA + LVX48
TABLE A37 In-vitro inhibitory test results of the Pithecellobium clypearia Benth 95% ethanol extract and the five antibiotics to the MDRABs MIC (μg/ml)
Strain No.EAIMPTELVXCAZPOLB
A1600120.51288
A260032256165122
A36003225645122
A4600880.52562
A560032324644
A6600322568>5128
A7600325128>5124
A86003225645128
A96003225645121
A10600161283251232
A1160032256451216
A1260032512325122
A1360032512322562
A1460032256165120.5
A15120032>512322562
A166003251285124
A17600165121625664
A186003251285124
A1960032512162564
A2060032256165122
ATCC2785330018141
TABLE A38
In-vitro bactericidal test results of the Pithecellobium clypearia
Benth 95% ethanol extract to the MDRABs
Strain No.MBC (μg/ml)
A11200
A21200
A31200
A41200
A51200
A61200
A71200
A81200
A91200
A101200
A111200
A121200
A131200
A141200
A151200
A161200
A171200
A181200
A191200
A201200
TABLE A39
Statistical results on in-vitro inhibitory MIC 50 and
MIC 90 of the Pithecellobium clypearia Benth 95%
ethanol extract and the antibiotics to the MDRABs
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA600-1200600600
IMP1-323232
TE2-512256512
POLB0.5-64416
CAZ64-512512512
LVX0.5-32832
TABLE A40
Bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia
Benth 95% ethanol extract to the MDRABs
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA120012001200
TABLE A41
FIC values of the combined drug sensitive test of the Pithecellobium
clypearia Benth 95% ethanol extract and the five antibiotics
StrainFIC
No.EA + IMPEA + TEEA + POLBEA + CAZEA + LVX
A10.750.75111
A20.50.50.750.751
A30.50.37510.750.625
A40.31250.62510.750.375
A50.750.5111
A60.7510.511
A70.750.750.750.51
A80.750.6250.62511
A90.3750.6250.7510.515625
A100.750.750.510.3125
A110.3750.6250.50.6251.5
A120.50.7510.750.53125
A130.750.510.750.5625
A140.750.375111
A150.750.31250.281250.750.3125
A160.50.750.51562510.75
A170.3750.750.562510.5
A180.50.750.750.51
A190.50.750.750.751
A200.50.6250.7510.75
TABLE A42
Distribution statistics of the FIC values of the combined
drug sensitive test of the Pithecellobium clypearia Benth
95% ethanol extract and the five antibiotics
EA +EA +EA +EA +EA +
FIC RangeIMPTEPOLBCAZLVX
FIC ≤ 0.555%30%20%10%20%
0.5 < FIC ≤ 145%70%80%90%75%
1 < FIC ≤ 2————5%
FIC > 2—————
TABLE A43
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the IMP and MIC after combined use
EAEAIMPIMP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160015010.5
A2600150328
A3600150328
A460015080.5
A5600300328
A66001503216
A76001503216
A86001503216
A9600150324
A10600150168
A11600150324
A12600150328
A13600300328
A14600300328
A151200600328
A16600150328
A17600150162
A18600150328
A19600150328
A20600150328
TABLE A44
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the TE and MIC after combined use
EAEATETE
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160015021
A260015025664
A360015025632
A460030081
A5600150328
A6600300256128
A7600300512128
A860030025632
A960030025632
A1060030012832
A1160030025632
A12600300512128
A13600150512128
A1460015025632
A151200300102464
A16600300512128
A17600300512128
A18600300512128
A19600300512128
A2060030025632
TABLE A45
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the POLB and MIC after combined use
EAEAPOLBPOLB
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160030084
A260030020.5
A360030021
A460030021
A560030042
A660015082
A760015042
A860030081
A960030010.25
A10600150328
A11600150164
A1260030021
A1360030021
A146003000.50.25
A15120030020.0625
A1660030040.0625
A17600300644
A1860030041
A1960030041
A2060030020.5
TABLE A46
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the CAZ and MIC after combined use
EAEACAZCAZ
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A160030012864
A2600300512128
A3600300512128
A460030025664
A56003006432
A66003001024512
A76001501024256
A8600300512256
A9600300512256
A10600300512256
A1160030051264
A12600300512128
A13600150256128
A14600300512256
A151200300256128
A16600300512256
A17600300256128
A18600150512128
A19600150256128
A20600300512256
TABLE A47
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the LVX and MIC after combined use
EAEALVXLVX
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
A16003000.50.25
A2600300168
A3600300162
A46001500.50.0625
