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October 2, 2025Advanced Materials79 citations

Hydrogel‐Based ROS‐Regulating Strategy: Reprogramming the Oxidative Stress Imbalance in Advanced Diabetic Wound Repair

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QZQiaoling ZhouYZYu ZhuangXDXiaoling Deng

Key Points

  • ROS modulation enhances wound recovery by addressing oxidative damage in diabetic conditions.
  • Hydrogels can adjust ROS levels using external stimuli, suggesting innovation in wound care technology.
  • The study outlines challenges in current diabetic wound treatments while proposing future improvement directions.
  • Hydrogels' biocompatibility and controllability make them vital for effective diabetic wound management.

Abstract

Abstract Due to hyperglycemia and redox imbalance, diabetic wounds are prone to recurrent ulceration and non‐healing, severely affecting patients' quality of life. Excessive reactive oxygen species (ROS) in wounds impede repair by damaging proteins and nucleic acids, activating inflammation, and suppressing immunity. A growing body of evidence suggests that harnessing the high oxidative stress within the microenvironment and modulating ROS levels to overcome repair barriers has become a breakthrough in treating chronic diabetic wounds. Hydrogels, with excellent biocompatibility and designability, are key for intelligent ROS regulation. Here, the role of ROS in the progression of diabetic skin wounds is detailed, which includes inducing oxidative damage, exacerbating inflammation and immune imbalance, as well as degrading the extracellular matrix (ECM), hindering neovascularization, and inhibiting nerve repair. Then, the ROS‐regulating strategy based on the hydrogel platform is discussed. Engineered hydrogels adjust ROS levels via external stimulus such as light, ultrasound, and electricity, or the microenvironment of hyperglycemia, oxidative stress, and acidity in wounds, and even bidirectionally in specific spatiotemporal contexts. Furthermore, the therapeutic and repair potential of ROS‐regulated hydrogels in the healing process of diabetic wounds is outlined, the current deficiencies in the field of diabetic wounds treatment are addressed, and prospects for the future are proposed.

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Cite This Study

Zhou et al. (2025) studied this question.

synapsesocial.com/papers/68de68ea83cbc991d0a21633https://doi.org/10.1002/adma.202512719
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Innovative Approaches to Diabetic Wound Healing: Focusing on ROS and Redox Signals2025 · 33 citations
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  4. 4Glucose/ROS/pH Triple Editing “Domino Hydrogel” Accelerates Diabetic Wound Healing via Hypoglycemic, Antioxidant, Antibacterial, and Macrophage Polarization2024 · 8 citations
  5. 5Metabolically Programmed Biomass Hydrogel for Phase‐Transition Therapy of Chronic Diabetic Wounds2025