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Activity of Scorpion Venom-Derived Antifungal Peptides against Planktonic Cells of Candida spp. and Cryptococcus neoformans and Candida albicans Biofilms

机译:蝎毒衍生的抗真菌肽对 Candida spp浮游细胞的活性。和新隐球菌白色念珠菌生物膜

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The incidence of fungal infections has been increasing in the last decades, while the number of available antifungal classes remains the same. The natural and acquired resistance of some fungal species to available therapies, associated with the high toxicity of these drugs on the present scenario and makes an imperative of the search for new, more efficient and less toxic therapeutic choices. Antimicrobial peptides (AMPs) are a potential class of antimicrobial drugs consisting of evolutionarily conserved multifunctional molecules with both microbicidal and immunomodulatory properties being part of the innate immune response of diverse organisms. In this study, we evaluated 11 scorpion-venom derived non-disulfide-bridged peptides against Cryptococcus neoformans and Candida spp., which are important human pathogens. Seven of them, including two novel molecules, showed activity against both genera with minimum inhibitory concentration values ranging from 3.12 to 200 μM and an analogous activity against Candida albicans biofilms. Most of the peptides presented low hemolytic and cytotoxic activity against mammalian cells. Modifications in the primary peptide sequence, as revealed by in silico and circular dichroism analyses of the most promising peptides, underscored the importance of cationicity for their antimicrobial activity as well as the amphipathicity of these molecules and their tendency to form alpha helices. This is the first report of scorpion-derived AMPs against C. neoformans and our results underline the potential of scorpion venom as a source of antimicrobials. Further characterization of their mechanism of action, followed by molecular optimization to decrease their cytotoxicity and increase antimicrobial activity, is needed to fully clarify their real potential as antifungals.
机译:在过去的几十年中,真菌感染的发生率一直在增加,而可用的抗真菌类药物的数量保持不变。在目前的情况下,某些真菌对自然疗法的天然抵抗力和获得性抵抗力与这些药物的高毒性相关,因此必须寻求新的,更有效的和毒性更低的治疗选择。抗菌肽(AMPs)是一类潜在的抗菌药物,由进化上保守的多功能分子组成,具有杀菌和免疫调节特性,是多种生物体固有免疫反应的一部分。在这项研究中,我们评估了11种蝎毒衍生的抗二硫化隐球菌和假丝酵母菌的非二硫键桥接肽,它们是重要的人类病原体。其中七个,包括两个新分子,显示出针对两个属的活性,最小抑菌浓度值为3.12至200μM,并且对白色念珠菌生物膜具有类似活性。大多数肽对哺乳动物细胞的溶血和细胞毒活性较低。如对最有前途的肽的计算机分析和圆二色性分析所揭示的,主要肽序列的修饰强调了阳离子性对其抗菌活性以及这些分子的两亲性及其形成α螺旋的趋势的重要性。这是蝎子衍生的抗新孢子虫的AMPs的首次报道,我们的结果强调了蝎毒作为抗菌剂来源的潜力。需要进一步表征其作用机理,然后进行分子优化以降低其细胞毒性并增加抗微生物活性,以充分阐明其作为抗真菌剂的真正潜力。

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