化学
氟化物
纳米晶
金属
溶解度
劈理(地质)
分子
水溶液中的金属离子
聚乙二醇
组合化学
PEG比率
小分子
纳米技术
无机化学
化学工程
有机化学
生物化学
材料科学
经济
复合材料
工程类
断裂(地质)
财务
作者
Dongban Duan,Hao Dong,Zhiyu Tu,Chunhong Wang,Qunfeng Fu,Junyi Chen,Haipeng Zhong,Ping Du,Ling‐Dong Sun,Zhibo Liu
摘要
Metal fluoride nanocrystals are widely used in biomedical studies owing to their unique physicochemical properties. The release of metal ions and fluorides from nanocrystals is intrinsic due to the solubility equilibrium. It used to be considered as a drawback because it is related to the decomposition and defunction of metal fluoride nanocrystals. Many strategies have been developed to stabilize the nanocrystals, and the equilibrium concentrations of fluoride are often <1 mM. Here we make good use of this minimum amount of fluoride and unveil that metal fluoride nanocrystals could effectively induce desilylation cleavage chemistry, enabling controlled release of fluorophores and drug molecules in test tubes, living cells, and tumor-bearing mice. Biocompatible PEG (polyethylene glycol)-coated CaF2 nanocrystals have been prepared to assay the efficiency of desilylation-induced controlled release of functional molecules. We apply the strategy to a prodrug activation of monomethyl auristatin E (MMAE), showing a remarkable anticancer effect, while side effects are almost negligible. In conclusion, this desilylation-induced cleavage chemistry avails the drawback on empowering metal fluoride nanocrystals with a new function of perturbing or activating for further biological applications.
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