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Potent and Synergistic Extract Combinations from Terminalia Catappa Terminalia Mantaly and Monodora tenuifolia Against Pathogenic Yeasts

机译:榄仁木榄仁木和Monodora tenuifolia的有效和协同提取物组合可抵抗病原菌。

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摘要

Mycoses caused by Candida and Cryptococcus species, associated with the advent of antifungal drug resistance have emerged as major health problems. Improved control measures and innovative therapies are needed. This paper describes results from the screening of bio-guided fractionated extracts alone and combinations of Terminalia catappa, Terminalia mantaly and Monodora tenuifolia harvested in Cameroon. Crude ethanolic, hydro-ethanolic and aqueous extracts and bio-guided fractions were screened for antifungal activity against isolates of C. albicans, C. glabrata, C. parapsilosis and Cr. neoformans and the reference strain C. albicans NR-29450. Minimal inhibitory concentrations (MIC) were determined using a broth micro dilution method according to the Clinical & Laboratory Standards Institute (CLSI). Time kill kinetics of extracts alone and in combination were also evaluated. Extracts from T. mantaly stem bark were the most active with the best MIC values ranging from 0.04 mg/mL to 0.16 mg/mL. Synergistic interactions were observed with combinations of sub-fractions from M. tenuifolia, T. mantaly and T. catappa. Combination of sub-fractions from M. tenuifolia and T. mantaly (C36/C12) showed synergistic interaction and fungicidal effect against four out of five tested yeasts. These results support further investigation of medicinal plant extracts alone and in combination as starting points for the development of alternative antifungal therapy.
机译:由念珠菌和隐球菌引起的霉菌病与抗真菌药物耐药性的出现有关,已经成为主要的健康问题。需要改进的控制措施和创新的疗法。本文介绍了单独筛选生物引导的分级提取物以及在喀麦隆收获的榄仁,榄仁和曼陀罗的组合的筛选结果。筛选了粗乙醇,水乙醇和水性提取物以及生物引导的馏分,以对抗白念珠菌,光滑念珠菌,副念珠菌和铬的分离物的抗真菌活性。 Neoformans和参考菌株白色念珠菌NR-29450。根据临床和实验室标准协会(CLSI),使用肉汤微量稀释法确定最低抑菌浓度(MIC)。还评估了单独和组合使用的提取物的时间杀灭动力学。曼氏锥虫茎皮的提取物活性最高,MIC值范围从0.04 mg / mL到0.16 mg / mL。观察到的协同作用是结合了来自M. tenuifolia,T。mantaly和T. catappa的亚组分的组合。来自藤蔓分枝杆菌和曼氏螺旋体的亚组分(C36 / C12)的组合显示出针对五种测试酵母中的四种酵母的协同相互作用和杀菌作用。这些结果支持进一步研究药用植物提取物单独或组合使用,作为开发替代性抗真菌治疗的起点。

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