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病原菌多重耐药外排泵的临床意义

Clinical implications of multiple drug resistance efflux pumps of pathogenic bacteria.

作者信息

Rouveix B

机构信息

Clinical Pharmacology Department, Cochin-St Vincent de Paul, Paris, France.

出版信息

J Antimicrob Chemother. 2007 Jun;59(6):1208-9. doi: 10.1093/jac/dkl564.

Abstract

Resistance of microorganisms to many classes of antibiotics and other drugs is a major problem throughout the world. This antimicrobial resistance can be mediated by various mechanisms such as enzymatic inactivation of the drug, alteration of the target and decreased intracellular concentration of the antimicrobial. The latter mechanism is mediated by either decreased influx or increased efflux or a combination of both. Recently, efflux has become increasingly recognized as a major component of resistance. Some efflux pumps selectively extrude specific antibiotics such as macrolides, lincosamides and/or streptogramins and tetracyclines, whereas others, referred to as multiple drug resistance pumps, expel a variety of structurally diverse anti-infectives with different modes of action. This phenomenon, whereby a single transporter is able to recognize and transport multiple antimicrobials with no common structural homology, was first described in the late 1980s in higher eukaryotes where P-glycoprotein was found to play a role in resistance to anti-cancer chemotherapeutic agents. Later, it became apparent that efflux systems were also present in microorganisms. Efflux pump inhibitors offer considerable promise as therapeutic agents, as they should restore the activity of standard antibiotics.

摘要

微生物对许多类抗生素和其他药物产生耐药性是一个全球性的重大问题。这种抗菌耐药性可由多种机制介导,如药物的酶促失活、靶点改变以及抗菌药物细胞内浓度降低。后一种机制是由流入减少或流出增加或两者共同作用介导的。近年来,流出已日益被认为是耐药性的一个主要组成部分。一些流出泵选择性地排出特定抗生素,如大环内酯类、林可酰胺类和/或链阳菌素类以及四环素类,而其他一些被称为多药耐药泵的泵则排出多种具有不同作用方式的结构多样的抗感染药物。这种现象,即单个转运蛋白能够识别并转运多种没有共同结构同源性的抗菌药物,最早于20世纪80年代末在高等真核生物中被描述,当时发现P-糖蛋白在抗癌化疗药物耐药性中起作用。后来,很明显流出系统也存在于微生物中。流出泵抑制剂作为治疗药物具有很大的前景,因为它们应该能恢复标准抗生素的活性。

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