Nanodrug Inducing Autophagy Inhibition and Mitochondria Dysfunction for Potentiating Tumor Photo‐Immunotherapy

Author:

Xiao Hong12,Li Xiaoxia3,Li Bo2,Yang Shuguang4,Qin Jingya1,Han Shisong5ORCID,Ren Jie1,Shuai Xintao24

Affiliation:

1. Department of Medical Ultrasonic The Third Affiliated Hospital of Sun Yat‐sen University Guangzhou 510630 China

2. Nanomedicine Center The Third Affiliated Hospital of Sun Yat‐sen University Guangzhou 510630 China

3. Guangzhou Institute of Biomedicine and Health Chinese Academy of Sciences Guangzhou 510530 China

4. PCFM Lab of Ministry of Education School of Materials Science and Engineering Sun Yat‐sen University Guangzhou 510275 China

5. Zhuhai Institute of Translational Medicine Guangdong Provincial Key Laboratory of Tumor Interventional Diagnosis and Treatment Zhuhai People's Hospital (Zhuhai Hospital Affiliated with Jinan University) Zhuhai 519000 China

Abstract

AbstractAnticancer immunotherapy is hampered by the poor tumor immunogenicity and immunosuppressive tumor microenvironment (TME). Herein, a liposome nanodrug co‐encapsulating doxycycline hydrochloride (Doxy) and chlorin e6 (Ce6) to simultaneously induce autophagy inhibition and mitochondria dysfunction for potentiating tumor photo‐immunotherapy is developed. Under near infrared laser irradiation, Ce6 generates cytotoxic reactive oxygen species (ROS) and elicits robust photodynamic therapy (PDT)‐induced immunogenic cell death (ICD) for immunosuppressive TME remodeling. In addition, Doxy induced mitochondria dysfunction, which increases ROS generation and enhances PDT to exert more potent killing effect and more powerful ICD. Meanwhile, Doxy increases MHC‐I expression on tumor cells surface by efficient autophagy inhibition, leading to more efficient antigen presentation and CTLs recognition to increase tumor immunogenicity. The nanodrugs elicit remarkable antitumor therapy by combining Ce6‐mediated PDT and Doxy‐induced autophagy inhibition and mitochondria dysfunction. The developed nanodrugs represent a highly efficient strategy for improving cancer immunotherapy.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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