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Targeting efflux pumps to overcome antifungal drug resistance

机译:针对外排泵克服抗真菌药耐药性

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摘要

Resistance to antifungal drugs is an increasingly significant clinical problem. The most common antifungal resistance encountered is efflux pump-mediated resistance of Candida species to azole drugs. One approach to overcome this resistance is to inhibit the pumps and chemosensitize resistant strains to azole drugs. Drug discovery targeting fungal efflux pumps could thus result in the development of azole-enhancing combination therapy. Heterologous expression of fungal efflux pumps in Saccharomyces cerevisiae provides a versatile system for screening for pump inhibitors. Fungal efflux pumps transport a range of xenobiotics including fluorescent compounds. This enables the use of fluorescence-based detection, as well as growth inhibition assays, in screens to discover compounds targeting efflux-mediated antifungal drug resistance. A variety of medium- and high-throughput screens have been used to identify a number of chemical entities that inhibit fungal efflux pumps.
机译:对抗真菌药物的耐药性是日益重要的临床问题。遇到的最常见的抗真菌药耐药性是念珠菌对唑类药物的外排泵介导的耐药性。克服这种耐药性的一种方法是抑制泵浦并使耐药菌株对唑类药物产生化学敏感性。因此,针对真菌外排泵的药物发现可能会导致增强唑类联合疗法的发展。酿酒酵母中真菌外排泵的异源表达提供了筛选泵抑制剂的通用系统。真菌外排泵可输送多种外源生物,包括荧光化合物。这样可以在屏幕上使用基于荧光的检测以及生长抑制测定法,以发现靶向外排介导的抗真菌药物耐药性的化合物。各种中高通量筛选已用于鉴定抑制真菌外排泵的许多化学实体。

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