Department of Molecular and Cellular Biology, University of Guelph, Guelph, ON, Canada.
Mol Microbiol. 2020 Nov;114(5):721-734. doi: 10.1111/mmi.14565. Epub 2020 Jul 22.
Fungal infections are a global concern and the evolution of intrinsic resistance to current antifungals presents an alarming problem. For Cryptococcus neoformans, a human fungal pathogen of primarily immunocompromised individuals, resistance toward treatment strategies demands alternative approaches. Given the prevalence of virulence factor production during cryptococcal infection, an emerging and important field of research encompasses the development of novel antivirulence therapies proposed to improve host immune responses and promote fungal clearance. To accomplish this task, information regarding the presence and role of virulence factors, the mechanisms of action within the host, and the ability to influence fungal susceptibility to antifungals is pertinent. Research into mechanisms of antifungal resistance for C. neoformans is limited but extrapolation from successful studies in other fungal species can improve our understanding of mechanisms employed by C. neoformans and suggest targeted strategies to enhance our ability to combat the pathogen. In this Review, we highlight antifungal therapy options against Cryptococcus, explore current knowledge of underlying mechanisms promoting resistance, and present new opportunities for novel and effective strategies to overcome fungal infections and reduce, or possibly even reverse, the effects of resistance evolution.
真菌感染是一个全球性的问题,当前抗真菌药物内在耐药性的进化带来了一个令人警惕的问题。对于新型隐球菌,一种主要发生在免疫功能低下个体身上的人类真菌病原体,针对治疗策略的耐药性需要采取替代方法。鉴于在隐球菌感染过程中毒力因子的产生普遍存在,一个新兴的重要研究领域包括开发新的抗毒力治疗方法,以改善宿主免疫反应并促进真菌清除。为了完成这项任务,有关毒力因子的存在和作用、宿主内的作用机制以及影响真菌对抗真菌药物敏感性的能力的信息是相关的。针对新型隐球菌的抗真菌耐药性机制的研究是有限的,但可以从其他真菌物种的成功研究中推断出这些机制,从而加深我们对新型隐球菌所采用的机制的理解,并提出有针对性的策略,以提高我们对抗病原体的能力。在这篇综述中,我们强调了针对隐球菌的抗真菌治疗选择,探讨了促进耐药性的潜在机制的现有知识,并提出了新的机会,以开发新的、有效的策略来克服真菌感染,并减少甚至可能逆转耐药性进化的影响。