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真菌生物膜与耐药性。

Fungal biofilms and drug resistance.

作者信息

Jabra-Rizk Mary Ann, Falkler William A, Meiller Timothy F

机构信息

Department of Diagnostic Sciences and Pathology, Dental School, University of Maryland, Baltimore, Maryland 21201, USA.

出版信息

Emerg Infect Dis. 2004 Jan;10(1):14-9. doi: 10.3201/eid1001.030119.

Abstract

Candida species, including the novel opportunistic pathogen Candida dubliniensis, are now emerging as major agents of nosocomial infections. Many such manifestations of infections associated with the formation of Candida biofilms include those occurring on devices such as indwelling intravascular catheters. Fungal biofilm-associated infections are frequently refractory to conventional therapy because of resistance to antimicrobial agents. This resistance could be in part due to the surface-induced upregulation of drug efflux pumps. Biofilm-associated Candida show uniform resistance to a wide spectrum of the currently available conventional antifungal agents, which implies that antimicrobial drugs that specifically target biofilm-associated infections are needed. The novel classes of antifungal agents, the lipid formulation of amphotericins, and the echinocandins have demonstrated unique antifungal activity against the resistant Candida biofilms, providing a breakthrough in the treatment of life-threatening invasive systemic mycoses. The use of drugs effective in combating biofilm-associated infections could lead to major developments in the treatment of fungal implant infections.

摘要

念珠菌属,包括新型机会致病菌都柏林念珠菌,现已成为医院感染的主要病原体。许多与念珠菌生物膜形成相关的感染表现包括发生在诸如留置血管内导管等装置上的感染。由于对抗菌药物具有抗性,真菌生物膜相关感染通常对传统治疗具有耐药性。这种抗性可能部分归因于表面诱导的药物外排泵上调。生物膜相关念珠菌对目前可用的多种传统抗真菌药物均表现出一致的抗性,这意味着需要专门针对生物膜相关感染的抗菌药物。新型抗真菌药物、两性霉素的脂质制剂和棘白菌素已显示出对耐药念珠菌生物膜具有独特的抗真菌活性,为治疗危及生命的侵袭性系统性真菌病带来了突破。使用有效对抗生物膜相关感染的药物可能会在真菌植入物感染的治疗方面取得重大进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43cb/3031105/983a6fb4bcab/03-0119-F1.jpg

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