Pharmaceutical R&D, Small Molecule Process and Product Development, Amgen, Inc., Cambridge, Massachusetts 02142, USA.
J Pharm Sci. 2012 Oct;101(10):4013-7. doi: 10.1002/jps.23257. Epub 2012 Jul 6.
Pharmaceutical hydrates have been used as clinical development candidates and in marketed products. The physical stability of hydrates can pose unique challenges to their development because of their particular sensitivity to the moisture levels in their surroundings. By conducting simple experiments early during the form selection phase of a drug candidate's development, a basic understanding of the thermodynamic and kinetic aspects of a hydrate form's stability can be attained that can facilitate the successful navigation of these challenges. Differential scanning calorimetry was used to determine the thermal and kinetic properties of a number of pharmaceutically relevant hydrates. The activation energy (E(a)) of dehydration and dehydration onset temperature (T(onset)) of survey compounds were compiled and analyzed. A significant number of compounds possessed both high E(a) and high T(onset) of dehydration, suggesting that these hydrate crystal forms were particularly stable. The results of these studies suggest that dehydration E(a) and dehydration T(onset) together can be used as early indicators of a crystalline hydrate's physical stability and can alert to potential challenges in developing hydrate crystal forms of drug candidates.
药用水合物已被用作临床开发候选物和已上市产品。由于水合物对周围环境湿度水平的特殊敏感性,其物理稳定性可能对其开发构成独特的挑战。通过在药物候选物开发的剂型选择阶段早期进行简单的实验,可以获得对水合物形式稳定性的热力学和动力学方面的基本了解,从而有助于成功应对这些挑战。差示扫描量热法用于确定许多与药物相关的水合物的热和动力学特性。编译并分析了脱水的活化能(E(a))和脱水起始温度(T(onset))。相当数量的化合物具有高 E(a)和高 T(onset)的脱水,这表明这些水合物晶体形式特别稳定。这些研究的结果表明,脱水 E(a)和脱水 T(onset)可以一起用作水合物晶体物理稳定性的早期指标,并可能提醒在开发药物候选物的水合晶体形式方面存在潜在挑战。