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High-throughput synergy screening identifies microbial metabolites as combination agents for the treatment of fungal infections

机译:高通量协同筛选将微生物代谢物鉴定为组合药物,用于治疗真菌感染

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摘要

The high mortality rate of immunocompromised patients with fungal infections and the limited availability of highly efficacious and safe agents demand the development of new antifungal therapeutics. To rapidly discover such agents, we developed a high-throughput synergy screening (HTSS) strategy for novel microbial natural products. Specifically, a microbial natural product library was screened for hits that synergize the effect of a low dosage of ketoconazole (KTC) that alone shows little detectable fungicidal activity. Through screening of ≈20,000 microbial extracts, 12 hits were identified with broad-spectrum antifungal activity. Seven of them showed little cytotoxicity against human hepatoma cells. Fractionation of the active extracts revealed beauvericin (BEA) as the most potent component, because it dramatically synergized KTC activity against diverse fungal pathogens by a checkerboard assay. Significantly, in our immunocompromised mouse model, combinations of BEA (0.5 mg/kg) and KTC (0.5 mg/kg) prolonged survival of the host infected with Candida parapsilosis and reduced fungal colony counts in animal organs including kidneys, lungs, and brains. Such an effect was not achieved even with the high dose of 50 mg/kg KTC. These data support synergism between BEA and KTC and thereby a prospective strategy for antifungal therapy.
机译:具有真菌感染的免疫功能低下患者的高死亡率和高效安全药物的有限可获得性要求开发新的抗真菌治疗剂。为了快速发现此类药物,我们针对新型微生物天然产物开发了高通量协同筛选(HTSS)策略。具体而言,针对微生物的天然产物库进行了筛选,这些命中可以协同低剂量的酮康唑(KTC)的作用,而酮康唑(KTC)本身仅显示出很少的可检测的杀菌活性。通过筛选约20,000种微生物提取物,鉴定出12种具有广谱抗真菌活性的产品。其中有七个对人肝癌细胞的细胞毒性很小。活性提取物的分馏显示,beauvericin(BEA)是最有效的成分,因为它通过棋盘分析显着增强了KTC对多种真菌病原体的活性。值得注意的是,在免疫受损的小鼠模型中,BEA(0.5 mg / kg)和KTC(0.5 mg / kg)的组合可延长感染副翼念珠菌的宿主的存活时间,并减少动物器官(包括肾脏,肺和脑)中的真菌菌落数量。即使使用高剂量的50 mg / kg KTC,也达不到这种效果。这些数据支持BEA和KTC之间的协同作用,从而支持抗真菌治疗的前瞻性策略。

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