A560030042
A660030084
A760030084
A860030042
A960030040.0625
A10600150322
A1160030044
A12600300321
A13600300322
A14600300168
A151200300322
A1660015084
A17600150164
A1860030084
A19600300168
A20600150168
TABLE A48
MIC 50 and MIC 90 of the five antibiotics after combined use
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + IMP816
EA + TE32128
EA + POLB14
EA + CAZ128256
EA + LVX48
TABLE P1 In-vitro inhibitory test results of the Pithecellobium clypearia Benth water extract and the five antibiotics to the MDRPAs MIC (μg/ml)
Strain No.EALVXIMPAMKCAZCFP
P18003232132128
P2800464164256
P38008644416
P480083212568
P5800164264512
P616000.532256512512
P78003232164512
P81600164125616
P98004321864
P1080012864448
P1180028128
P128001323264512
P1380028216256
P1480032322168
P15800232225664
P161600321625632>512
P1780041613216
P188004321664256
P1980016641464
P20800442256>512
ATCC2785340014248
TABLE P2
In-vitro bactericidal test results of the Pithecellobium clypearia
Benth water extract to the MDRPAs
Strain No.MBC (μg/ml)
P11600
P21600
P31600
P41600
P51600
P61600
P71600
P81600
P91600
P101600
P111600
P121600
P131600
P143200
P151600
P161600
P171600
P181600
P193200
P201600
TABLE P3
Statistical results on in-vitro inhibitory MIC 50 and
MIC 90 of the Pithecellobium clypearia Benth water
extract and the five antibiotics to the MDRPAs
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA800-16008001600
CAZ2-51232256
CFP8-51264512
AMK1-256132
IMP4-643264
LVX0.5-128432
TABLE P4
Bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia
Benth water extract to the MDRPAs
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA1600-320016001600
TABLE P5
FIC values of the combined drug sensitive test of the Pithecellobium
clypearia Benth water extract and the five antibiotics
FIC
StrainEA +EA +EA +EA +EA +
No.CAZCFPAMKIMPLVX
P10.50.3750.562510.625
P20.510.18750.281250.507813
P30.750.3750.3750.281250.503906
P40.511.51.06250.75
P510.751.031250.50.53125
P60.6250.750.750.56250.3125
P70.750.531250.56251.06251.000977
P80.3750.156250.750.281250.28125
P9110.562511
P1010.56250.3750.50.375
P1110.7510.751
P120.531250.2509770.31250.56251
P130.50.3750.281250.51
P1410.56250.531250.6251.03125
P1510.50.531250.51.5
P160.50.3750.2502440.3750.5625
P170.50.531250.56250.752
P180.50.750.50.6252.03125
P1910.5078130.56250.56250.75
P200.50.5004880.62510.75
TABLE P6
Distribution statistical results of the FIC values of the
combined drug sensitive test of the Pithecellobium clypearia
Benth water extract and the five antibiotics
EA +EA +EA +EA +EA +
FIC RangeCAZCFPAMKIMPLVX
FIC ≤ 0.545%35%35%40%15%
0.5 < FIC ≤ 155%65%55%50%60%
1 < FIC ≤ 2——10%10%25%
FIC > 2—————
TABLE P7
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the CAZ and MIC after combined use
EAEACAZCAZ
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P1800200328
P28002006416
P380020042
P480020025664
P58004006432
P61600200512256
P78002006432
P8160020025664
P980040084
P1080040042
P1180040021
P12800400642
P13800200164
P14800400168
P15800400256128
P161600400328
P17800200328
P188002006416
P1980040042
P2080020025664
TABLE P8
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the CFP and MIC after combined use
EAEACFPCFP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P180010012832
P2800400256128
P3800200162
P480040084
P5800200512256
P61600400512256
P780040051216
P81600200160.5
P98004006432
P1080040080.5
P1180020084
P128002005120.5
P1380020025632
P1480040080.5
P158002006416
P1616002001024256
P17800400160.5
P18800200256128
P19800400640.5
P2080040010240.5
TABLE P9
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the AMK and MIC after combined use
EAEAAMKAMK
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P180040010.0625
P280010010.0625
P380010041
P480080010.5
P580080020.0625
P6160080025664
P780040010.0625
P8160040010.5
P980040010.0625
P1080010041
P1180040010.5
P1280050328
P1380020020.0625
P1480040020.0625
P1580040020.0625
P1616004002560.0625
P1780040010.0625
P18800200164
P1980040010.0625
P2080010021
TABLE P10
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the IMP and MIC after combined use
EAEAIMPIMP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P18004003216
P2800200642
P3800200642
P4800800322
P58002006416
