School of Pharmaceutical Sciences, EPGL, University of Geneva, University of Lausanne , 30 quai Ernest-Ansermet, CH-1211 Geneva 4, Switzerland.
Institute of Microbiology, University of Lausanne and University Hospital Center , Rue du Bugnon 48, CH-1011 Lausanne, Switzerland.
J Nat Prod. 2015 Dec 24;78(12):2994-3004. doi: 10.1021/acs.jnatprod.5b00744. Epub 2015 Dec 11.
A dichloromethane extract of the roots from the Panamanian plant Swartzia simplex exhibited a strong antifungal activity in a bioautography assay against a genetically modified hypersusceptible strain of Candida albicans. At-line HPLC activity based profiling of the crude extract enabled a precise localization of the antifungal compounds, and dereplication by UHPLC-HRESIMS indicated the presence of potentially new metabolites. Transposition of the HPLC reversed-phase analytical conditions to medium-pressure liquid chromatography (MPLC) allowed an efficient isolation of the major constituents. Minor compounds of interest were isolated from the MPLC fractions using semipreparative HPLC. Using this strategy, 14 diterpenes (1-14) were isolated, with seven (5-10, 14) being new antifungal natural products. The new structures were elucidated using NMR spectroscopy and HRESIMS analysis. The absolute configurations of some of the compounds were elucidated by electronic circular dichroism spectroscopy. The antifungal properties of these compounds were evaluated as their minimum inhibitory concentrations in a dilution assay against both hypersusceptible and wild-type strains of C. albicans and by assessment of their antibiofilm activities. The potential cytological effects on the ultrastructure of C. albicans of the antifungal compounds isolated were evaluated on thin sections by transmission electron microscopy.
从巴拿马植物 Swartzia simplex 的根的二氯甲烷提取物在针对遗传修饰的高度敏感白念珠菌菌株的生物自显影测定中表现出强烈的抗真菌活性。粗提取物的在线 HPLC 基于活性的分析能够精确定位抗真菌化合物,而 UHPLC-HRESIMS 的去重表明存在潜在的新代谢物。将 HPLC 反相分析条件转换为中压液相色谱(MPLC)允许有效地分离主要成分。使用半制备 HPLC 从 MPLC 馏分中分离出感兴趣的少量化合物。使用这种策略,分离出了 14 种二萜(1-14),其中 7 种(5-10,14)是新的抗真菌天然产物。通过 NMR 光谱和 HRESIMS 分析阐明了新结构。通过电子圆二色性光谱阐明了一些化合物的绝对构型。通过稀释测定评估了这些化合物对高度敏感和野生型白念珠菌菌株的最低抑菌浓度,以及评估它们的抗生物膜活性,评估了这些化合物对分离出的抗真菌化合物对白念珠菌超微结构的潜在细胞学影响。通过透射电子显微镜在薄切片上评估了