AI Article Synopsis

  • Researchers developed composite hydrogel films made of silk fibroin and polyvinyl alcohol, loaded with curcumin nanoparticles, to enhance skin wound healing.
  • The structure and properties of these films were tested using various methods and demonstrated good cell growth support and biocompatibility.
  • Antimicrobial tests showed they prevented bacterial growth, while the films also helped reduce inflammation and encouraged new blood vessel formation during healing in a skin defect model.

Article Abstract

Skin regeneration of full-thickness wounds remains a challenge, requiring a well-regulated interplay of cell-cell and cell-matrix signaling. Herein, the composite hydrogel films composed of silk fibroin (SF) and polyvinyl alcohol (PVA) as scaffolds loaded with curcumin nanoparticles (Cur NPs) were developed for skin wound healing. The structure and physicochemical properties of hydrogel films were first evaluated by scanning electron microscopy (SEM), water contact angle, and chemical and mechanical measurements. In addition, the as-fabricated composite hydrogel films have a unique 3D structure and excellent biocompatibility that facilitates the adhesion and growth of cells. Antimicrobial tests showed that they could inhibit the growth of bacteria due to the incorporation of Cur NPs into composite hydrogel films. The efficacy of the curcumin-loaded SF/PVA composite hydrogel films for skin wound healing was investigated on the skin defect model . Immunological analysis showed that the as-fabricated Cur NP-loaded SF/PVA composite hydrogel films inhibited inflammation at the wound sites, while promoting angiogenesis during the wound healing process.

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Source
http://dx.doi.org/10.1021/acsabm.2c00548DOI Listing

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