Eli Lilly and Company, Lilly Corporate Center, Indianapolis, Indiana 46285, USA.
J Pharm Sci. 2011 May;100(5):1607-17. doi: 10.1002/jps.22405. Epub 2010 Dec 22.
When selecting the physical form of an active pharmaceutical substance, there is often a question of when a molecule's pKa renders it too low for salt formation and formulation into a product that will be sufficiently physically stable to provide adequate shelf life. In the paper, a graph is provided that tabulates pKa values of active pharmaceuticals versus the salt or free base form that was chosen to be developed as an orally administered drug product. Tabulation of the data provides insight into where, if any, practical cutoff exists, under which salt formation should not be considered. Specific examples of disproportionation reactions are reviewed and are described in light of the concepts of pH maximum, pH microenvironment, and Gibbs free energy to gain further insight into when such reactions become favorable. The driving force for disproportionation reactions is substantially greater than that for polymorphic form conversion, and as a consequence, its probability of occurring in the solid-state is much greater when formulated in favorable microenvironments. Factors that influence the reaction rate are examined. It is concluded that each salt should be evaluated on the merit of its physical properties and often the most soluble salt will not be one's best choice. Unfortunately, compounds that stand to benefit the most from salt formation due to their exceptionally low intrinsic solubility are the ones that will be most likely to disproportionate if their pKa is relatively low.
在选择活性药物物质的物理形式时,通常会出现一个问题,即分子的 pKa 值过低,无法形成盐并制成足够物理稳定的产品,以提供足够的保质期。本文提供了一个图表,列出了活性药物的 pKa 值与选择开发为口服药物产品的盐或游离碱形式的 pKa 值。该数据的表格形式提供了一些见解,即如果存在任何实际的截止值,则不应考虑形成盐。还审查了歧化反应的具体示例,并根据 pH 最大值、pH 微环境和吉布斯自由能的概念进行了描述,以进一步了解何时这些反应变得有利。歧化反应的驱动力远远大于多晶型转化的驱动力,因此,在有利的微环境中配制时,其在固态中发生的可能性要大得多。还研究了影响反应速率的因素。结论是,应根据每种盐的物理性质来评估其价值,而且通常最易溶解的盐不一定是最佳选择。不幸的是,由于其内在溶解度异常低而最有可能从形成盐中受益的化合物,如果其 pKa 值相对较低,则最有可能发生歧化。