Division of Pharmaceutics, Friedrich-Alexander University (FAU) Erlangen-Nürnberg, 91058 Erlangen, Germany.
J Pharm Sci. 2018 Apr;107(4):960-967. doi: 10.1016/j.xphs.2017.11.015. Epub 2017 Nov 26.
Successful development of marketable freeze-dried protein formulations requires adequate stabilization of the active biopharmaceutical ingredient. The choice of a stabilizer must therefore be based on sound knowledge of the physical and chemical properties of the excipients and specific needs of the protein component. Amino acids, such as arginine, have exhibit cryo- and lyoprotective effects similar to those of sugars and polymers and may therefore be considered to be an alternative approach to these established formulation strategies. The chemical structure and physicochemical characteristics of arginine are unique among amino acids and can provide additional benefits to freeze-dried protein formulations with regard to liquid and solid-state stability. This mini review provides a brief summary of research focused on the application of arginine in freeze-dried protein pharmaceuticals, including a discussion of its basic physical and chemical attributes as well as thermal behavior in the frozen and solid states. Mechanisms contributing to solid-state stabilization by arginine are discussed in the context of available stability studies on arginine-containing protein formulations. This mini review seeks to deepen the understanding of the opportunities and challenges associated with arginine-based preparations for freeze-dried protein pharmaceuticals.
成功开发可销售的冻干蛋白质配方需要充分稳定活性生物制药成分。因此,稳定剂的选择必须基于对赋形剂的物理和化学性质以及蛋白质成分的具体需求的充分了解。氨基酸,如精氨酸,具有类似于糖和聚合物的抗冷冻和抗冻干保护作用,因此可以被认为是这些已确立的配方策略的替代方法。精氨酸的化学结构和物理化学特性在氨基酸中是独特的,并且可以为冻干蛋白质配方在液体和固体状态稳定性方面提供额外的益处。这篇迷你综述简要总结了精氨酸在冻干蛋白质药物中的应用研究,包括对其基本物理和化学特性以及冷冻和固体状态下的热行为的讨论。根据含有精氨酸的蛋白质配方的现有稳定性研究,讨论了精氨酸对固体稳定性的贡献机制。这篇迷你综述旨在加深对基于精氨酸的冻干蛋白质药物制剂的机会和挑战的理解。