a Formulation Sciences , Merck & Co., Inc. , Rahway , NJ , USA.
b Merck Animal Health , Merck & Co., Inc. , Rahway , NJ , USA.
Drug Dev Ind Pharm. 2018 Sep;44(9):1551-1556. doi: 10.1080/03639045.2018.1483395. Epub 2018 Jun 22.
Lipid-based drug delivery systems have been intensively investigated as a means of delivering poorly water-soluble drugs. Upon ingestion, the lipases in the gastrointestinal tract digest lipid ingredients, mainly triglycerides, within the formulation into monoglycerides and fatty acids. While numerous studies have addressed the solubility of drugs in triglycerides, comparatively few publications have addressed the solubility of drugs in fatty acids, which are the end product of digestion and responsible for the solubility of drug within mixed micelles. The objective of this investigation was to explore the solubility of a poorly water-soluble drug in fatty acids and raise the awareness of the importance of drug solubility in fatty acids. The model API (active pharmaceutical ingredient), a weak acid, is considered a BCS II compound with an aqueous solubility of 0.02 μg/mL and predicted partition coefficient >7. The solubility of API ranged from 120 mg/mL to over 1 g/mL in fatty acids with chain lengths across the range C18 to C6. Hydrogen bonding was found to be the main driver of the solubilization of API in fatty acids. The solubility of API was significantly reduced by water uptake in caprylic acid but not in oleic acid. This report demonstrates that solubility data generated in fatty acids can provide an indication of the solubility of the drug after lipid digestion. This report also highlights the importance of measuring the solubility of drugs in fatty acids in the course of lipid formulation development.
脂质体药物递送系统已被广泛研究,作为一种传递难溶性药物的手段。在摄入后,胃肠道中的脂肪酶会将制剂中的脂质成分,主要是甘油三酯,消化成单甘油酯和脂肪酸。虽然有许多研究都涉及到药物在甘油三酯中的溶解度,但相对较少的出版物涉及到药物在脂肪酸中的溶解度,而脂肪酸是消化的最终产物,是混合胶束中药物溶解度的决定因素。本研究旨在探讨一种难溶性药物在脂肪酸中的溶解度,并提高人们对药物在脂肪酸中溶解度的重要性的认识。模型 API(活性药物成分)是一种弱酸,被认为是 BCS II 类化合物,其水溶解度为 0.02μg/mL,预测分配系数>7。API 在 C18 到 C6 范围内的脂肪酸中的溶解度范围为 120mg/mL 至超过 1g/mL。氢键被发现是 API 在脂肪酸中溶解的主要驱动力。API 在辛酸中的溶解度由于水的吸收而显著降低,但在油酸中则没有。本报告表明,在脂肪酸中生成的溶解度数据可以提示药物在脂质消化后的溶解度。本报告还强调了在脂质制剂开发过程中测量药物在脂肪酸中溶解度的重要性。