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抗生素后效应

The post-antibiotic effect.

作者信息

MacKenzie F M, Gould I M

机构信息

Department of Clinical Microbiology, Aberdeen Royal Infirmary, Foresterhill, UK.

出版信息

J Antimicrob Chemother. 1993 Oct;32(4):519-37. doi: 10.1093/jac/32.4.519.

Abstract

Pharmacodynamics are being applied increasingly to the design of antibiotic dosing regimens. One characteristic of pharmacodynamics is the post-antibiotic effect (PAE), the delayed regrowth of bacteria following exposure to an antibiotic. In this review the various laboratory techniques which have been used to determine the PAE are critically evaluated and compared with the standard viable counting method. The potential sources of error associated with these methods are considered and recommendations are made for the optimum testing system; on the basis of current evidence the bioluminescence and impedence techniques appear to be the most suitable in terms of being the least labour-intensive and producing the most reliable results. Whichever technique is used, the properties of the growth medium, including osmolality and pH, the size of the bacterial inoculum, the initial antibiotic concentration, the exposure time to the antibiotic and the method of antibiotic removal should be standardized. Other post-(antibiotic) exposure events and their relationships with the PAE and theories concerning the mechanism (or mechanisms) by which antibiotics produce PAEs are discussed. Finally, consideration is given to the clinical significance of the PAE and how it, in conjunction with other pharmacodynamic parameters, might be used to allow antibiotic dosing regimens to be developed on a more scientific basis.

摘要

药效学正越来越多地应用于抗生素给药方案的设计。药效学的一个特点是抗生素后效应(PAE),即细菌在接触抗生素后生长的延迟。在这篇综述中,对用于测定PAE的各种实验室技术进行了批判性评估,并与标准活菌计数法进行了比较。考虑了与这些方法相关的潜在误差来源,并针对最佳测试系统提出了建议;根据目前的证据,生物发光和阻抗技术似乎是最适合的,因为它们劳动强度最小且产生的结果最可靠。无论使用哪种技术,生长培养基的特性,包括渗透压和pH值、细菌接种物的大小、初始抗生素浓度、接触抗生素的时间以及去除抗生素的方法都应标准化。还讨论了其他(抗生素)暴露后事件及其与PAE的关系,以及关于抗生素产生PAE的机制的理论。最后,考虑了PAE的临床意义,以及它如何与其他药效学参数一起用于使抗生素给药方案在更科学的基础上制定。

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