聚糖
岩藻糖基化
中国仓鼠卵巢细胞
抗体
抗体依赖性细胞介导的细胞毒性
蛋白质工程
细胞毒性
生物化学
糖蛋白
糖基化
单克隆抗体
生物
化学
抗原
计算生物学
表位
唾液酸转移酶
重组DNA
分子生物学
免疫学
酶
基因
体外
受体
作者
Qiong Wang,C.‐S. Chung,Sandra Chough,Michael J. Betenbaugh
摘要
Abstract As a key parameter impacting functional and structural heterogeneity, protein glycosylation is a critical quality attribute for antibody biotherapeutic manufacturing. The glycan patterns on recombinant antibodies, particularly on the conserved fragment crystallizable (Fc) region, can have significant effects on an antibody's functional activities including clearance rate, antibody‐dependent cellular cytotoxicity (ADCC), complement‐dependent cytotoxicity (CDC), and anti‐inflammatory activity. In this review, we examined specific glycan attachments (fucosylation, sialylation, galactosylation, high‐mannose, and bisecting glycans) and their importance to antibody properties. Next, we summarized the recent and current achievements on controlling antibody glycoforms in Chinese hamster ovary (CHO) and other mammalian cells through multiple strategies including genetic engineering, protein engineering, media modification, and other emerging technologies. Further, the impact of one carbohydrate modification on other glycan structures is also described. Finally, approaches to generate desirable homogenous glycan profiles on antibodies are also detailed. By applying multiple complementary intracellular and extracellular strategies, biotechnologists are well on their ways to precisely tuning antibody glycoforms emerging from bioreactors in the coming decades.
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