化学
单克隆抗体
生物仿制药
表面等离子共振
结构相似性
单克隆
色谱法
抗体
生物化学
纳米技术
医学
生物
内科学
纳米颗粒
材料科学
免疫学
作者
Meral Yüce,Fatma Sert,Milad Torabfam,Ayhan Parlar,Büşra Gürel,N Cakir,Duygu Emine Dağlikoca,Mansoor A. Khan,Yılmaz Çapan
标识
DOI:10.1016/j.aca.2020.12.064
摘要
The similarity between originator and biosimilar monoclonal antibody candidates are rigorously assessed based on primary, secondary, tertiary, quaternary structures, and biological functions. Minor differences in such parameters may alter target-binding, potency, efficacy, or half-life of the molecule. The charge heterogeneity analysis is a prerequisite for all biotherapeutics. Monoclonal antibodies are prone to enzymatic or non-enzymatic structural modifications during or after the production processes, leading to the formation of fragments or aggregates, various glycoforms, oxidized, deamidated, and other degraded residues, reduced Fab region binding activity or altered FcR binding activity. Therefore, the charge variant profiles of the monoclonal antibodies must be regularly and thoroughly evaluated. Comparative structural and functional analysis of physically separated or fractioned charged variants of monoclonal antibodies has gained significant attention in the last few years. The fraction-based charge variant analysis has proved very useful for the biosimilar candidates comprising of unexpected charge isoforms. In this report, the key methods for the physical separation of monoclonal antibody charge variants, structural and functional analyses by liquid chromatography-mass spectrometry, and surface plasmon resonance techniques were reviewed.
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