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Structure-activity relationship studies of ultra-short peptides with potent activities against fluconazole-resistant Candida albicans

机译:对氟康唑念珠菌抗甘蔗糖糖蛋白白糖糖尿病患者有效活性的结构 - 活性关系研究

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Vulvovaginal candidiasis (VVC) is a genital fungal infection afflicting approximately 75% of women globally and is primarily caused by the yeast Candida albicans. The extensive use of fluconazole, the first line antifungal drug of choice, has led to the emergence of fluconazole-resistant C. albicans, creating a global clinical concern. This, coupled to the lack of new antifungal drugs entering the market over the past decade, has made it imperative for the introduction of new antifungal drug classes. Peptides with antifungal properties are deemed potential drug candidates due to their rapid membrane-disrupting mechanism of action. By specifically targeting and rapidly disrupting fungal membranes, they reduce the chances of resistance development and treatment duration. In a previous screening campaign involving an antimicrobial peptide library, we identified an octapeptide (IKIKIKIK-NH2) with potent activity against C. albicans. Herein, we report a structure-activity relationship study on this peptide with the aim of designing a more potent peptide for further development. The lead peptide was then tested against a panel of fluconazole-resistant C. albicans, subjected to a fungicidal/static determination assay, a human dermal fibroblast viability assay and a homozygous profiling assay to gain insights into its mechanism of action and potential for further development as a topical antifungal agent. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:外阴诺啶患者(VVC)是一种生殖器真菌感染,折磨约75%的女性,主要由酵母念珠菌蛋白患者引起。广泛使用氟康唑,第一线抗真菌药物的选择,导致了氟康唑抗性C.醛糖醛的出现,创造了全球临床关注。这使得缺乏在过去十年进入市场的新的抗真菌药物,使得引入新的抗真菌药物课程。由于其快速的膜破坏作用机制,具有抗真菌特性的肽被认为是潜在的药物候选。通过专门靶向和快速破坏真菌膜,它们降低了抗性发育和治疗持续时间的机会。在涉及抗微生物肽库的先前筛选活动中,我们鉴定了八通肽(Ikikikik-NH2),其具有针对性蛋白的含有效力的活性。在此,我们报告了对该肽的结构 - 活性关系研究,其目的是设计更有效的肽以进行进一步发展。然后对铅肽进行测试,抗氟康唑抗性C.醛糖醛,经过杀真菌/静态测定测定,人的皮肤成纤维细胞活力测定和纯合的分析测定,以获得进一步发展的作用机制和潜力的洞察力作为局部抗真菌剂。 (c)2018年Elsevier Masson SAS。版权所有。

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