Nayak Purnendu K, Goode Meghan, Chang Debby P, Rajagopal Karthikan
Eurofins Lancaster Laboratories, Lancaster, Pennsylvania 17605, United States.
Drug Delivery Department, Genentech Inc., 1 DNA Way, South San Francisco, California 94080, United States.
Mol Pharm. 2020 Sep 8;17(9):3291-3297. doi: 10.1021/acs.molpharmaceut.0c00395. Epub 2020 Jul 30.
Maintenance of protein stability during manufacture, storage, and delivery is necessary for the successful development of a drug product. Herein, the utility of two compatible solutes-ectoine and hydroxyectoine-in stabilizing a model protein labeled Fab2 has been investigated. Specifically, the performance of ectoine and hydroxyectoine in stabilizing Fab2 in a spray-dried formulation at elevated temperature and after multiple freeze/thaw cycles has been compared with the performance of a formulation containing trehalose and a formulation containing no excipient as controls. In the solid state at 90 and 37 °C and in freeze concentrate systems, ectoine and hydroxyectoine suppress protein aggregation. Like trehalose, hydroxyectoine also limits N-terminal pyroglutamate formation in Fab2 in the solid state. The extent of protein stabilization is dependent on the excipient concentration in the formulation, but at a 1:1 excipient to protein mass ratio, hydroxyectoine is better than trehalose in stabilizing Fab2. The results presented here suggest that ectoine and hydroxyectoine are effective excipients for stabilizing therapeutic antibodies.
在药品的成功研发过程中,在制造、储存和递送期间维持蛋白质稳定性是必要的。在此,研究了两种相容性溶质——依克多因和羟基依克多因——在稳定标记为Fab2的模型蛋白方面的效用。具体而言,已将依克多因和羟基依克多因在高温下以及多次冻融循环后在喷雾干燥制剂中稳定Fab2的性能与含有海藻糖的制剂和不含赋形剂作为对照的制剂的性能进行了比较。在90℃和37℃的固态以及冷冻浓缩系统中,依克多因和羟基依克多因可抑制蛋白质聚集。与海藻糖一样,羟基依克多因也限制了固态Fab2中N端焦谷氨酸的形成。蛋白质稳定的程度取决于制剂中赋形剂的浓度,但在赋形剂与蛋白质质量比为1:1时,羟基依克多因在稳定Fab2方面比海藻糖更好。此处给出的结果表明,依克多因和羟基依克多因是稳定治疗性抗体的有效赋形剂。