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药物代谢动力学在抗菌药物研发和评价中的监管作用及其在中国的最新进展。

Regulatory utility of pharmacometrics in the development and evaluation of antimicrobial agents and its recent progress in China.

机构信息

Office of Clinical Evaluation II, Center for Drug Evaluation, National Medical Products Administration, Beijing, China.

Phase I Unit, Huashan Hospital Affiliated to Fudan University, Shanghai, China.

出版信息

CPT Pharmacometrics Syst Pharmacol. 2021 Dec;10(12):1466-1478. doi: 10.1002/psp4.12716. Epub 2021 Oct 15.

Abstract

Pharmacometrics is an emerging science that interprets drug, disease, and trial information in a mathematical fashion to inform and facilitate efficient drug development and/or regulatory decisions. Pharmacometrics study is increasingly adopted in the regulatory review of new antimicrobial agents. We summarized the 31 antimicrobial agents approved by the US Food and Drug Administration (FDA) and the 26 antimicrobial agents approved by European Medicines Agency (EMA) from January 2001 to May 2019. We also reviewed recent examples of utilizing pharmacometrics to support antimicrobial agent's registration in China, including modeling and simulation methods, effects of internal/external factors on pharmacokinetic (PK) parameters, safety and efficacy evaluation in terms of exposure-response analysis, refinement of the wording of product labeling and package leaflet, and possible postmarketing clinical trial. Ongoing communication among regulator, academia, and industry regarding pharmacometrics is encouraged to streamline and facilitate the development of new antimicrobial agents. The industry can maximize its benefit in drug development through continued pharmacometrics education/training.

摘要

药物代谢动力学是一门新兴的科学,它以数学的方式解释药物、疾病和试验信息,为药物开发和/或监管决策提供信息和便利。药物代谢动力学研究越来越多地被用于新抗菌药物的监管审查。我们总结了从 2001 年 1 月至 2019 年 5 月期间,美国食品和药物管理局(FDA)批准的 31 种抗菌药物和欧洲药品管理局(EMA)批准的 26 种抗菌药物。我们还回顾了最近利用药物代谢动力学支持抗菌药物在中国注册的实例,包括建模和模拟方法、内部/外部因素对药代动力学(PK)参数的影响、基于暴露-反应分析的安全性和疗效评估、产品标签和说明书措辞的细化,以及可能的上市后临床试验。鼓励监管机构、学术界和行业之间就药物代谢动力学进行持续沟通,以简化和促进新抗菌药物的开发。制药行业可以通过持续的药物代谢动力学教育/培训来最大限度地提高药物开发的效益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23be/8674004/045e124880cb/PSP4-10-1466-g002.jpg

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