Wilkins Justin J, Svensson Elin M, Ernest Jacqueline P, Savic Radojka M, Simonsson Ulrika S H, McIlleron Helen
Occams Coöperatie, Amstelveen, The Netherlands.
Department of Pharmacy, Radboud University Medical Centre, Nijmegen, The Netherlands; Department of Pharmacy, Uppsala University, Uppsala, Sweden.
Int J Antimicrob Agents. 2022 Sep;60(3):106620. doi: 10.1016/j.ijantimicag.2022.106620. Epub 2022 Jun 17.
Tuberculosis (TB) remains one of the leading causes of death by a communicable agent, infecting up to one-quarter of the world's population, predominantly in disadvantaged communities. Pharmacometrics employ quantitative mathematical models to describe the relationships between pharmacokinetics and pharmacodynamics, and to predict drug doses, exposures and responses. Pharmacometric approaches have provided a scientific basis for improved dosing of anti-TB drugs and concomitantly administered antiretrovirals at the population level. The development of modelling frameworks including physiologically based pharmacokinetics, quantitative systems pharmacology and machine learning provides an opportunity to extend the role of pharmacometrics to in-silico quantification of drug-drug interactions, prediction of doses for special populations, dose optimization and individualization, and understanding the complex exposure-response relationships of multi-drug regimens in terms of both efficacy and safety, informing regimen design for future study. This short, clinically focused review explores what has been done, and what opportunities exist for pharmacometrics to impact TB pharmacotherapy.
结核病(TB)仍然是由传染性病原体导致的主要死因之一,全球多达四分之一的人口受到感染,主要集中在弱势群体中。药物计量学运用定量数学模型来描述药代动力学和药效学之间的关系,并预测药物剂量、暴露量和反应。药物计量学方法为在人群层面改善抗结核药物及同时使用的抗逆转录病毒药物的给药剂量提供了科学依据。包括基于生理学的药代动力学、定量系统药理学和机器学习在内的建模框架的发展,为将药物计量学的作用扩展到药物相互作用的计算机模拟定量、特殊人群剂量预测、剂量优化与个体化,以及从疗效和安全性两方面理解多药治疗方案复杂的暴露-反应关系从而为未来研究的治疗方案设计提供信息创造了机会。这篇简短的、以临床为重点的综述探讨了已取得的成果,以及药物计量学在影响结核病药物治疗方面存在哪些机会。