Simultaneous Activation of Pyroptosis and cGAS‐STING Pathway with Epigenetic/ Photodynamic Nanotheranostic for Enhanced Tumor Photoimmunotherapy

Author:

Ding Feixiang123,Liu Junyan4,Ai Kelong3,Xu Chun5ORCID,Mao Xiaoyuan12,Liu Zhaoqian12ORCID,Xiao Haihua6ORCID

Affiliation:

1. Department of Clinical Pharmacology Hunan Key Laboratory of Pharmacogenetics and National Clinical Research Center for Geriatric Disorders Xiangya Hospital Central South University Changsha 410008 China

2. Institute of Clinical Pharmacology Engineering Research Center for Applied Technology of Pharmacogenomics of Ministry of Education Central South University Changsha 410078 China

3. Department of Pharmacology Xiangya School of Pharmaceutical Sciences Central South University Changsha 410078 China

4. Department of Orthopaedics Xiangya Hospital Central South University Changsha 410008 China

5. School of Dentistry University of Queensland Brisbane 4006 Australia

6. Beijing National Laboratory for Molecular Sciences Laboratory of Polymer Physics and Chemistry Institute of Chemistry Chinese Academy of Sciences Beijing 100190 China

Abstract

AbstractPromoting innate immunity through pyroptosis induction or the cyclic GMP‐AMP synthase‐stimulator of interferon gene (cGAS‐STING) pathway activation has emerged as a potent approach to counteract the immunosuppressive tumor microenvironment and elicit systemic antitumor immunity. However, current pyroptosis inducers and STING agonists often suffer from limitations including instability, unpredictable side effects, or inadequate intracellular expression of gasdermin and STING. Here, a tumor‐specific nanotheranostic platform that combines photodynamic therapy (PDT) with epigenetic therapy to simultaneously activate pyroptosis and the cGAS‐STING pathway in a light‐controlled manner is constructed. This approach involves the development of oxidation‐sensitive nanoparticles (NP1) loaded with the photosensitizer TBE, along with decitabine nanomicelles (NP2). NP2 enables the restoration of STING and gasdermin E (GSDME) expression, while NP1‐mediated PDT facilitates the release of DNA fragments from damaged mitochondria to potentiate the cGAS‐STING pathway, and promotes the activation of caspase‐3 to cleave the upregulated GSDME into pore‐forming GSDME‐N terminal. Subsequently, the released inflammatory cytokines facilitate the maturation of antigen‐presentation cells, triggering T cell‐mediated antitumor immunity. Overall, this study presents an elaborate strategy for simultaneous photoactivation of pyroptosis and the cGAS‐STING pathway, enabling targeted photoimmunotherapy in immunotolerant tumors. This innovative approach holds significant promise in overcoming the limitations associated with existing therapeutic modalities and represents a valuable avenue for future clinical applications.

Funder

Natural Science Foundation of Hunan Province

Changsha Science and Technology Project

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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