Zhang Geoff G Z, Law Devalina, Schmitt Eric A, Qiu Yihong
Pharmaceutics and New Technology Center, R4P3/AP9, Global Pharmaceutical R&D, Abbott Laboratories, 100 Abbott Park Road, Abbott Park, IL 60064-6120, USA.
Adv Drug Deliv Rev. 2004 Feb 23;56(3):371-90. doi: 10.1016/j.addr.2003.10.009.
The quality and performance of a solid oral dosage form depends on the choice of the solid phase, the formulation design, and the manufacturing process. The potential for process-induced solid phase transformations must be evaluated during design and development of formulations and manufacturing processes. This article briefly reviews the basic principles of polymorphism, defines the classes of phase transformation and the underlying transformation mechanisms, and discusses respective kinetic factors. The potential phase transformations associated with common unit operations employed in manufacturing solid oral dosage forms are highlighted. Specific examples are given to illustrate the importance of solid phases, and process-induced phase transitions in formulation and process development.
固体口服剂型的质量和性能取决于固相的选择、制剂设计以及制造工艺。在制剂和制造工艺的设计与开发过程中,必须评估工艺诱导的固相转变的可能性。本文简要回顾了多晶型的基本原理,定义了相变的类别及其潜在的转变机制,并讨论了各自的动力学因素。文中重点介绍了与固体口服剂型制造中常用单元操作相关的潜在相变。通过具体实例来说明固相以及制剂和工艺开发中工艺诱导的相变的重要性。