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PMID: 41716675 已发表 · epublish 英语

ATP-fueled STING activation of manganese coordinated nanoagonist to boost antitumor immunity.

Bioactive materials ·第 61 卷 ·2026-07-00

Han SY, Zheng SJ, Luo JQ, Yu HH, Liu XY, Du JZ

摘要

The cyclic GMP-AMP synthase-stimulator of interferon genes (cGAS-STING) pathway represents a central driver of innate immune activation, and manganese ion (Mn2+) has recently been identified as a potent modulator of this signaling axis. However, the application of Mn2+ is limited by its rapid clearance, nonspecific distribution and potential neurotoxicity. Inspired by the unique chemical structure and biological functions of adenosine triphosphate (ATP), we herein propose an ATP-Mn coordination nanoparticle (ATP-Mn CNP) to fuel cGAS-STING activation and antitumor immunity. We demonstrated that the phosphate groups of ATP could coordinate with Mn2+ and form stable, well-defined nanoparticles after lipid coating. ATP-Mn CNP significantly increased the expression of cGAS-STING-associated genes and activated the corresponding signaling cascades, and thus effectively polarized macrophages from tumor-supportive M2 to antitumor M1 phenotype. In vivo antitumor studies indicated that ATP-Mn CNP treatment significantly suppressed tumor growth, and reprogramed macrophages in tumors and draining lymph nodes, which thus facilitated the tumor infiltration of cytotoxic lymphocytes. Combination of ATP-Mn CNP with immune checkpoint inhibitors achieved 37.5% tumor eradication in MC38 murine models, and significantly prolonged mice survival. This study establishes an ATP-fueled coordination strategy that harnesses ATP as both an assembly ligand and an immune stimulator to enhance Mn-mediated STING activation.

关键词
Adenosine triphosphate Cancer metalloimmunotherapy Coordination nanoparticles Manganese ions cGAS-STING activation
文献信息
期刊
Bioactive materials
期刊简称
Bioact Mater
ISSN
2452-199X
发表日期
2026-07-00
语言
英语
国家/地区
China
NLM ID
101685294
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