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水合物与固态反应性:β-内酰胺类抗生素综述

Hydrates and solid-state reactivity: a survey of beta-lactam antibiotics.

作者信息

Hickey Magali B, Peterson Matthew L, Manas Eric S, Alvarez Juan, Haeffner Fredrik, Almarsson Orn

机构信息

TransForm Pharmaceuticals, Inc., 29 Hartwell Avenue, Lexington, Massachusetts 02421, USA.

出版信息

J Pharm Sci. 2007 May;96(5):1090-9. doi: 10.1002/jps.20919.

Abstract

Crystalline hydrates of hydrolytically susceptible pharmaceuticals are commonly encountered, and are particularly prevalent in the beta-lactam class of antibiotics. In order to rationalize how the apparent chemical incompatibility between water and beta-lactams is reduced through crystallization, a review of the published literature and available structural information on the solid state stability was undertaken. A search in the CSD yielded a total of 32 crystal structures of water-containing beta-lactams which were examined and classified in terms of hydrogen-bonded networks. In most cases the waters of hydration in the single crystal structures were found to fulfill structural roles and were not sufficiently close in proximity to react with the beta-lactam ring. Published data for the solid-state of several hydrates were also considered. In general, the stability data indicate high thermal stability for the crystalline hydrates. Moreover, even when water molecules are in appropriate proximity and orientation with respect to the beta-lactam moiety for a reaction to occur, the crystalline solids remain stable. The use of the crystal structure information along with computational modeling suggests that a combination of proximal relationships, steric and mechanistic arguments can explain the observed solid-state stability of crystalline beta-lactam hydrates.

摘要

易水解药物的结晶水合物很常见,在β-内酰胺类抗生素中尤为普遍。为了阐明水与β-内酰胺之间明显的化学不相容性是如何通过结晶得以降低的,我们对已发表的文献以及关于固态稳定性的现有结构信息进行了综述。在剑桥晶体结构数据库(CSD)中进行搜索,共得到32个含β-内酰胺的晶体结构,这些结构根据氢键网络进行了检查和分类。在大多数情况下,单晶结构中的结晶水起到结构作用,并且与β-内酰胺环的距离不够近,无法发生反应。还考虑了几种水合物固态的已发表数据。一般来说,稳定性数据表明结晶水合物具有高热稳定性。此外,即使水分子相对于β-内酰胺部分处于适当的距离和取向以发生反应,结晶固体仍然稳定。结合晶体结构信息和计算模型表明,近端关系、空间和机理方面的综合因素可以解释观察到的结晶β-内酰胺水合物的固态稳定性。

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