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Bioactive Coatings with Ag-Camphorimine Complexes to Prevent Surface Colonization by the Pathogenic Yeast Candida albicans

机译:具有Ag-Camphorimine复合物的生物活性涂层以防止致病酵母念珠菌蛋白糖苷的表面定植物

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摘要

Currently there is a gap between the rate of new antifungal development and the emergence of resistance among Candida clinical strains, particularly threatened by the extreme adhesiveness of C. albicans to indwelling medical devices. Two silver camphorimine complexes, [Ag(OH){OC10H14N(C6H4)2NC10H14O}] (compound P) and [{Ag(OC10H14NC6H4CH3-p)}2(μ-O)] (compound Q), are herein demonstrated as having high inhibiting activity towards the growth of Candida albicans and Candida glabrata clinical strains resistant to azoles, the frontline antifungals used in clinical practice. Compounds P and Q were also explored as bioactive coatings to prevent colonization by C. albicans and colonize the surface of indwelling medical devices, resulting in persistent infections. Functionalization of stainless steel with polycaprolactone (PCL) matrix embedded with compounds P or Q was reported for the first time to inhibit the colonization of C. albicans by 82% and 75%, respectively. The coating of PCL loaded with Q or P did not cause cytotoxic effects in mammalian cells, demonstrating the biocompatibility of the explored approach. The identification and further exploration of new approaches for surface engineering based on new molecules that can sensitize resistant strains, as herein demonstrated for complexes P and Q, is a significant step forward to improve the successful treatment of candidiasis.
机译:目前,新的抗真菌发育的速率与念珠菌临床菌株之间的抗性的出现,特别是通过C.古典人对留置医疗器械的极端粘附性造成的抗性。这里的两种银樟脑复合物[ag(OH){OC 10H14N(C6H4)2NC114O}](化合物P)和[{Ag(OC 10H14NC6H4CH3-P)} 2(μ-O)](化合物Q),所示是具有高的抑制患有念珠菌和念珠菌的生长的活性和抗蛋白酶抗脂肪的临床菌株,临床实践中使用的前线抗真菌。化合物P和Q还探索为生物活性涂层,以防止C. albicans殖民化并定植留置医疗装置的表面,导致持续的感染。第一次报告嵌入化合物P或Q的聚己内酯(PCL)基质的不锈钢的官能化,以分别抑制C.醛型人的殖民化82%和75%。用Q或P负载的PCL涂层没有引起哺乳动物细胞中的细胞毒性作用,证明了探索方法的生物相容性。基于可以敏感抗性菌株的新分子的鉴定和进一步探索表面工程的新方法,如本文所证明的复合物P和Q,这是提高念珠菌病的成功治疗的重要一步。

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