Department of Chemistry and Biochemistry, Brigham Young University, C100 BNSN, Provo, UT 84602, USA.
Extherid Biosciences, Jackson, WY, USA.
J Antimicrob Chemother. 2018 Jun 1;73(6):1537-1545. doi: 10.1093/jac/dky085.
Candida auris has emerged as a serious threat to human health. Of particular concern are the resistance profiles of many clinical isolates, with some being resistant to multiple classes of antifungals.
Measure susceptibilities of C. auris isolates, in planktonic and biofilm forms, to ceragenins (CSAs). Determine the effectiveness of selected ceragenins in gel and cream formulations in eradicating fungal infections in tissue explants.
A collection of 100 C. auris isolates available at CDC was screened for susceptibility to a lead ceragenin. A smaller collection was used to characterize antifungal activities of other ceragenins against organisms in planktonic and biofilm forms. Effects of ceragenins on fungal cells and biofilms were observed via microscopy. An ex vivo model of mucosal fungal infection was used to evaluate formulated forms of lead ceragenins.
Lead ceragenins displayed activities comparable to those of known antifungal agents against C. auris isolates with MICs of 0.5-8 mg/L and minimum fungicidal concentrations (MFCs) of 2-64 mg/L. No cross-resistance with other antifungals was observed. Fungal cell morphology was altered in response to ceragenin treatment. Ceragenins exhibited activity against sessile organisms in biofilms. Gel and cream formulations including 2% CSA-44 or CSA-131 resulted in reductions of over 4 logs against established fungal infections in ex vivo mucosal tissues.
Ceragenins demonstrated activity against C. auris, suggesting that these compounds warrant further study to determine whether they can be used for topical applications to skin and mucosal tissues for treatment of infections with C. auris and other fungi.
耳念珠菌已成为人类健康的严重威胁。尤其令人担忧的是,许多临床分离株的耐药谱,其中一些对多种类别的抗真菌药物具有耐药性。
测量浮游和生物膜形式的耳念珠菌分离株对杀菌素(CSAs)的敏感性。确定选定杀菌素在凝胶和乳膏制剂中的有效性,以消除组织外植体中的真菌感染。
筛选了疾病预防控制中心(CDC)可用的 100 株耳念珠菌分离株,以确定对先导杀菌素的敏感性。使用较小的分离株来表征其他杀菌素对浮游和生物膜形式的生物体的抗真菌活性。通过显微镜观察杀菌素对真菌细胞和生物膜的影响。使用粘膜真菌感染的离体模型来评估先导杀菌素的配方形式。
先导杀菌素显示出与已知抗真菌药物相当的活性,对 MIC 为 0.5-8mg/L 和 MFC 为 2-64mg/L 的耳念珠菌分离株具有活性。未观察到与其他抗真菌药物的交叉耐药性。真菌细胞形态因杀菌素处理而发生改变。杀菌素对生物膜中的静止生物具有活性。包含 2% CSA-44 或 CSA-131 的凝胶和乳膏制剂可使离体粘膜组织中已建立的真菌感染减少 4 个对数级以上。
杀菌素对耳念珠菌表现出活性,表明这些化合物值得进一步研究,以确定它们是否可用于皮肤和粘膜组织的局部应用,以治疗耳念珠菌和其他真菌引起的感染。