Cannon Richard D, Lamping Erwin, Holmes Ann R, Niimi Kyoko, Baret Philippe V, Keniya Mikhail V, Tanabe Koichi, Niimi Masakazu, Goffeau Andre, Monk Brian C
Department of Oral Sciences, School of Dentistry, University of Otago, P.O. Box 647, Dunedin 9054, New Zealand.
Clin Microbiol Rev. 2009 Apr;22(2):291-321, Table of Contents. doi: 10.1128/CMR.00051-08.
Fungi cause serious infections in the immunocompromised and debilitated, and the incidence of invasive mycoses has increased significantly over the last 3 decades. Slow diagnosis and the relatively few classes of antifungal drugs result in high attributable mortality for systemic fungal infections. Azole antifungals are commonly used for fungal infections, but azole resistance can be a problem for some patient groups. High-level, clinically significant azole resistance usually involves overexpression of plasma membrane efflux pumps belonging to the ATP-binding cassette (ABC) or the major facilitator superfamily class of transporters. The heterologous expression of efflux pumps in model systems, such Saccharomyces cerevisiae, has enabled the functional analysis of efflux pumps from a variety of fungi. Phylogenetic analysis of the ABC pleiotropic drug resistance family has provided a new view of the evolution of this important class of efflux pumps. There are several ways in which the clinical significance of efflux-mediated antifungal drug resistance can be mitigated. Alternative antifungal drugs, such as the echinocandins, that are not efflux pump substrates provide one option. Potential therapeutic approaches that could overcome azole resistance include targeting efflux pump transcriptional regulators and fungal stress response pathways, blockade of energy supply, and direct inhibition of efflux pumps.
真菌会在免疫功能低下和身体虚弱的人群中引发严重感染,在过去30年里,侵袭性真菌病的发病率显著上升。诊断缓慢以及抗真菌药物种类相对较少导致系统性真菌感染的归因死亡率很高。唑类抗真菌药物常用于真菌感染,但唑类耐药性可能是一些患者群体面临的问题。高水平、具有临床意义的唑类耐药通常涉及属于ATP结合盒(ABC)或主要易化子超家族转运蛋白类别的质膜外排泵的过表达。外排泵在酿酒酵母等模型系统中的异源表达使得对来自多种真菌的外排泵进行功能分析成为可能。对ABC多药耐药家族的系统发育分析为这一重要外排泵类别提供了新的进化视角。有几种方法可以减轻外排介导的抗真菌药物耐药性的临床意义。不被外排泵作为底物的替代抗真菌药物,如棘白菌素,提供了一种选择。可能克服唑类耐药性的潜在治疗方法包括靶向外排泵转录调节因子和真菌应激反应途径、阻断能量供应以及直接抑制外排泵。