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May 10, 2026ACS Applied Materials & Interfaces0 citations

In Vivo Drug-Eluting Smart Scaffold for Diabetic Wounds

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AMAnurup MukhopadhyayAGAyan GopeJCJyotirmoy Chatterjee

Key Points

  • This research aims to evaluate the efficacy of a smart scaffold in promoting wound healing in a diabetic rat model.
  • Utilized a diabetic rat model to assess wound healing efficacy.
  • Tracked healing using Swept-Source Optical Coherence Tomography (SS-OCT), histopathology, and molecular analysis.
  • Conducted quantitative PCR and immunohistochemistry for molecular analysis.
  • Scaffold significantly accelerates wound healing, enhancing cellular differentiation and angiogenesis.
  • Observed improved extracellular matrix remodeling during the treatment.
  • Results indicate a promising approach for targeted management of diabetic wounds with clinical potential.

Abstract

efficacy of the patterned scaffold in a diabetic rat model. Wound healing and tissue regeneration were tracked using Swept-Source Optical Coherence Tomography (SS-OCT), histopathology, and molecular analysis (immunohistochemistry and quantitative PCR). We show that the scaffold significantly accelerates wound healing, as evidenced by enhanced cellular differentiation, angiogenesis, and extracellular matrix remodeling. These findings highlight the scaffold's ability to overcome the limitations of current wound care technologies by integrating structural support with sustained drug release. The approach not only improves wound closure and tissue regeneration but also provides a promising, bioinspired solution for targeted diabetic wound management with high potential for clinical translation.

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Cite This Study

Mukhopadhyay et al. (2026) studied this question.

synapsesocial.com/papers/6a002222c8f74e3340f9d0b0https://doi.org/10.1021/acsami.6c01132
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