4.8 Article

Intracellular Activation of Bioorthogonal Nanozymes through Endosomal Proteolysis of the Protein Corona

期刊

ACS NANO
卷 14, 期 4, 页码 4767-4773

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.0c00629

关键词

stimuli response; endogenous activation; bioorthogonal chemistry; nanozymes; proteolysis

资金

  1. NIH [EB022641]

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Bioorthogonal activation of prodrugs provides a strategy for on-demand on-site production of therapeutics. Intracellular activation provides a strategy to localize therapeutics, potentially minimizing off-target effects. To this end, nanoparticles embedded with transition metal catalysts (nanozymes) were engineered to generate either hard irreversible or soft reversible coronas in serum. The hard corona induced nanozyme aggregation, effectively inhibiting nanozyme activity, whereas only modest loss of activity was observed with the nonaggregating soft corona nanozymes. In both cases complete activity was restored by treatment with proteases. Intracellular activity mirrored this reactivation: endogenous proteases in the endosome provided intracellular activation of both nanozymes. The role of intracellular proteases in nanozyme reactivation was verified through treatment of the cells with protease inhibitors, which prevented reactivation. This study demonstrates the use of intracellular proteolysis as a strategy for localization of therapeutic generation to within cells.

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