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Cytotoxicity of Postmodified Zeolitic Imidazolate Framework-90 (ZIF-90) Nanocrystals: Correlation between Functionality and Toxicity
Journal article   Peer reviewed

Cytotoxicity of Postmodified Zeolitic Imidazolate Framework-90 (ZIF-90) Nanocrystals: Correlation between Functionality and Toxicity

Chia-I Yen, Szu-Mam Liu, Wei-Shang Lo, Jhe-Wei Wu, Yi-Hsin Liu, Rong-Jie Chein, Renqiang Yang, Kevin C.-W. Wu, Jih Ru Hwu, Nianhan Ma, …
Chemistry - A European Journal, Vol.22(9), pp.2925-2929
02/2016
PMID: 25079005

Abstract

cytotoxicity drug carriers metal-organic frameworks post-modification ZIF-90 Chemistry (all)
Using a simple method, the aldehyde groups of zeolitic imidazolate framework-90 (ZIF-90) nanocrystals were converted into carboxyl, amino, and thiol groups, without affecting the integrity of the framework. Notably, for the first time, correlations between functionality and cytotoxicity are also demonstrated via in vitro cytotoxicity assays. The positive charged aminated-ZIF-90 presumably results in either perturbation of cell membrane, more efficient cell uptake, or both. Therefore, the half-maximal effective (EC 50 ) concentration of aminated-ZIF-90 has a higher cytotoxicity of about 30 μg mL -1 . Supermodification: ZIF-90 (zeolitic imidazolate framework-90) nanocrystals were substituted with carboxyl, amino, and thiol groups without affecting framework integrity. In vitro cytotoxicity assays reveals that the positively charged aminated ZIF-90 presumably results in perturbation of cell membrane and/or more efficient cell uptake. The half-maximal effective (EC 50 ) concentration of aminated-ZIF-90 has a higher cytotoxicity (ca. 30 μg mL -1 ).

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