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August 21, 2025Frontiers in Cell and Developmental Biology24 citationsOpen Access

Mitochondrial dysfunction in diabetic ulcers: pathophysiological mechanisms and targeted therapeutic strategies

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PYPan YuUniversity of Nebraska–Lincoln
Lin Y. Chen
Lin Y. ChenElectrophysiology
YCYan ChenGuangzhou University of Chinese Medicine

Key Points

  • Mitochondrial dysfunction delays wound healing in diabetic foot ulcers, significantly increasing infection risk and potential amputation.
  • Key pathways affected include oxidative stress, calcium imbalance, and mitochondrial apoptosis, worsening tissue regeneration.
  • The review employs a comprehensive analysis of various mechanisms contributing to impaired healing in diabetic foot ulcers.
  • Targeting mitochondrial dysfunction offers a novel therapeutic strategy, emphasizing the need for ongoing research in this area.

Abstract

Diabetic foot ulcers (DFUs) are a serious complication of diabetes, characterized by delayed wound healing, recurrent infection, and risk of amputation. Mitochondrial dysfunction has emerged as a central pathological mechanism underlying impaired wound healing. Persistent hyperglycemia triggers a cascade of mitochondrial abnormalities like disrupted calcium homeostasis, excessive ROS production, impaired autophagy, increased apoptosis, and imbalanced mitochondrial dynamics. These alterations hinder ATP production, damage repair cells and delays tissue regeneration. This review comprehensively explores the mechanism of action of oxidative stress, mitochondrial apoptosis, autophagy dysfunction, calcium imbalance and ferroptosis on DFU pathogenesis. It also highlights promising mitochondrial targeted therapies. As mitochondria regulates key cellular processes, targeting mitochondrial dysfunction represents a novel and promising strategy. Future research should focus on integrated approaches to restore mitochondrial homeostasis in diabetic wound healing.

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Cite This Study

Pan et al. (2025) studied this question.

synapsesocial.com/papers/68af4eb9ad7bf08b1ead7900https://doi.org/10.3389/fcell.2025.1625474
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