P61600800322
P7800800322
P81600400642
P98004003216
P108002006416
P1180020084
P12800400322
P1380020082
P14800400324
P15800200328
P161600400162
P17800400164
P18800400324
P19800400644
P2080040042
TABLE P11
Sensibilization effect of the Pithecellobium clypearia
Benth water extract to the LVX and MIC after combined use
EAEALVXLVX
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P1800400324
P280040040.03125
P380040080.03125
P480020084
P580040010.03125
P616004000.50.03125
P7800800320.03125
P8160040010.03125
P980040042
P1080010012832
P1180040021
P1280040010.5
P1380040021
P14800800321
P1580080021
P161600800322
P1780080044
P188002548
P19800400164
P2080040041
TABLE P12
MIC 50 and MIC 90 of the five antibiotics after combined use
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + CAZ864
EA + CFP0.5256
EA + AMK0.06252
EA + IMP216
EA + LVX18
TABLE 18 — Distribution statistical results of the FIC values of the combined drug sensitive test of the Pithecellobium clypearia Benth 10% ethanol extract and the five antibiotics
EA +EA +EA +EA +EA +
FIC RangeCAZCFPAMKIMPLVX
FIC ≤ 0.535%35%30%50%15%
0.5 < FIC ≤ 165%65%55%50%75%
1 < FIC ≤ 2——15%—10%
FIC > 2—————
TABLE P19
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the CAZ and MIC after combined use
EAEACAZCAZ
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P18002003216
P28002006416
P380020042
P480020025664
P58002006432
P6800200512256
P78002006432
P8160020025664
P980040084
P1080020042
P1180040021
P12800400642
P13800200164
P14800400168
P15800400256128
P161600400328
P17800200328
P188004006432
P1980040042
P2080020025664
TABLE P20
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the CFP and MIC after combined use
EAEACFPCFP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P180020012832
P2800400256128
P3800200162
P480040084
P5800400512256
P61600200512256
P78004005128
P81600200160.5
P98004006432
P1080040082
P1180020084
P128002005122
P1380020025632
P1480040080.25
P15800200648
P1616002001024256
P17800400160.5
P18800400256128
P19800400640.5
P2080040010241
TABLE P21
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the AMK and MIC after combined use
EAEAAMKAMK
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P180040010.0625
P280020010.0625
P380020042
P480080010.5
P580080020.0625
P6160080025664
P780040010.0625
P8160040010.5
P980040010.0625
P1080020041
P1180040010.25
P12800200328
P1380020020.0625
P1480040020.0625
P1580040020.0625
P1616004002562
P1780040010.0625
P18800200164
P1980040010.0625
P208004000021
TABLE P22
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the IMP and MIC after combined use
EAEAIMPIMP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P18002003216
P2800200642
P3800200642
P48004003216
P58002006416
P61600800322
P7800400322
P81600400642
P98004003216
P108002006416
P1180020084
P12800400322
P1380020082
P14800400324
P15800200324
P161600400162
P17800400162
P18800200324
P19800200648
P2080040042
TABLE P23
Sensibilization effect of the Pithecellobium clypearia Benth
10% ethanol extract to the LVX and MIC after combined use
EAEALVXLVX
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P1800400324
P280040040.03125
P380040080.03125
P480040084
P580040010.03125
P616004000.50.03125
P7800800320.03125
P8160040010.03125
P980040042
P1080040012832
P1180040021
P1280040010.5
P1380040021
P14800400322
P1580040021
P161600400324
P1780040042
P1880040044
P19800400164
P2080040041
TABLE P24
MIC 50 and MIC 90 of the five antibiotics after combined use
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + CAZ1664
EA + CFP4256
EA + AMK0.06254
EA + IMP216
EA + LVX14
TABLE P25 In-vitro inhibitory test results of the Pithecellobium clypearia Benth 60% ethanol extract and the five antibiotics to the MDRPAs MIC(μg/ml)
Strain No.EALVXIMPAMKCAZCFP
P14003232132128
P2200464164256
P34008644416
P440083212568
P5400164264512
P64000.532256512512
P74003232164512
P8800164125616
P94004321864
P1040012864448
P1140028128
P124001323264512
P1340028216256
P1480032322168
P15400232225664
P16800321625632>512
P1740041613216
P184004321664256
P1980016641464
P20800442256>512
ATCC2785340014248
TABLE P26
In-vitro bactericidal test results of the Pithecellobium clypearia
Benth 60% ethanol extract to the MDRPAs
