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首页> 外文期刊>Journal of natural products >Waikialoid A Suppresses Hyphal Morphogenesis and Inhibits Biofilm Development in Pathogenic Candida albicans
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Waikialoid A Suppresses Hyphal Morphogenesis and Inhibits Biofilm Development in Pathogenic Candida albicans

机译:Waikialoid A抑制菌丝形态发生并抑制致病性白色念珠菌的生物膜发育。

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A chemically prolific strain of Aspergillus was isolated from a soil sample collected near Waikiki Beach, Honolulu, Hawaii. The fungus produced several secondary metabolites, which were purified and placed in our natural products library and were later screened for substances capable of inhibiting biofilm formation by Candida albicans. It was determined that one of the secondary metabolites from the Hawaiian fungal isolate, a new complex prenylated indole alkaloid named waikialoid A (1), inhibited biofilm formation with an IC50 value of 1.4 mu M. Another structurally unrelated, presumably polyketide metabolite, waikialide A (15), also inhibited C. albicans biofilm formation, but was much less potent (IC50 value of 32.4 mu M). Microscopy studies revealed that compound I also inhibited C. albicans hyphal morphogenesis. While metabolite 1 appears ineffective at disrupting preformed biofilms, the accumulated data indicate that the new compound may exert its activity against C. albicans during the early stages of surface colonization involving cell adherence, hyphal development, and/or biofilm assembly. Unlike some other stephacidinotoamide compounds, metabolite 1 was not cytotoxic to fungi or human cells (up to 200 mu M), which makes this an intriguing model compound for studying the adjunctive use of biofilm inhibitors in combination with standard antifungal antibiotics.
机译:从在夏威夷檀香山的威基基海滩附近收集的土壤样品中分离出一种多产曲霉的化学菌株。真菌产生了几种次级代谢产物,将其纯化并放在我们的天然产物库中,然后筛选出能够抑制白色念珠菌形成生物膜的物质。已确定,夏威夷真菌分离物中的一种次级代谢产物,一种新的复杂的异戊二烯化吲哚生物碱,名为waikialoid A(1),抑制了生物膜的形成,IC50值为1.4μM。另一种与结构无关的,大概是聚酮化合物的代谢产物waikialide A (15),也抑制白色念珠菌生物膜的形成,但效力低得多(IC50值为32.4μM)。显微镜研究表明,化合物I还抑制白色念珠菌菌丝形态发生。尽管代谢物1不能有效破坏预先形成的生物膜,但累积的数据表明,新化合物在涉及细胞粘附,菌丝发育和/或生物膜组装的表面定殖的早期阶段可能发挥其针对白色念珠菌的活性。与某些其他的stephacidin / notoamide化合物不同,代谢产物1对真菌或人类细胞(最大200μM)没有细胞毒性,这使其成为研究生物膜抑制剂与标准抗真菌抗生素联合使用的一种引人入胜的模型化合物。

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