去酰胺
化学
色谱法
产量(工程)
生物制药
翻译后修饰
洗脱
组合化学
生物化学
酶
材料科学
生物
冶金
遗传学
作者
Vibhava Shukla,Koduru Srivatsa,M. Saravana Kumar,Navratna Vajpai,Neha Agarwal,S. Nethra,Baggavalli P Somesh,Abhishek Kulshrestha,Partha Hazra
标识
DOI:10.1016/j.pep.2021.105895
摘要
Biopharmaceutical development demands appropriate understanding of product related variants, which are formed due to post-translational modification and during downstream processing. These variants can lead to low yield, reduced biological activity, and suboptimal product quality. In addition, these variants may undergo immune reactions, henceforth need to be appropriately controlled to ensure consistent product quality and patient safety. Deamidation of insulin is the most common post-translational modification occurring in insulin and insulin analogues. AsnA21 desamido variant is also the most prominent product variant formed during human insulin manufacturing process and/or during the storage. Often, this deamidated variant is used as an impurity standard during in-process and final product analysis in the QC system. However, purification of large quantity of purified deamidated material is always being challenging due to highly similar mass, ionic, hydrophobic properties, and high structural similarity of the variant compared to the parent product. Present work demonstrates the simplified and efficient scalable process for generation of AsnA21 deamidated variant in powder form with ~96% purity. The mixed-mode property of anion exchange resin PolyQuat was utilized to purify the deamidated impurity with high recovery. Subsequent reversed-phase high performance liquid chromatography (RP-HPLC) step was introduced for concentration of product in bind elute mode. Elution pool undergone isoelectric precipitation and lyophilisation. The lyophilized product allows users for convenient use of the deamidated impurity for intended purposes. Detailed characterization by Mass spectrometry revealed deamidation is at AsnA21 and further confirmed that, structural and functional characterization as well as the biological activity of isolated variant is equivalent to insulin.
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