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天然糖苷类药物耐药逆转潜力的比较:尼扎替丁与尼扎林联合应用的潜力。

Comparative Drug Resistance Reversal Potential of Natural Glycosides: Potential of Synergy Niaziridin & Niazirin.

机构信息

Molecular Bioprospection Department, CSIR-Central Institute of Medicinal and Aromatic Plants, Lucknow-226015, India.

Microbiology Department, ICMR-Regional Medical Research Centre, Bhubaneshwar-751023 (Odisha) India.

出版信息

Curr Top Med Chem. 2019;19(10):847-860. doi: 10.2174/1568026619666190412120008.

Abstract

BACKGROUND

Due to the limited availability of antibiotics, Gram-negative bacteria (GNB) acquire different levels of drug resistance. It raised an urgent need to identify such agents, which can reverse the phenomenon of drug resistance.

OBJECTIVE

To understand the mechanism of drug resistance reversal of glycosides; niaziridin and niazirin isolated from the pods of Moringa oleifera and ouabain (control) against the clinical isolates of multidrug-resistant Escherichia coli.

METHODS

The MICs were determined following the CLSI guidelines for broth micro-dilution. In-vitro combination studies were performed by broth checkerboard method followed by Time-Kill studies, the efflux pump inhibition assay, ATPase inhibitory activity, mutation prevention concentration and in-silico studies.

RESULTS

The results showed that both glycosides did not possess antibacterial activity of their own, but in combination, they reduced the MIC of tetracycline up to 16 folds. Both were found to inhibit efflux pumps, but niaziridin was the best. In real time expression pattern analysis, niaziridin was also found responsible for the down expression of the two important efflux pump acrB & yojI genes alone as well as in combination. Niaziridin was also able to over express the porin forming genes (ompA & ompX). These glycosides decreased the mutation prevention concentration of tetracycline.

CONCLUSION

This is the first ever report on glycosides, niazirin and niaziridin acting as drug resistance reversal agent through efflux pump inhibition and modulation of expression pattern drug resistant genes. This study may be helpful in preparing an effective antibacterial combination against the drug-resistant GNB from a widely growing Moringa oleifera.

摘要

背景

由于抗生素的供应有限,革兰氏阴性菌(GNB)获得了不同程度的耐药性。这就迫切需要识别出能够逆转耐药现象的药物。

目的

了解糖苷类药物耐药逆转的机制;从辣木豆荚中分离出的尼扎林和尼扎里丁,以及哇巴因(对照)对临床分离的多药耐药大肠杆菌的作用。

方法

采用 CLSI 肉汤微量稀释法测定 MIC。采用肉汤棋盘法进行体外联合研究,然后进行时间杀伤研究、外排泵抑制试验、ATP 酶抑制活性、突变预防浓度和计算机模拟研究。

结果

结果表明,这两种糖苷类物质本身并没有抗菌活性,但联合使用时,可将四环素的 MIC 降低至 16 倍。两种糖苷类物质均被发现能抑制外排泵,但尼扎林的抑制作用最强。实时表达模式分析表明,尼扎里丁单独以及与其他药物联合使用时,均能下调两个重要外排泵 acrB 和 yojI 基因的表达。尼扎里丁还能上调孔形成基因(ompA 和 ompX)的表达。这些糖苷类物质降低了四环素的突变预防浓度。

结论

这是首次报道糖苷类、尼扎林和尼扎里丁通过抑制外排泵和调节耐药基因表达模式来作为耐药逆转剂。这项研究可能有助于制备针对广泛生长的辣木的有效抗耐药革兰氏阴性菌的抗菌联合药物。

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