Tang Xiaolin, Pikal Michael J
School of Pharmacy, University of Connecticut, Storrs, Connecticut 06269-2092, USA.
Pharm Res. 2004 Feb;21(2):191-200. doi: 10.1023/b:pham.0000016234.73023.75.
Design of freeze-drying processes is often approached with a "trial and error" experimental plan or, worse yet, the protocol used in the first laboratory run is adopted without further attempts at optimization. Consequently, commercial freeze-drying processes are often neither robust nor efficient. It is our thesis that design of an "optimized" freeze-drying process is not particularly difficult for most products, as long as some simple rules based on well-accepted scientific principles are followed. It is the purpose of this review to discuss the scientific foundations of the freeze-drying process design and then to consolidate these principles into a set of guidelines for rational process design and optimization. General advice is given concerning common stability issues with proteins, but unusual and difficult stability issues are beyond the scope of this review. Control of ice nucleation and crystallization during the freezing step is discussed, and the impact of freezing on the rest of the process and final product quality is reviewed. Representative freezing protocols are presented. The significance of the collapse temperature and the thermal transition, denoted Tg', are discussed, and procedures for the selection of the "target product temperature" for primary drying are presented. Furthermore, guidelines are given for selection of the optimal shelf temperature and chamber pressure settings required to achieve the target product temperature without thermal and/or mass transfer overload of the freeze dryer. Finally, guidelines and "rules" for optimization of secondary drying and representative secondary drying protocols are presented.
冷冻干燥工艺的设计通常采用“试错”实验方案,或者更糟糕的是,直接采用首次实验室运行时使用的方案,而不再进一步尝试优化。因此,商业冷冻干燥工艺往往既不稳定也不高效。我们的观点是,对于大多数产品而言,只要遵循一些基于公认科学原理的简单规则,设计“优化”的冷冻干燥工艺并非特别困难。本综述的目的是讨论冷冻干燥工艺设计的科学基础,然后将这些原理整合为一套合理的工艺设计和优化指南。针对蛋白质常见的稳定性问题给出了一般性建议,但不寻常和困难的稳定性问题不在本综述范围内。讨论了冷冻步骤中冰核形成和结晶的控制,并综述了冷冻对工艺其余部分和最终产品质量的影响。给出了代表性的冷冻方案。讨论了塌陷温度和热转变温度(Tg')的重要性,并介绍了一次干燥“目标产品温度”的选择程序。此外,还给出了选择最佳搁板温度和腔室压力设置的指南,以在不使冷冻干燥机出现热传递和/或质量传递过载的情况下达到目标产品温度。最后,给出了二次干燥优化的指南和“规则”以及代表性的二次干燥方案。