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August 15, 2025Gels24 citationsOpen Access

Hydrogel-Based Treatment of Diabetic Wounds: From Smart Responsive to Smart Monitoring

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XHXiao Mei HeYWYongyi WeiKXKe Xu

Key Points

  • Smart hydrogels enhance healing in diabetic wounds, promoting recovery in challenging environments.
  • Recent advances include real-time monitoring capabilities for glucose and wound pH levels using novel sensors.
  • This review assesses smart hydrogels’ response mechanisms to various stimuli, including oxidative stress and glucose.
  • Future directions focus on overcoming challenges in material development and scaling for effective diabetic care.

Abstract

Diabetic wounds are characterized by a refractory healing cycle resulting from the synergistic effects of hyperglycemic microenvironment, oxidative stress, bacterial infection, and impaired angiogenesis. Conventional hydrogel dressings, with limited functionality, struggle to address the complexities of chronic diabetic ulcers. Smart hydrogels, possessing biocompatibility, porous architectures mimicking extracellular matrix, and environmental responsiveness, have emerged as promising biomaterials for diabetic wound management. This review systematically elucidates the specific response mechanisms of smart hydrogels to wound microenvironmental stimuli, including pH, matrix metalloproteinase-9 (MMP-9), reactive oxygen species (ROS), and glucose levels, enabling on-demand release of antimicrobial agents and growth factors through dynamic bond modulation or structural transformations. Subsequently, the review highlights recent advances in novel hydrogel-based sensors fabricated via optical (photonic crystal, fluorescence) and electrochemical principles for real-time monitoring of glucose levels and wound pH. Finally, critical challenges in material development and scalable manufacturing of multifunctional hydrogel components are discussed, alongside prospects for precision diagnostics and therapeutics in diabetic wound care.

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Cite This Study

He et al. (2025) studied this question.

synapsesocial.com/papers/68af56faad7bf08b1eadd11fhttps://doi.org/10.3390/gels11080647
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