Department of Clinical Pharmacology, School of Pharmacy, Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
Department of Clinical Pharmacology, School of Pharmacy, Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
Adv Drug Deliv Rev. 2016 Jun 1;101:99-107. doi: 10.1016/j.addr.2016.04.018. Epub 2016 Apr 26.
Poor aqueous solubility is a major challenge in today's biopharmaceutics. While solubility-enabling formulations can significantly increase the apparent solubility of the drug, the concomitant effect on the drug's apparent permeability has been largely overlooked. The mathematical equation to describe the membrane permeability of a drug comprises the membrane/aqueous partition coefficient, which in turn is dependent on the drug's apparent solubility in the GI milieu, suggesting that the solubility and the permeability are closely related, exhibit a certain interplay between them, and treating the one irrespectively of the other may be insufficient. In this article, an overview of this solubility-permeability interplay is provided, and the available data is analyzed in the context of the effort to maximize the overall drug exposure. Overall, depending on the type of solubility-permeability interplay, the permeability may decrease, remain unchanged, and even increase, in a way that may critically affect the formulation capability to improve the overall absorption. Therefore, an intelligent design of solubility-enabling formulation needs to consider both the solubility afforded by the formulation and the permeability in the new luminal environment resulting from the formulation.
水溶性差是当今生物药剂学面临的主要挑战。虽然增溶制剂可以显著提高药物的表观溶解度,但对药物表观渗透性的伴随影响在很大程度上被忽视了。描述药物膜透过性的数学方程包括膜/水分配系数,而分配系数又取决于药物在胃肠道环境中的表观溶解度,这表明溶解度和渗透性密切相关,它们之间存在一定的相互作用,如果只关注其中一个而忽略另一个可能是不够的。本文概述了这种溶解度-渗透性相互作用,并根据最大限度提高药物总体暴露量的努力对现有数据进行了分析。总的来说,根据溶解度-渗透性相互作用的类型,药物的渗透性可能会降低、保持不变甚至增加,这可能会对制剂改善整体吸收的能力产生重大影响。因此,增溶制剂的智能设计需要考虑制剂提供的溶解度和制剂在新的腔道环境中产生的渗透性。