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Mitochondria-targeted MXene@MnO2-TPP nanoheterostructures for synergistic enhancement of sonodynamic therapy and immunotherapy in osteosarcoma

  • Jin Zeng
  • , Zuyun Yan
  • , Dong Wang
  • , Tao He
  • , Zhaochen Tong
  • , Jinglei Miao
  • , Jinsong Li
  • , Wei Tan
  • , Shijie Chen*
  • , Youwen Deng*
  • *此作品的通讯作者
  • Central South University

科研成果: 期刊稿件文章同行评审

摘要

Mitochondrial DNA (mtDNA) functions as an endogenous danger-associated molecular pattern that broadly activates the cGAS–STING pathway to potentiate antitumor immunotherapy. However, inefficient mtDNA release severely limits its ability to robustly activate downstream immune responses. Recent studies reveal that ferroptosis can trigger mtDNA release from damaged mitochondria into the cytosol, thereby stimulating antitumor immunity. Thus, precisely modulating mitochondria-associated ferroptosis to promote mtDNA-dependent cGAS–STING activation represents a promising strategy for enhancing immunotherapy. Here, we engineered a mitochondria-targeted MXene@MnO2-TPP Schottky heterojunction that integrates sonosensitization, ferroptosis induction, and immune activation for synergistic therapy. This nanoplatform not only directly generates ROS to trigger tumor cell ferroptosis but also amplifies ferroptosis via an MCU-dependent Ca2+ influx pathway. Furthermore, it dual-activates the cGAS–STING pathway through released mtDNA and Mn2+, stimulating type I interferon production and eliciting systemic antitumor immunity. In vitro and in vivo studies demonstrate robust tumor suppression and prolonged survival in osteosarcoma-bearing mice. Our work proposes an innovative “ferroptosis–mtDNA–immunotherapy” paradigm, offering a promising strategy for osteosarcoma treatment.

源语言英语
页(从-至)450-465
页数16
期刊Bioactive Materials
54
DOI
出版状态已出版 - 12月 2025
已对外发布

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