Strain No.MBC (μg/ml)
P1400
P2400
P3800
P4800
P5800
P6800
P7800
P8800
P91600
P101600
P111600
P121600
P131600
P141600
P151600
P161600
P171600
P181600
P191600
P201600
TABLE P27
Statistical results on in-vitro inhibitory MIC 50 and
MIC 90 of the Pithecellobium clypearia Benth 60% ethanol
extract and the five antibiotics to the MDRPAs
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA200-800400800
CAZ2-51232256
CFP8-51264512
AMK1-256132
IMP4-643264
LVX0.5-128432
TABLE P28
Bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia
Benth 60% ethanol extract to the MDRPAs
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA400-160016001600
TABLE P29
FIC values of the combined drug sensitive test of the Pithecellobium
clypearia Benth 60% ethanol extract and the five antibiotics
StrainFIC
No.EA + CAZEA + CFPEA + AMKEA + IMPEA + LVX
P10.3750.3751.06250.6250.25
P20.6250.750.56250.531250.5078
P31.1251.031250.50.156251.0039
P40.3751.06251.51.06251
P51.00780.6251.031250.751.03125
P60.7511.1251.06251.0625
P710.6251.06251.06251.0010
P80.31250.531250.56250.531250.53125
P91.06250.6250.56250.751
P101.1251.06250.3750.750.5
P111.251.06250.751.252.0625
P120.50780.50100.3750.56251.5
P130.750.3750.531250.51.015625
P140.3750.56250.531250.51.03125
P150.750.3751.031250.752.5
P160.3750.31250.50020.6250.53125
P170.51.031251.06251.1253
P180.50.6250.3751.06252.0625
P190.6250.50780.56250.531250.625
P200.31250.50050.56250.6250.625
TABLE P30
Distribution statistical results of the FIC values of the
combined drug sensitive test of the Pithecellobium clypearia
Benth 60% ethanol extract and the five antibiotics
EA +EA +EA +EA +EA +
FIC RangeCAZCFPAMKIMPLVX
FIC ≤ 0.540%20%20%15%10%
0.5 < FIC ≤ 135%55%45%55%35%
1 < FIC ≤ 225%25%35%30%35%
FIC > 2————20%
TABLE P31
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the CAZ and MIC after combined use
EAEACAZCAZ
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P140050328
P2200100648
P34005044
P44005025664
P5400400640.5
P6400100512256
P74002006432
P88005025664
P940040080.5
P1040040040.5
P1140040020.5
P12400200640.5
P13400100168
P14800100164
P15400100256128
P16800100328
P17400100328
P184001006416
P1980040040.5
P208005025664
TABLE P32
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the CFP and MIC after combined use
EAEACFPCFP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P14005012832
P220050256128
P3400400160.5
P440040080.5
P540050512256
P6400200512256
P740050512256
P8800400160.5
P9400506432
P1040040080.5
P1140040080.5
P124002005120.5
P1340010025632
P1480040080.5
P15400506416
P16800501024256
P17400400160.5
P1840050256128
P19800400640.5
P2080040010240.5
TABLE P33
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the AMK and MIC after combined use
EAEAAMKAMK
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P140040010.0625
P220010010.0625
P340010041
P440040010.5
P540040020.0625
P640040025632
P740040010.0625
P88005010.5
P940020010.0625
P104005041
P1140010010.5
P1240050328
P1340020020.0625
P1480040020.0625
P1540040020.0625
P168004002560.0625
P1740040010.0625
P18400100162
P1980040010.0625
P208005021
TABLE P34
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the IMP and MIC after combined use
EAEAIMPIMP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P1400503216
P2200100642
P340050642
P4400400322
P54002006416
P6400400322
P7400400322
P8800400642
P94001003216
P104002006416
P1140040082
P12400200322
P1340010082
P14800200328
P15400200328
P16800400162
P17400400162
P18400400322
P19800400642
P2080010042
TABLE P35
Sensibilization effect of the Pithecellobium clypearia Benth
60% ethanol extract to the LVX and MIC after combined use
EAEALVXLVX
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P140050324
P220010040.03125
P340040080.03125
P440020084
P540040010.03125
P64004000.50.03125
P7400400320.03125
P880040010.03125
P940020042
P1040010012832
P114002524
P1240040010.5
P1340040020.03125
P14800800321
P1540080021
P16800253216
P1740080044
P184002548
P19800100168
P2080010042
TABLE P36
MIC 50 and MIC 90 of the five antibiotics after combined use
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + CAZ864
EA + CFP4256
EA + AMK0.06254
EA + IMP216
EA + LVX18
