| Literature DB >> 25887373 |
Zhe Zhang1, Jie Yan2, Kaijin Xu3, Zhongkang Ji4, Lanjuan Li5.
Abstract
BACKGROUND: Tetrandrine is a natural chemical product purified from fourstamen stephania root which recently has been shown to act similarly as synthesized drug efflux pump inhibitor verapamil. The aim of the study is to examine whether tetrandrine could potentiate anti-tubercular drugs to which Mycobacterium tuberculosis (MTB) has turned resistant via efflux mechanisms.Entities:
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Year: 2015 PMID: 25887373 PMCID: PMC4417324 DOI: 10.1186/s12879-015-0905-0
Source DB: PubMed Journal: BMC Infect Dis ISSN: 1471-2334 Impact factor: 3.090
Figure 1Screening for IEDR MTB clinical isolates. 200 MTB isolates from sputum positive culture were subjected to drug sensitivity assay against INH or EMB. The assay used resazurin as oxidation-reduction indicator. A change in color from blue to pink indicated the growth of bacteria, and the MIC was defined as the minimum drug concentration that prevented the color change in resazurin solution. (A) H37Rv was tested in drug sensitivity assay. Assay was carried out in duplicates at each concentration of streptomycin. The upper panel shows the 24-hour result and the lower panel shows the 48-hour result. Labels were the concentrations of streptomycin in μg/ml after two-fold serial dilution. (B) Upper panel indicates the strain is resistant to both EMB and INH, and the lower panel indicates the strain is resistant to INH but not EMB. Labels were the concentrations of the drug EMB or INH in μg/ml after two-fold serial dilution. Letters in green indicate the normal range of sensitivity. Letters in red indicate clinical level of resistance. (C) A statistical result of drug resistance to INH. Two independent experiments were carried out and representative data were shown. **, p < 0.01.
Figure 2Verapamil reversed drug resistance in IEDR clinical isolates. Bacteria were incubated with 5 μg/ml verapamil for 24 hours before anti-tubercular drugs were added. Shown was one strain displaying reversal of the drug resistance to both INH and EMB.
Figure 3TET reversed drug resistance in IEDR clinical isolates. (A) Chemical structure of TET. (B) A display of one strain showing that the drug resistance was reversed after TET treatment. Bacteria were incubated with 30 μg/ml TET for 24 hours before anti-tubercular drugs were added. (C) A statistical result of TET treatment. Two independent experiments were carried out and representative data were shown. **, p < 0.01.