生物正交化学
体内
生物相容性
药物输送
化学
催化作用
环加成
纳米技术
叠氮化物
组合化学
细胞器
生物物理学
点击化学
材料科学
生物化学
有机化学
生物
生物技术
作者
Faming Wang,Yan Zhang,Zhengwei Liu,Cheng‐Feng Du,Lu Zhang,Jinsong Ren,Xiaogang Qu
标识
DOI:10.1002/anie.201901760
摘要
Abstract As a typical bioorthogonal reaction, the copper‐catalyzed azide–alkyne cycloaddition (CuAAC) has been used for drug design and synthesis. However, for localized drug synthesis, it is important to be able to determine where the CuAAC reaction occurs in living cells. In this study, we constructed a heterogeneous copper catalyst on a metal–organic framework that could preferentially accumulate in the mitochondria of living cells. Our system enabled the localized synthesis of drugs through a site‐specific CuAAC reaction in mitochondria with good biocompatibility. Importantly, the subcellular catalytic process for localized drug synthesis avoided the problems of the delivery and distribution of toxic molecules. In vivo tumor therapy experiments indicated that the localized synthesis of resveratrol‐derived drugs led to greater antitumor efficacy and minimized side effects usually associated with drug delivery and distribution.
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