Institute of Drug Metabolism and Pharmaceutical Analysis, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, Zhejiang 310058, China; Taizhou Institute of Zhejiang University, Taizhou, Zhejiang 317000, China; School of Pharmaceutical Sciences, Xiamen University, 4221 Xiang'an South Road, Xiamen, Fujian 361102, China.
Institute of Drug Metabolism and Pharmaceutical Analysis, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, Zhejiang 310058, China; Datta Meghe College of Pharmacy, Datta Meghe Institute of Higher Education & Research (Deemed to University), Sawangi, Wardha, India.
Int J Pharm. 2024 Sep 5;662:124472. doi: 10.1016/j.ijpharm.2024.124472. Epub 2024 Jul 14.
Adequate stabilization is essential for marketed protein-based biopharmaceutical formulations to withstand the various stresses that can be exerted during the pre- and post-manufacturing processes. Therefore, a suitable choice of excipient is a significant step in the manufacturing of such delicate products. Histidine, an essential amino acid, has been extensively used in protein-based biopharmaceutical formulations. The physicochemical properties of histidine are unique among amino acids and could afford multifaceted benefits to protein-based biopharmaceutical formulations. With a pKa of approximately 6.0 at the side chain, histidine has been primarily used as a buffering agent, especially for pH 5.5-6.5. Additionally, histidine exhibited several affirmative properties similar to those of carbohydrates (e.g., sucrose and trehalose) and could therefore be considered to be an alternative approach to established protein-based formulation strategies. The current review describes the general physicochemical properties of histidine, lists all commercial histidine-containing protein-based biopharmaceutical products, and discusses a brief outline of the existing research focused on the versatile applications of histidine, which can act as a buffering agent, stabilizer, cryo-/lyo-protectant, antioxidant, viscosity reducer, and solubilizing agent. The interaction between histidine and proteins in protein-based biopharmaceutical formulations, such as the Donnan effect during diafiltration of monoclonal antibody solutions and the degradation of polysorbates in histidine buffer, has also been discussed. As the first review of histidine in protein biopharmaceuticals, it helps to deepen our understanding of the opportunities and challenges associated with histidine as an excipient for protein-based biopharmaceutical formulations.
充分的稳定性对于市售的蛋白质生物制药制剂至关重要,以承受在生产前和生产过程中可能施加的各种压力。因此,选择合适的赋形剂是制造这些精细产品的重要步骤。组氨酸是一种必需氨基酸,已广泛用于蛋白质生物制药制剂中。组氨酸的物理化学性质在氨基酸中是独特的,可以为蛋白质生物制药制剂提供多方面的益处。由于其侧链的 pKa 值约为 6.0,组氨酸主要用作缓冲剂,特别是用于 pH 值为 5.5-6.5。此外,组氨酸表现出与碳水化合物(如蔗糖和海藻糖)相似的一些积极性质,因此可以被认为是替代既定蛋白质制剂策略的一种方法。本综述描述了组氨酸的一般物理化学性质,列出了所有含有组氨酸的商业蛋白质生物制药产品,并讨论了现有研究的简要概述,这些研究集中于组氨酸的多功能应用,它可以作为缓冲剂、稳定剂、冷冻/干燥保护剂、抗氧化剂、粘度降低剂和增溶剂。组氨酸与蛋白质生物制药制剂中蛋白质之间的相互作用,如单克隆抗体溶液在渗滤过程中的 Donnan 效应和组氨酸缓冲液中聚山梨醇酯的降解,也已被讨论。作为蛋白质生物制药中组氨酸的第一篇综述,它有助于加深我们对组氨酸作为蛋白质生物制药制剂赋形剂的机会和挑战的理解。