设计,分子对接,合成与头孢氨苄连接的芳香氨基酸。

Yasir F. Muhsin, Shakir M. Alwan, Ayad Kareem Khan
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引用次数: 6

摘要

细菌引起的感染对公众健康有重大影响。通过酰基侧链上的酰胺键,实现了头孢氨苄与氨基酸(色氨酸或组氨酸)连接的新衍生物的化学合成。这是一种新的方法,将色氨酸和组氨酸结合到头孢氨苄的初级氨基中,以提供一个非常接近β-内酰胺环的庞大基团。这种化学加成物作为烷氧亚胺的等构基团,保护内酰胺环免受细菌内酰胺酶的侵害。新的衍生物可能对β-内酰胺酶产生抗性,提高活性和药代动力学性质,并可能使易被大多数β-内酰胺酶水解的旧药物获得新的生命。通过FTIR、1H-NMR、微量元素分析和一些物理性质证实了这些衍生物的化学结构。分别使用GOLD suite和Swiss ADME软件记录丝氨酸β内酰胺酶的分子对接和ADME参数的预测。头孢氨苄新衍生物与β-内酰胺酶的对接分数高于头孢氨苄,可能具有更好的活性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, Molecular Docking, Synthesis of Aromatic Amino Acids Linked to Cephalexin.
Infections caused by bacteria have a significant impact on public health. Chemical synthesis of new derivatives of cephalexin inked to amino acid (tryptophan or histidine) through an amide bond at the acyl side chain is achieved. This is a new approach of incorporating, tryptophan and histidine into the the primary amino group of cephalexin, in order to provide a bulky group very close to the β-lactam ring. This chemical addition act as isosteric group to the alkoximino that protect beta lactam ring from bacterial beta lactamase enzyme. The new derivatives may show resistance to β-lactamases, improve activity and pharmacokinetic properties and may give new life for old drugs that are susceptible to hydrolysis by most β-lactamases. The chemical structures of these derivatives were confirmed by: FTIR, 1H-NMR spectroscopy, elemental micro analysis and some physical properties. Molecular docking on serine beta lactamase and prediction of ADME parameters were recorded using GOLD suite and Swiss ADME software respectively. Docking scores of the new derivatives of Cephalexin on β-lactamases were higher than those of Cephalexin, which may indicate better activity
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