首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Synthesis PASS-Predication and in Vitro Antimicrobial Activity of Benzyl 4-O-benzoyl-α-l-rhamnopyranoside Derivatives
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Synthesis PASS-Predication and in Vitro Antimicrobial Activity of Benzyl 4-O-benzoyl-α-l-rhamnopyranoside Derivatives

机译:苄基4-O-苯甲酰基-α-1-鼠李糖吡喃糖苷衍生物的合成PASS预测和体外抗菌活性

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摘要

Benzyl α-l-rhamnopyranoside >4, obtained by both conventional and microwave assisted glycosidation techniques, was subjected to 2,3-O-isopropylidene protection to yield compound >5 which on benzoylation and subsequent deprotection of isopropylidene group gave the desired 4-O-benzoylrhamnopyranoside >7 in reasonable yield. Di-O-acetyl derivative of benzoate >7 was prepared to get newer rhamnopyranoside. The structure activity relationship (SAR) of the designed compounds was performed along with the prediction of activity spectra for substances (PASS) training set. Experimental studies based on antimicrobial activities verified the predictions obtained by the PASS software. Protected rhamnopyranosides >5 and >6 exhibited slight distortion from regular 1C4 conformation, probably due to the fusion of pyranose and isopropylidene ring. Synthesized rhamnopyranosides >4–>8 were employed as test chemicals for in vitro antimicrobial evaluation against eight human pathogenic bacteria and two fungi. Antimicrobial and SAR study showed that the rhamnopyranosides were prone against fungal organisms as compared to that of the bacterial pathogens. Interestingly, PASS prediction of the rhamnopyranoside derivatives >4–>8 were 0.49 < Pa < 0.60 (where Pa is probability ‘to be active’) as antibacterial and 0.65 < Pa < 0.73 as antifungal activities, which showed significant agreement with experimental data, suggesting rhamnopyranoside derivatives >4–>8 were more active against pathogenic fungi as compared to human pathogenic bacteria thus, there is a more than 50% chance that the rhamnopyranoside derivative structures >4–>8 have not been reported with antimicrobial activity, making it a possible valuable lead compound.
机译:通过常规和微波辅助糖苷化技术获得的苄基α-1-鼠李糖吡喃糖苷> 4 ,经过2,3-O-异亚丙基保护得到化合物> 5 ,该化合物在苯甲酰化后然后将异亚丙基脱保护得到所需的4-O-苯甲酰基鼠李糖吡喃糖苷> 7 。苯甲酸> 7 的二-O-乙酰基衍生物被制备以获得新的鼠李吡喃糖苷。进行了所设计化合物的结构活性关系(SAR)以及物质活性谱(PASS)训练集的预测。基于抗菌活性的实验研究验证了PASS软件获得的预测。受保护的鼠李糖吡喃糖苷> 5 和> 6 与常规的 1 C4构象相比略有变形,这可能是由于吡喃糖和异亚丙基环的融合所致。合成的鼠李糖吡喃糖苷> 4 – > 8 被用作测试化学品,以对八种人类病原菌和两种真菌进行体外抗菌评估。抗菌和SAR研究表明,与细菌病原体相比,鼠李吡喃吡喃糖苷对真菌有机体的抵抗力更高。有趣的是,鼠李糖吡喃糖苷衍生物> 4 – > 8 的PASS预测为0.49 4 – > 8 与人类病原菌相比对病原真菌的活性更高,因此尚没有50%的可能性报道鼠李吡喃侧糖苷衍生物结构> 4 – > 8 具有抗菌活性,使其成为有价值的先导化合物。

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