Suppr超能文献

根据体外药敏试验、药代动力学和抗生素后效应预测抗生素给药间隔:理论考量

Prediction of antibiotic dosing intervals from in vitro susceptibility, pharmacokinetics and post-antibiotic effect: theoretical considerations.

作者信息

Turnidge J D

机构信息

Monash Medical Centre, Melbourne, Australia.

出版信息

Scand J Infect Dis Suppl. 1990;74:137-41.

PMID:2097701
Abstract

Because of the complexity of determining minimum inhibitory concentration (MIC) values on multiple drugs in routine laboratories, susceptibility testing has been designed to generate 2 or 3 broadly-predictive susceptibility categories: susceptible, (intermediate), and resistant. In contrast, recent dosing studies in vivo have shown that for some antibiotics optimum efficacy is best predicted by time above the known MIC and any postantibiotic effect (PAE). It is possible that the optimum dosing interval can be approximated by the sum of the time greater than MIC and the duration of PAE. PAE is known to be related to AUC of drug concentration and time of exposure. Formulae are presented that should make it possible to calculate the optimum dosing interval mathematically by knowing (i) the drug's pharmacological parameters and dose, (ii) the organism's MIC and (iii) the relationship between AUC and PAE for the drug-organism combination. Both (i) and (iii) are predetermined values obtained from studies. For some bacterial species, isolates in the susceptible range have very similar MICs (narrow range) and the MIC is therefore reasonably predictable. However, for other species, the precise MIC needs to be measured to perform the calculations. Examples of the application of these formulae are given.

摘要

由于在常规实验室中确定多种药物的最低抑菌浓度(MIC)值较为复杂,药敏试验已设计为生成2或3个具有广泛预测性的药敏类别:敏感、(中介)和耐药。相比之下,最近的体内给药研究表明,对于某些抗生素,最佳疗效最好通过高于已知MIC的时间和任何抗生素后效应(PAE)来预测。最佳给药间隔有可能通过大于MIC的时间与PAE持续时间之和来近似。已知PAE与药物浓度的AUC和暴露时间有关。文中给出了一些公式,通过了解(i)药物的药理学参数和剂量、(ii)生物体的MIC以及(iii)药物-生物体组合的AUC与PAE之间的关系,应该可以通过数学方法计算出最佳给药间隔。(i)和(iii)都是从研究中获得的预定值。对于某些细菌种类,敏感范围内的分离株具有非常相似的MIC(范围较窄),因此MIC是相当可预测的。然而,对于其他种类,需要测量精确的MIC才能进行计算。文中给出了这些公式应用的示例。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验