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Trace element-dictated exosome modules and self-adaptive dual-network hydrogel orchestrate diabetic foot regeneration through complement-mitochondria-autophagy circuitry
RESEARCH | Updated:2026-06-10
    • Trace element-dictated exosome modules and self-adaptive dual-network hydrogel orchestrate diabetic foot regeneration through complement-mitochondria-autophagy circuitry

    • Trace element-dictated exosome modules and self-adaptive dual-network hydrogel orchestrate diabetic foot regeneration through complement-mitochondria-autophagy circuitry

    • Military Medical Research   2026年13卷第4期 页码:559-587
    • DOI:10.1186/s40779-025-00658-4    

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    • 收稿:2025-05-12

      录用:2025-10-02

      网络首发:2025-10-28

      纸质出版:2026-04

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  • Shuang-Qing Wang, Ming-Ji Jin, Ze-Ke Guo, 等. Trace element-dictated exosome modules and self-adaptive dual-network hydrogel orchestrate diabetic foot regeneration through complement-mitochondria-autophagy circuitry[J]. Military Medical Research, 2026,13(4):559-587. DOI: 10.1186/s40779-025-00658-4.

    Shuang-Qing Wang, Ming-Ji Jin, Ze-Ke Guo, et al. Trace element-dictated exosome modules and self-adaptive dual-network hydrogel orchestrate diabetic foot regeneration through complement-mitochondria-autophagy circuitry[J]. Military Medical Research, 2026, 13(4): 559-587. DOI: 10.1186/s40779-025-00658-4.

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相关作者

Hyun-Do Jung
Xing Huang
Xiao-Bing Fu
Sha Huang
Meng-De Zhang
Zhao Li
Wei Song
Yi Kong

相关机构

Division of Materials Science and Engineering, Hanyang University
Research Center for Tissue Repair and Regeneration Affiliated to the Medical Innovation Research Department, Chinese PLA General Hospital and Chinese PLA Medical College
Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences
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