TABLE P37 In-vitro inhibitory test results of the Pithecellobium clypearia Benth 95% ethanol extract and the five antibiotics to the MDRPAs MIC(μg/ml)
Strain No.EALVXIMPAMKCAZCFP
P18003232132128
P2800464164256
P38008644416
P480083212568
P5800164264512
P68000.532256512512
P78003232164512
P8800164125616
P98004321864
P1080012864448
P1180028128
P128001323264512
P1380028216256
P1480032322168
P15800232225664
P16800321625632>512
P1780041613216
P188004321664256
P1980016641464
P20800442256>512
ATCC2785340014248
TABLE P38
In-vitro bactericidal test results of the Pithecellobium clypearia
Benth 95% ethanol extract to the MDRPAs
Strain No.MBC (μg/ml)
P11600
P21600
P31600
P41600
P51600
P61600
P71600
P81600
P91600
P101600
P111600
P121600
P131600
P141600
P151600
P163200
P171600
P181600
P191600
P201600
TABLE P39
Statistical results on in-vitro inhibitory MIC 50 and
MIC 90 of the Pithecellobium clypearia Benth 95% ethanol
extract and the five antibiotics to the MDRPAs
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA800800800
CAZ2-51232256
CFP8-51264512
AMK1-256132
IMP4-643264
LVX0.5-128432
TABLE P40
Bactericidal MBC 50 and MBC 90 of the Pithecellobium clypearia
Benth 95% ethanol extract to the MDRPAs
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA1600-320016001600
TABLE P41
FIC values of the combined drug sensitive test of the Pithecellobium
clypearia Benth 95% ethanol extract and the five antibiotics
StrainFIC
No.EA + CAZEA + CFPEA + AMKEA + IMPEA + LVX
P110.50.562510.625
P20.7510.31250.31250.507813
P30.750.510.31250.503906
P4111.50.751
P5111.031250.3751.03125
P610.751.1250.56251.0625
P70.750.5156250.370.56251.000977
P80.50.281250.750.50.53125
P9110.312511
P1010.3750.50.50.75
P111110.751
P120.531250.5039060.50.56251
P130.50.3750.281250.751
P1410.531250.531250.6250.3125
P1510.3750.281250.3751
P160.3750.50.5078130.6250.625
P170.3750.531250.56250.6251
P1810.750.50.3751.5
P190.750.281250.56250.3750.5
P200.50.500977110.75
TABLE P42
Distribution statistical results of the FIC values of the
combined drug sensitive test of the Pithecellobium clypearia
Benth 95% ethanol extract and the five antibiotics
EA +EA +EA +EA +EA +
FIC Strain No.CAZCFPAMKIMPLVX
FIC ≤ 0.525%40%40%40%10%
0.5 < FIC ≤ 175%60%45%60%70%
1 < FIC ≤ 2——15%—20%
FIC > 2—————
TABLE P43
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the CAZ and MIC after combined use
EAEACAZCAZ
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P18004003216
P28004006416
P380040041
P4800400256128
P58004006432
P6800400512256
P78002006432
P880020025664
P980040084
P1080040042
P1180040021
P12800400642
P13800200164
P14800400168
P15800400256128
P16800200324
P17800200324
P188004006432
P1980040041
P2080020025664
TABLE P44
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the CFP and MIC after combined use
EAEACFPCFP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P180020012832
P2800400256128
P3800200164
P480040084
P5800400512256
P6800400512128
P78004005128
P8800200160.5
P98004006432
P1080020081
P1180040084
P128004005122
P1380020025632
P1480040080.25
P15800200648
P168002001024256
P17800400160.5
P18800200256128
P19800200642
P2080040010241
TABLE P45
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the AMK and MIC after combined use
EAEAAMKAMK
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P180040010.0625
P280020010.0625
P380040042
P480080010.5
P580080020.0625
P680080025632
P780020010.12
P880020010.5
P980020010.0625
P1080020041
P1180040010.5
P12800200328
P1380020020.0625
P1480040020.0625
P1580020020.0625
P168004002562
P1780040010.0625
P18800200164
P1980040010.0625
P2080040021
TABLE P46
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the IMP and MIC after combined use
EAEAIMPIMP
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P18004003216
P2800200644
P3800200644
P4800400328
P5800200648
P6800400322
P7800400322
P88002006416
P98004003216
P108002006416
P1180020084
P12800400322
P1380040082
P14800400324
P15800200324
P16800400162
P17800400162
P18800200324
P19800200648
P2080040042
TABLE P47
Sensibilization effect of the Pithecellobium clypearia Benth
95% ethanol extract to the LVX and MIC after combined use
EAEALVXLVX
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
P1800400324
P280040040.03125
P380040080.03125
P480040084
P580080010.03125
