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Glycan analysis for protein therapeutics

机译:蛋白质治疗剂的聚糖分析

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摘要

Glycosylation can be a critical quality attribute for protein therapeutics due to its extensive impact on product safety and efficacy. Glycan characterization is important in the process of protein drug development, from early stage candidate selection to late stage regulatory submission. It is also an indispensable part in the evaluation of biosimilarity. This review discusses the effects of glycosylation on the stability and activity of protein therapeutics, regulatory considerations corresponding to manufacturing and structural characterization of glycosylated protein therapeutics, and focuses on mass spectrometry compatible separation methods for glycan characterization of protein therapeutics. These approaches include hydrophilic interaction liquid chromatography, reversed-phase liquid chromatography, capillary electrophoresis, porous graphitic carbon liquid chromatography and two-dimensional liquid chromatography. Advances and novelties in each separation method, as well as associated challenges and limitations, are discussed at the released glycan, glycopeptide, glycoprotein subunit and intact glycoprotein levels.
机译:由于其对产品安全性和功效的广泛影响,糖基化可以是蛋白质治疗剂的关键质量属性。甘草表征在蛋白质药物开发过程中是重要的,从早期候选人选择到后期监管提交。它在生物纤加评估中也是一个不可或缺的部分。本综述讨论了糖基化对蛋白质治疗剂的稳定性和活性,对应于糖基化蛋白质治疗剂的制造和结构表征的调节考虑,并专注于蛋白质治疗剂的聚糖表征的质谱相容分离方法。这些方法包括亲水性相互作用液相色谱,反相液相色谱,毛细管电泳,多孔型碳液相色谱和二维液相色谱。在释放的聚糖,糖肽,糖蛋白亚基和完整的糖蛋白水平上讨论了每种分离方法以及相关的挑战和限制中的每种分离方法的进展和新奇饼。

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