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小分子宿主防御肽类似物通过膜活性机制发挥强大的体外和体内抗真菌活性。

Potent in vitro and in vivo antifungal activity of a small molecule host defense peptide mimic through a membrane-active mechanism.

机构信息

Department of Oral Biology, University of Florida, Gainesville, FL, 32610, USA.

Graduate School of Biomedical Sciences, New Jersey Medical School, Rutgers, Newark, NJ, 07101, USA.

出版信息

Sci Rep. 2017 Jun 28;7(1):4353. doi: 10.1038/s41598-017-04462-6.

Abstract

Lethal systemic fungal infections of Candida species are increasingly common, especially in immune compromised patients. By in vitro screening of small molecule mimics of naturally occurring host defense peptides (HDP), we have identified several active antifungal molecules, which also exhibited potent activity in two mouse models of oral candidiasis. Here we show that one such compound, C4, exhibits a mechanism of action that is similar to the parent HDP upon which it was designed. Specifically, its initial interaction with the anionic microbial membrane is electrostatic, as its fungicidal activity is inhibited by cations. We observed rapid membrane permeabilization to propidium iodide and ATP efflux in response to C4. Unlike the antifungal peptide histatin 5, it did not require energy-dependent transport across the membrane. Rapid membrane disruption was observed by both fluorescence and electron microscopy. The compound was highly active in vitro against numerous fluconazole-resistant clinical isolates of C. albicans and non-albicans species, and it exhibited potent, dose-dependent activity in a mouse model of invasive candidiasis, reducing kidney burden by three logs after 24 hours, and preventing mortality for up to 17 days. Together the results support the development of this class of antifungal drug to treat invasive candidiasis.

摘要

白色念珠菌等条件致病性真菌引起的致死性系统性真菌感染越来越常见,尤其是在免疫功能低下的患者中。通过对天然宿主防御肽(HDP)的小分子模拟物进行体外筛选,我们已经鉴定出了几种具有抗真菌活性的分子,这些分子在两种口腔念珠菌病的小鼠模型中也表现出了很强的活性。在这里,我们证明了其中一种化合物 C4 的作用机制类似于其设计所依据的母体 HDP。具体来说,它与带负电荷的微生物膜的初始相互作用是静电的,因为其杀菌活性会被阳离子抑制。我们观察到 C4 会导致对碘化丙啶和 ATP 的快速膜透化和外排。与抗真菌肽Histatin 5 不同,它不需要跨膜的能量依赖性转运。荧光和电子显微镜观察到了快速的膜破坏。该化合物对许多氟康唑耐药的白色念珠菌和非白色念珠菌临床分离株具有高度的体外活性,并且在侵袭性念珠菌病的小鼠模型中表现出了强大的、剂量依赖性的活性,在 24 小时后降低了肾脏负担 3 个对数级,并在长达 17 天内预防了死亡。这些结果共同支持开发这类抗真菌药物来治疗侵袭性念珠菌病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5224/5489528/c5cdb21a6f09/41598_2017_4462_Fig1_HTML.jpg

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