化学
单克隆抗体
甘露糖
药代动力学
生物素化
甘露糖受体
单克隆
配对
结合亲和力
受体
抗体
分子生物学
体内
生物化学
链霉亲和素
基质(化学分析)
酶
色谱法
生物素
体外
药理学
作者
Wei Wei,Linzhi Chen,Julia Baumeister,Maximilian Meudt,Aimee Altemus,Aaron M. Teitelbaum,Fabian Higel
标识
DOI:10.1021/acs.analchem.6c00484
摘要
Many biotherapeutics, such as monoclonal antibodies (mAbs), consist of diverse glycoforms that can influence pharmacokinetic (PK) properties upon administration to animals and humans. Among these, N -glycosylation with high mannose (HM) at asparagin-297 is known to increase systemic clearance, shorten half-life, and reduce systemic exposure of mAbs. Therefore, the HM level is closely monitored and controlled within defined ranges during mAb production. However, the impact of glyco pairing (complex, asymmetrical HM and symmetrical HM) has not been previously investigated. Here, we present the first such study to assess the effects of HM glyco pairing on the PK of a therapeutic mAb. We developed a novel immunocapture-LC/MS intact analysis to distinguish and quantify different HM glyco pairings in rat plasma. The mAb was purified and enriched from the rat plasma using a biotinylated anti-human Fc Ab immobilized on streptavidin magnetic beads. Upon Endo-F3 enzymatic digestion, the purified samples yielded three N -glyco paired species: complex, asymmetrical HM and symmetrical HM, which were quantified, and their respective PK parameters were subsequently determined. There was a 2.4-fold and 4-fold increase in clearance for the asymmetrical HM and symmetrical HM compared to those of the complex, respectively. These in vivo findings were consistent with mannose receptor binding affinities of the glyco pair species. Our study underscores the importance of monitoring not only the high mannose levels but also the glyco pairing constructs during the mAb manufacturing process.
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