Hollow CeO2‐Based Nanozyme with Self‐Accelerated Cascade Reactions for Combined Tumor Therapy

Author:

Meng Lili1,Tang Lingxue2,Gao Fangli1,Zhu Liang1,Liu Xinhe1,Zhang Jie1,Chang Yi1,Ma Xiaoming2,Guo Yuming1ORCID

Affiliation:

1. School of Chemistry and Chemical Engineering Henan Normal University Xinxiang, Henan 453007 China

2. Key Laboratory of Green Chemical Media and Reactions Ministry of Education Henan Normal University Xinxiang, Henan 453007 China

Abstract

AbstractNanozymes have obvious advantages in improving the efficiency of cancer treatment. However, due to the lack of tissue specificity, low catalytic efficiency, and so on, their clinical applications are limited. Herein, the nanoplatform CeO2@ICG@GOx@HA (CIGH) with self‐accelerated cascade reactions is constructed. The as‐prepared nanozyme shows the superior oxidase (OXD)‐like, superoxide dismutase (SOD)‐like, catalase (CAT)‐like and peroxidase (POD)‐like activities. At the same time, under 808 nm near‐infrared (NIR) irradiation, the photodynamic and photothermal capabilities are also significantly enhanced due to the presence of indocyanine green (ICG). We demonstrate that the nanozyme CIGH can efficiently accumulate in the tumor and exhibit amplified cascade antitumor effects with negligible systemic toxicity through the combination of photodynamic therapy (PDT), photothermal therapy (PTT), chemodynamic therapy (CDT) and starvation therapy. The nanozyme prepared in this study provides a promising candidate for catalytic nanomedicines for efficient tumor therapy.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Henan Province

Higher Education Discipline Innovation Project

Foundation of Henan Educational Committee

Publisher

Wiley

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