P68008000.50.03125
P7800800320.03125
P880040010.03125
P980040042
P1080040012832
P1180040021
P1280040010.5
P1380040021
P14800200322
P1580040021
P16800400324
P1780040042
P1880040044
P19800200164
P2080040041
TABLE P48
MIC 50 and MIC 90 of the five antibiotics after combined use
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + CAZ16128
EA + CFP4128
EA + AMK0.124
EA + IMP416
EA + LVX14
TABLE E1 MIC (μg/ml)
Strain No.EAAMKSXT
E1160042432/128
E21600162432/128
E316005122432/128
E41600476/4
E51600162432/128
E6160042432/128
E71600322432/128
E81600322432/128
E91600642432/128
E10160082432/128
E1116003276/4
E121600322432/128
E13160042432/128
E14160082432/128
E15160082432/128
E161600162432/128
E17160082432/128
E1816001282432/128
E19160064152/8
E2016001676/4
ATCC2592280049.5/0.5
TABLE E2
Strain No.MBC(μg/ml)
E13200
E23200
E33200
E43200
E53200
E63200
E73200
E83200
E93200
E103200
E113200
E123200
E133200
E143200
E153200
E163200
E173200
E183200
E193200
E203200
TABLE E3
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA160016001600
AMK4-5121664
SXT76/4-2432/1282432/1282432/128
TABLE E4
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA320032003200
TABLE E5
FIC
Strain No.EA + AMKEA + SXT
E10.750.507813
E20.3751.003906
E30.281250.507813
E40.750.75
E50.6250.507813
E610.515625
E70.3750.507813
E80.50.507813
E90.3750.500061
E100.750.507813
E110.50.375
E120.750.125485
E131.250.507813
E140.750.507813
E150.750.500058
E160.50.125485
E170.50.507813
E180.6250.250977
E190.3750.375
E200.50.75
TABLE E6
FIC RangeEA + AMKEA + SXT
FIC ≤ 0.550%25%
0.5 < FIC ≤ 145%70%
1 < FIC ≤ 25%5%
FIC > 2——
TABLE E7
EAEAAMKAMK
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
E1160040042
E21600200164
E3160040051216
E4160040042
E51600200168
E6160080042
E71600200328
E81600400328
E91600400648
E10160040084
E111600400328
E1216004003216
E13160080042
E14160040084
E15160040084
E161600400164
E17160040082
E18160080012816
E1916002006416
E201600400164
TABLE E8
EAEASXTSXT
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
E116008002432/12819/1
E2160016002432/1289.5/0.5
E316008002432/12819/1
E4160080076/419/1
E516008002432/12819/1
E616008002432/12838/2
E716008002432/12819/1
E816008002432/12819/1
E916008002432/1280.148438/0.078125
E1016008002432/12819/1
E11160020076/419/1
E1216002002432/1281.1875/0.0625
E1316008002432/12819/1
E1416008002432/12819/1
E1516008002432/1280.148438/0.078125
E1616002002432/1281.1875/0.0625
E1716008002432/12819/1
E1816004002432/1282.375/0.125
E191600400152/819/1
E20160080076/419/1
TABLE E9
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + AMK416
EA + SXT19/119/1
TABLE E10 MIC (μg/ml)
Strain No.EAAMKSXT
E1160042432/128
E21600162432/128
E316005122432/128
E41600476/4
E51600162432/128
E6160042432/128
E71600322432/128
E81600322432/128
E91600642432/128
E10160082432/128
E1116003276/4
E121600322432/128
E13160042432/128
E14160082432/128
E15160082432/128
E161600162432/128
E17160082432/128
E1816001282432/128
E19160064152/8
E2016001676/4
ATCC2592280049.5/0.5
TABLE E11
Strain No.MBC(μg/ml)
E13200
E23200
E33200
E43200
E53200
E63200
E73200
E83200
E93200
E103200
E113200
E123200
E133200
E143200
E153200
E163200
E173200
E183200
E193200
E203200
TABLE E12
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA160016001600
AMK4-5121664
SXT76/4-2432/1282432/1282432/128
TABLE E13
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA320032003200
TABLE E14
FIC
Strain No.EA + AMKEA + SXT
E110.507813
E20.750.507813
E30.2656250.507813
E40.50.75
E50.50.507813
E610.507813
E70.50.507813
E80.750.507813
E90.50.500061
E100.750.507813
E110.50.5
E120.750.250975
E1310.507813
E1410.507813
E150.750.500058
E160.50.125485
E170.750.507813
E180.51.000977
E190.3750.375
E200.50.75
TABLE E15
FIC RangeEA + AMKEA + SXT
FIC ≤ 0.550%20%
0.5 < FIC ≤ 150%75%
1 < FIC ≤ 2—5%
FIC > 2——
TABLE E16
EAEAAMKAMK
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
E1160080042
E21600800164
E316004005128
E4160040041
E51600400164
E6160080042
E71600400328
E81600800328
E916004006416
E10160040084
E111600400328
E1216004003216
E13160080042
E14160080084
E15160040084
E161600400164
E17160080082
E18160040012832
E191600400648
E201600400164
TABLE E17
EAEASXTSXT
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
