Department of Pharmacy and Pharmacology, University of Bath, Bath, UK.
UCB Pharma S.A., Product Development, B-1420 Braine l'Alleud, Belgium.
J Pharm Sci. 2021 Dec;110(12):3874-3888. doi: 10.1016/j.xphs.2021.09.013. Epub 2021 Sep 13.
Azithromycin is an antibiotic listed in the essential list of medicines for adults and pediatrics. Conflicting evidence has been found regarding azithromycin classification according to the Biopharmaceutics classification system (BCS). The purpose of this study was to identify the critical variables that influence the oral absorption of azithromycin in adults and pediatrics. Azithromycin solubility and dissolution studies (oral suspension) were performed in buffers and biorelevant media simulating the fasted and fed gastrointestinal tract. A PBPK model was developed for azithromycin for healthy adult volunteers and pediatrics (Simcyp® v18.2) informed by in vitro solubility and dissolution studies to predict drug performance after administration of azithromycin as an oral suspension. The developed PBPK model predicted azithromycin plasma concentrations-time profiles after administration of an oral suspension to adults and pediatrics. Sensitivity analysis of solubility vs dose suggests that absorption is independent of solubility within the therapeutic dose range in both adults and pediatrics. The developed PBPK model for adults and pediatrics was consistent with the mechanism of permeation through the intestinal membrane (passive and active processes) being the rate-limiting step of azithromycin's absorption. The physiologically based approach proposed was shown to be useful to determine the factors controlling drug absorption in adults and pediatrics.
阿奇霉素是成人和儿科基本药物清单中的一种抗生素。根据生物药剂学分类系统(BCS),阿奇霉素的分类存在相互矛盾的证据。本研究旨在确定影响成人和儿科阿奇霉素口服吸收的关键变量。在模拟空腹和进食胃肠道的缓冲液和生物相关介质中进行了阿奇霉素的溶解度和溶解研究(口服混悬液)。根据体外溶解度和溶解研究,为健康成年志愿者和儿科患者(Simcyp® v18.2)开发了一种用于阿奇霉素的 PBPK 模型,以预测口服混悬液给药后的药物性能。开发的 PBPK 模型预测了成人和儿科患者口服混悬液给药后的阿奇霉素血浆浓度-时间曲线。溶解度与剂量的敏感性分析表明,在成人和儿科患者的治疗剂量范围内,吸收与溶解度无关。为成人和儿科患者开发的 PBPK 模型与肠膜渗透的机制(被动和主动过程)一致,该机制是阿奇霉素吸收的限速步骤。所提出的基于生理学的方法被证明有助于确定控制成人和儿科患者药物吸收的因素。