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硫代头孢菌素的水解和氨解动力学及机理

Kinetics and mechanisms of hydrolysis and aminolysis of thioxocephalosporins.

作者信息

Tsang Wing Y, Dhanda Anupma, Schofield Christopher J, Page Michael I

机构信息

Department of Chemical and Biological Sciences, University of Huddersfield, Queensgate, UK.

出版信息

J Org Chem. 2004 Jan 23;69(2):339-44. doi: 10.1021/jo035471t.

Abstract

The effect of replacing the beta-lactam carbonyl oxygen in cephalosporins by sulfur on their reactivity has been investigated. The second-order rate constant for alkaline hydrolysis of the sulfur analogue is 2-fold less than that for the natural cephalosporin. The thioxo derivative of cephalexin, with an amino group in the C7 side chain, undergoes beta-lactam ring opening with intramolecular aminolysis by a reaction similar to that for cephalexin itself. However, the rate of intramolecular aminolysis for the S-analogue is 3 orders of magnitude greater than that for cephalexin. Furthermore, unlike cephalexin, intramolecular aminolysis in the S-analogue occurs up to pH 14 with no competitive hydrolysis. The rate of intermolecular aminolysis of natural cephalosporins is dominated by a second-order dependence on amine concentration, whereas that for thioxocephalosporins shows only a first-order term in amine. The Bronsted beta(nuc) for the aminolysis of thioxo-cephalosporin is +0.39, indicative of rate-limiting formation of the tetrahedral intermediate with an early transition state with relatively little C-N bond formation.

摘要

研究了头孢菌素中β-内酰胺羰基氧被硫取代对其反应活性的影响。硫类似物碱性水解的二级速率常数比天然头孢菌素的低2倍。头孢氨苄的硫代衍生物在C7侧链上有一个氨基,通过与头孢氨苄本身类似的反应,通过分子内氨解发生β-内酰胺环开环。然而,S-类似物的分子内氨解速率比头孢氨苄大3个数量级。此外,与头孢氨苄不同,S-类似物在pH值高达14时发生分子内氨解,没有竞争性水解。天然头孢菌素的分子间氨解速率主要由对胺浓度的二级依赖性决定,而硫代头孢菌素的分子间氨解速率在胺中仅显示一级项。硫代头孢菌素氨解的布朗斯特β(nuc)为+0.39,表明四面体中间体的形成是限速步骤,过渡态较早,C-N键形成相对较少。

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