E116008002432/12819/1
E216008002432/12819/1
E316008002432/12819/1
E4160080076/419/1
E516008002432/12819/1
E616008002432/12819/1
E716008002432/12819/1
E816008002432/12819/1
E916008002432/1280.148438/0.078125
E1016008002432/12819/1
E11160040076/419/1
E1216004002432/1282.375/0.125
E1316008002432/12819/1
E1416008002432/12819/1
E1516008002432/1280.148438/0.078125
E1616002002432/1281.1875/0.0625
E1716008002432/12819/1
E18160016002432/1282.375/0.125
E191600400152/819/1
E20160080076/419/1
TABLE E18
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + AMK416
EA + SXT19/119/1
TABLE E19 MIC (μg/ml)
Strain No.EAAMKSXT
E180042432/128
E2800162432/128
E38005122432/128
E4800476/4
E5800162432/128
E6160042432/128
E7800322432/128
E8800322432/128
E9800642432/128
E1080082432/128
E118003276/4
E12800322432/128
E1340042432/128
E1480082432/128
E1580082432/128
E16800162432/128
E1780082432/128
E188001282432/128
E1980064152/8
E208001676/4
ATCC2592280049.5/0.5
TABLE E20
Strain No.MBC(μg/ml)
E11600
E21600
E31600
E41600
E51600
E6>1600
E71600
E81600
E91600
E101600
E111600
E121600
E13>1600
E141600
E151600
E161600
E171600
E181600
E191600
E201600
TABLE E21
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA400-1600800800
AMK4-5121664
SXT76/4-2432/1282432/1282432/128
TABLE E22
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA≥160016001600
TABLE E23
FIC
Strain no.EA + AMKEA + SXT
E10.56251.0078
E20.251.0039
E30.26561.0001
E40.56250.75
E50.56250.5078
E60.3750.2656
E70.1250.5078
E80.18750.5078
E90.31251.0001
E100.56250.5078
E110.18750.0703
E120.18750.0630
E131.1251.0039
E140.56250.5156
E150.31251.0001
E160.18750.0630
E170.31250.5078
E180.3750.0635
E190.250.625
E200.31250.375
TABLE E24
FIC RangeEA + AMKEA + SXT
FIC ≤ 0.570%30%
0.5 < FIC ≤ 125%40%
1 < FIC ≤ 25%30%
FIC > 2——
TABLE E25
EAEAAMKAMK
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
E18005042
E2800100162
E38002005128
E48005042
E580050168
E6160040040.5
E780050322
E880050324
E9800200644
E108005084
E1180050324
E1280050324
E134005044
E148005084
E158005082
E1680050162
E178005082
E1880010012832
E19800100648
E2080050164
TABLE E26
EAEASXTSXT
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
E18008002432/12819/1
E28008002432/1289.5/0.5
E38008002432/1280.148438/0.078125
E480040076/419/1
E58004002432/12819/1
E616004002432/12838/2
E78004002432/12819/1
E88004002432/12819/1
E98008002432/1280.148438/0.078125
E108004002432/12819/1
E118005076/419/1
E12800502432/1281.1875/0.0625
E134004002432/1289.5/0.5
E148004002432/12838/2
E158008002432/1280.148438/0.078125
E16800502432/1281.1875/0.0625
E178004002432/12819/1
E18800502432/1282.375/0.125
E19800400152/819/1
E2080010076/419/1
TABLE E27
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + AMK48
EA + SXT19/119/1
TABLE E28 MIC (μg/ml)
Strain No.EAAMKSXT
E1160042432/128
E21600162432/128
E316005122432/128
E41600476/4
E51600162432/128
E6160042432/128
E71600322432/128
E81600322432/128
E91600642432/128
E10160082432/128
E1116003276/4
E121600322432/128
E13160042432/128
E14160082432/128
E15160082432/128
E161600162432/128
E17160082432/128
E1816001282432/128
E19160064152/8
E2016001676/4
ATCC2592280049.5/0.5
TABLE E29
Strain No.MBC(μg/ml)
E13200
E23200
E33200
E43200
E53200
E63200
E73200
E83200
E93200
E103200
E113200
E123200
E133200
E143200
E153200
E163200
E173200
E183200
E193200
E203200
TABLE E30
MIC (μg/ml)
DrugRangeMIC 50MIC 90
EA160016001600
AMK4-5121664
SXT76/4-2432/1282432/1282432/128
TABLE E31
MBC (μg/ml)
DrugRangeMBC 50MBC 90
EA320032003200
TABLE E32
FIC
Strain No.EA + AMKEA + SXT
E110.507813
E20.50.507813
E30.531250.507813
E40.50.75
E50.50.507813
E60.750.507813
E70.750.503906
E80.750.507813
E90.750.503906
E100.750.507813
E110.750.75
E120.51.000975
E130.750.507813
E140.750.507813
E150.750.500058
E160.50.132813
E170.750.507813
E180.51.000977
E190.3750.625
E200.50.75
TABLE E33
FIC RangeEA + AMKEA + SXT
FIC ≤ 0.540%5%
0.5 < FIC ≤ 160%85%
1 < FIC ≤ 2—10%
FIC > 2——
TABLE E34
EAEAAMKAMK
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
E1160080042
E21600400164
E3160080051216
E4160040041
E51600400164
E6160080041
E71600800328
E81600800328
E916008006416
E10160040084
E111600800328
E121600400328
E13160040042
E14160080082
E15160040084
E161600400164
E17160080082
E18160040012832
E191600400648
