Cañellas Fidel Méndez, Verma Vivek, Kujawski Jacek, Geertman Robert, Tajber Lidia, Padrela Luis
Department of Chemical Sciences, Bernal Institute, University of Limerick, LimerickV94 T9PX, Ireland.
SSPC, the SFI Research Centre for Pharmaceuticals, Bernal Institute, University of Limerick, LimerickV94 T9PX, Ireland.
ACS Omega. 2022 Nov 18;7(48):43945-43957. doi: 10.1021/acsomega.2c05259. eCollection 2022 Dec 6.
The polymorphic control of active pharmaceutical ingredients (APIs) is a major challenge in the manufacture of medicines. Crystallization methods that use supercritical carbon dioxide as an antisolvent can create unique solid forms of APIs, with a particular tendency to generate metastable polymorphic forms. In this work, the effects of processing conditions within a gas antisolvent (GAS) crystallization method, such as pressure, stirring rate, and temperature, as well as the type of solvent used and the presence of an additive, on the polymorphism of indomethacin were studied. Consistent formation of the X-ray powder diffraction-pure α polymorphic form of indomethacin by GAS was only achieved when a polymer, poloxamer 407, was used as an additive. Using the GAS method in combination with poloxamer 407 as a molecular additive enabled full control over the polymorphic form of indomethacin, regardless of the processing conditions employed, such as pressure, temperature, stirring rate, and type of solvent. A detailed molecular modeling study provided insight into the role of poloxamer 407 in the polymorphic outcome of indomethacin and concluded that it favored the formation of the α polymorph.
活性药物成分(API)的多晶型控制是药品生产中的一项重大挑战。使用超临界二氧化碳作为抗溶剂的结晶方法能够创造出独特的API固体形态,尤其倾向于生成亚稳多晶型物。在这项工作中,研究了气体抗溶剂(GAS)结晶方法中的加工条件,如压力、搅拌速率和温度,以及所用溶剂的类型和添加剂的存在对吲哚美辛多晶型的影响。只有当使用聚合物泊洛沙姆407作为添加剂时,GAS才能始终如一地形成X射线粉末衍射纯的吲哚美辛α多晶型物。将GAS方法与泊洛沙姆407作为分子添加剂结合使用,无论采用何种加工条件,如压力、温度、搅拌速率和溶剂类型,都能完全控制吲哚美辛的多晶型。一项详细的分子建模研究深入了解了泊洛沙姆407在吲哚美辛多晶型结果中的作用,并得出结论,它有利于α多晶型的形成。