NIR-switchable local hydrogen generation by tandem bimetallic MOFs nanocomposites for enhanced chemodynamic therapy

Author:

Zhong Jun12,Zheng Xiang12,Wen Yuan12,Li Yuewei12,Zhang Jianting12,Kankala Ranjith Kumar12ORCID,Wang Shibin12,Chen Aizheng123ORCID

Affiliation:

1. Institute of Biomaterials and Tissue Engineering, Huaqiao University , Xiamen 361021, China

2. Fujian Provincial Key Laboratory of Biochemical Technology, Huaqiao University , Xiamen 361021, China

3. Fujian Provincial Key Laboratory of Biomass Low-Carbon Conversion, Huaqiao University , Xiamen 361021, China

Abstract

Abstract The inadequate quantity of hydrogen peroxide (H2O2) in cancer cells promptly results in the constrained success of chemodynamic therapy (CDT). Significant efforts made throughout the years; nevertheless, researchers are still facing the great challenge of designing a CDT agent and securing H2O2 supply within the tumor cell. In this study, taking advantage of H2O2 level maintenance mechanism in cancer cells, a nanozyme-based bimetallic metal-organic frameworks (MOFs) tandem reactor is fabricated to elevate intracellular H2O2 levels, thereby enhancing CDT. In addition, under near-infrared excitation, the upconversion nanoparticles (UCNPs) loaded into the MOFs can perform photocatalysis and generate hydrogen, which increases cellular susceptibility to radicals induced from H2O2, inhibits cancer cell energy, causes DNA damages and induces tumor cell apoptosis, thus improving CDT therapeutic efficacy synergistically. The proposed nanozyme-based bimetallic MOFs-mediated CDT and UCNPs-mediated hydrogen therapy act as combined therapy with high efficacy and low toxicity.

Funder

National Natural Science Foundation of China

Science and Technology Projects in Fujian Province

Open Research Fund of Academy of Advanced Carbon Conversion Technology

Huaqiao University

Publisher

Oxford University Press (OUP)

Subject

Biomaterials

Reference46 articles.

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