E201600400164
TABLE E35
EAEASXTSXT
Strainsingle-usecombined-usesingle-usecombined-use
No.MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)MIC (μg/ml)
E116008002432/12819/1
E216008002432/12819/1
E316008002432/12819/1
E4160080076/419/1
E516008002432/12819/1
E616008002432/12819/1
E716008002432/1289.5/0.5
E816008002432/12819/1
E916008002432/1289.5/0.5
E1016008002432/12819/1
E11160080076/419/1
E12160016002432/1282.375/0.125
E1316008002432/12819/1
E1416008002432/12819/1
E1516008002432/1280.148438/0.078125
E1616002002432/12819/1
E1716008002432/12819/1
E18160016002432/1282.375/0.125
E191600800152/819/1
E20160080076/419/1
TABLE E36
Antibiotic (μg/ml)
Combined drugMIC 50 after combined useMIC 90 after combined use
EA + AMK416
EA + SXT19/119/1
TABLE K1 In-vitro inhibitory and bactericidal test results of the Pithecellobium clypearia Benth water extract to the ESBL-producing KPNs
Strain No.MIC(μg/ml)MBC(μg/ml)
K11600>1600
K21600>1600
K31600>1600
K41600>1600
K51600>1600
K61600>1600
K71600>1600
K81600>1600
K91600>1600
K101600>1600
K111600>1600
K121600>1600
K131600>1600
K141600>1600
K151600>1600
K161600>1600
K171600>1600
K181600>1600
K191600>1600
K201600>1600
TABLE K2
In-vitro inhibitory MIC 50 and MIC 90 of the Pithecellobium clypearia
Benth water extract to the ESBL-producing KPNs
MIC RangeMIC 50MIC 90
160016001600
TABLE K3
In-vitro inhibitory MBC 50 and MBC 90 of the Pithecellobium clypearia
Benth water extract to the ESBL-producing KPNs
MBC RangeMBC 50MBC 90
>1600>1600>1600
TABLE K4
In-vitro inhibitory and bactericidal test results of the Pithecellobium
clypearia Benth 10% ethanol extract to the ESBL-producing KPNs
Strain No.MIC(μg/ml)MBC(μg/ml)
K11600>1600
K2800>1600
K31600>1600
K4800>1600
K51600>1600
K61600>1600
K71600>1600
K81600>1600
K91600>1600
K101600>1600
K111600>1600
K121600>1600
K131600>1600
K141600>1600
K15800>1600
K16800>1600
K171600>1600
K181600>1600
K191600>1600
K201600>1600
TABLE K5
In-vitro inhibitory MIC 50 and MIC 90 of the Pithecellobium clypearia
Benth 10% ethanol extract to the ESBL-producing KPNs
MIC RangeMIC 50MIC 90
800-160016001600
TABLE K6
In-vitro inhibitory MBC 50 and MBC 90 of the Pithecellobium clypearia
Benth 10% ethanol extract to the ESBL-producing KPNs
MBC RangeMBC 50MBC 90
>1600>1600>1600
TABLE K7
In-vitro inhibitory and bactericidal test results of the Pithecellobium
clypearia Benth 60% ethanol extract to the ESBL-producing KPNs
Strain No.MIC(μg/ml)MBC(μg/ml)
K11600>1600
K2800>1600
K3800>1600
K4800>1600
K51600>1600
K61600>1600
K7400>1600
K8800>1600
K91600>1600
K101600>1600
K111600>1600
K121600>1600
K13800>1600
K14800>1600
K15400>1600
K16800>1600
K171600>1600
K181600>1600
K19800>1600
K20800>1600
TABLE K8
In-vitro inhibitory MIC 50 and MIC 90 of the Pithecellobium clypearia
Benth 60% ethanol extract to the ESBL-producing KPNs
MIC RangeMIC 50MIC 90
400-16008001600
TABLE K9
In-vitro inhibitory MBC 50 and MBC 90 of the Pithecellobium clypearia
Benth 60% ethanol extract to the ESBL-producing KPNs
MBC RangeMBC 50MBC 90
>1600>1600>1600
TABLE K10
In-vitro inhibitory and bactericidal test results of the Pithecellobium
clypearia Benth 95% ethanol extract to the ESBL-producing KPNs
Strain No.MIC(μg/ml)MBC(μg/ml)
K11600>1600
K21600>1600
K31600>1600
K41600>1600
K51600>1600
K61600>1600
K71600>1600
K81600>1600
K91600>1600
K101600>1600
K111600>1600
K121600>1600
K13800>1600
K14800>1600
K151600>1600
K161600>1600
K171600>1600
K181600>1600
K191600>1600
K201600>1600
TABLE K11
In-vitro inhibitory MIC 50 and MIC 90 of the Pithecellobium clypearia
Benth 95% ethanol extract to the ESBL-producing KPNs
MIC RangeMIC 50MIC 90
800-160016001600
TABLE K12
In-vitro inhibitory MBC 50 and MBC 90 of the Pithecellobium clypearia
Benth 95% ethanol extract to the ESBL-producing KPNs
MBC RangeMBC 50MBC 90
>1600>1600>1600

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IPC · International Patent Classification
Section A — Human necessities
  • A61K36/48

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examiner interview summaries
Examiner
Michael Barker
art unit 1655 · TC 1600
Citations: 6 back · 0 forward

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Chain of title

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