Sawai Pharmaceutical Co., Ltd., 5-2-30, Miyahara, Yodogawa-ku, Osaka 532-0003, Japan.
Sawai Pharmaceutical Co., Ltd., 5-2-30, Miyahara, Yodogawa-ku, Osaka 532-0003, Japan.
J Pharm Sci. 2021 Jan;110(1):467-477. doi: 10.1016/j.xphs.2020.05.013. Epub 2020 May 26.
Sugar alcohols reduce oral drug bioavailability by osmotic effects, but the magnitude of these effects differs among different drugs. This study aimed to identify the drug-related critical attributes of osmotic effects and estimate the impact of a "practical" sugar alcohol dose on the pharmacokinetics of various molecules using modeling and simulation approaches. We developed a physiologically based biopharmaceutics model that considers the dose-dependent effects of sugar alcohols on the gastrointestinal physiology. The developed model captured the effects of sugar alcohols on ranitidine hydrochloride, metoprolol tartrate, theophylline, cimetidine, and lamivudine. Sensitivity analysis provided quantitative insights into the effects of sugar alcohols dependent on different drug permeability. In addition, our developed model indicated for the first time that a high systemic elimination rate is crucial for the reduction in maximum plasma concentration even for highly permeable drugs. Nonetheless, mannitol/sorbitol level of less than 400 mg had minor effects on the pharmacokinetics of the most sensitive drugs, indicating a provisional no-effect threshold dose. This mechanistic approach provides comprehensive estimation of osmotic effects on variety of drugs. Subsequently, these findings may invoke scientific discussion on the criteria for excipient changes in the context of biowaiver guidelines (e.g. biopharmaceutics classification system-based biowaiver).
糖醇通过渗透作用降低口服药物的生物利用度,但这些作用的大小因药物而异。本研究旨在确定渗透作用的药物相关关键属性,并使用建模和模拟方法估计“实际”糖醇剂量对各种分子药代动力学的影响。我们开发了一种基于生理学的生物药剂学模型,该模型考虑了糖醇对胃肠道生理学的剂量依赖性影响。所开发的模型能够捕捉到糖醇对盐酸雷尼替丁、酒石酸美托洛尔、茶碱、西咪替丁和拉米夫定的影响。敏感性分析提供了定量的见解,了解了不同药物渗透性的糖醇依赖性影响。此外,我们开发的模型首次表明,即使对于高渗透性药物,高全身消除率对于降低最大血浆浓度也至关重要。然而,甘露醇/山梨糖醇水平低于 400mg 对大多数敏感药物的药代动力学几乎没有影响,表明存在暂定的无影响阈值剂量。这种基于机制的方法提供了对各种药物渗透作用的全面估计。随后,这些发现可能会引发关于生物豁免指南背景下赋形剂变化标准的科学讨论(例如基于生物药剂分类系统的生物豁免)。