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The Design Synthesis and Characterizations of Spore Germination Inhibitors Effective against an Epidemic Strain of Clostridium difficile

机译:对难辨梭状芽孢杆菌流行株有效的孢子萌发抑制剂的设计合成和表征。

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摘要

Clostridium difficile infections (CDI), particularly those caused by the BI/NAP1/027 epidemic strains, are challenging to treat. One method to address this disease is to prevent the development of CDI by inhibiting the germination of C. difficile spores. Previous studies have identified cholic amide m-sulfonic acid, CamSA, as an inhibitor of spore germination. However, CamSA is inactive against the hypervirulent strain . To circumvent this problem, a series of cholic acid amides were synthesized and tested against . The best compound in the series was the simple phenyl amide analogue which possessed an IC50 value of 1.8 μM, more than 225 times as potent as the natural germination inhibitor, chenodeoxycholate. This is the most potent inhibitor of C. difficile spore germination described to date. QSAR and molecular modeling analysis demonstrated that increases in hydrophobicity and decreases in partial charge or polar surface area were correlated with increases in potency.
机译:艰难梭菌感染(CDI),尤其是由BI / NAP1 / 027流行株引起的艰难梭菌感染,难以治疗。解决该疾病的一种方法是通过抑制艰难梭菌孢子的萌发来预防CDI的发展。先前的研究已将胆酰胺间磺酸CamSA鉴定为孢子萌发抑制剂。然而,CamSA对高毒力菌株没有活性。为了解决这个问题,合成了一系列胆酸酰胺并对其进行了测试。该系列中最好的化合物是简单的苯基酰胺类似物,其IC50值为1.8μM,是天然发芽抑制剂鹅去氧胆酸盐的225倍以上。迄今为止,这是最有力的艰难梭菌孢子萌发抑制剂。 QSAR和分子模型分析表明,疏水性的增加和部分电荷或极性表面积的减少与效力的增加相关。

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