席夫碱
共价键
化学
细胞内
聚合
聚合物
坏死性下垂
生物物理学
原位
运动性
组合化学
高分子化学
细胞凋亡
程序性细胞死亡
细胞生物学
有机化学
生物化学
生物
作者
Hanbin Xu,Hua‐Ying Chen,Jian Lv,Binbin Chen,Ze‐Rui Zhou,Shuai Chang,Yating Gao,Wen‐Fei Huang,M. H. Ye,Zi‐Jian Cheng,Mahmoud Elsayed Hafez,Ruo‐Can Qian,Da‐Wei Li
标识
DOI:10.1002/anie.202311002
摘要
Artificially performing chemical reactions in living biosystems to attain various physiological aims remains an intriguing but very challenging task. In this study, the Schiff base reaction was conducted in cells using Sc(OTf)3 as a catalyst, enabling the in situ synthesis of a hollow covalent organic polymer (HCOP) without external stimuli. The reversible Schiff base reaction mediated intracellular Oswald ripening endows the HCOP with a spherical, hollow porous structure and a large specific surface area. The intracellularly generated HCOP reduced cellular motility by restraining actin polymerization, which consequently induced mitochondrial deactivation, apoptosis, and necroptosis. The presented intracellular synthesis system inspired by the Schiff base reaction has strong potential to regulate cell fate and biological functions, opening up a new strategic possibility for intervening in cellular behavior.
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