支化(高分子化学)
免疫疗法
癌症免疫疗法
表面工程
癌症
化学
化学工程
组合化学
材料科学
纳米技术
医学
工程类
有机化学
内科学
作者
Zhichen Zhu,Xingyu Heng,Fangjian Shan,Yang He,Yichen Wang,Hengyuan Zhang,Gaojian Chen,Hong Chen
标识
DOI:10.1021/acs.biomac.4c01230
摘要
Engineering dendritic cell (DC) maturation is paramount for robust T-cell responses and immunological memory, critical for cancer immunotherapy. This work unveils a novel strategy using precisely controlled branching in synthetic glycopolymers to optimize DC activation. Using the distinct copolymerization kinetics of 2-(methacrylamido) glucopyranose (MAG) and diethylene glycol dimethacrylate (DEGDMA) in a RAFT polymerization, unique glycopolymers with varying branching degrees are created. These strategically produced gradient branched glycopolymers with sugar moieties on the outer chain potently promote DC maturation. Strikingly, low-branched glycopolymers demonstrate superior activity, both in pure form and when engineered on tumor cell surfaces. Quartz crystal microbalance and theoretical simulations elucidate the crucial role of branching in modulating glycopolymer-DC receptor interactions. Low-branched gradient glycopolymers have shown a notable advantage and are promising adjuvants in DC-based cancer immunotherapy.
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