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Manganese Galvanic Cells Intervene in Tumor Metabolism to Reinforce cGAS-STING Activation for Bidirectional Synergistic Hydrogen-Immunotherapy

Adv Mater. 2025-01; 
Nailin Yang , Shumin Sun , Jiachen Xu , Fei Gong, Huali Lei , Yu Hao , Zifan Pei , Chenya Wang , Qiao Yu , Jihu Nie , Nan Jiang , Caifang Ni , Liang Cheng
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Abstract

The cGAS-STING pathway is pivotal in initiating antitumor immunity. However, tumor metabolism, particularly glycolysis, negatively regulates the activation of the cGAS-STING pathway. Herein, Mn galvanic cells (MnG) are prepared via liquid-phase exfoliation and in situ galvanic replacement to modulate tumor metabolism, thereby enhancing cGAS-STING activation for bidirectional synergistic H2-immunotherapy. The obtained MnG can be etched by water, enabling efficient and sustained generation of H2 gas and Mn2+. MnG not only activated and amplified the cGAS-STING pathway through the sustained release of Mn2+ but also regulated tumor glucose metabolism to inhibit the expression of three prime repair exonuclease 2 (TR... More

Keywords

cGAS‐STING pathway; hydrogen therapy; manganese galvanic cells; transcatheter arterial embolization; tumor metabolism.