[Effects and mechanisms of polycaprolactone-cellulose acetate nanofiber scaffold loaded with rat epidermal stem cells on wound healing of full-thickness skin defects in rats].

Apr 25, 2021Zhonghua shao shang za zhi = Zhonghua shaoshang zazhi = Chinese journal of burns

How a nanofiber scaffold with rat skin stem cells helps heal deep skin wounds in rats

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Abstract

The percentage of wound area in rats treated with ESCs scaffold was significantly lower at 5.0±1.0% on post injury day 21 compared to the blank control group at 10.1±1.1%.

  • PCL-CA nanofiber scaffolds exhibited a multilayered three-dimensional structure with a fiber diameter of 383±24 nm.
  • ESCs cultured on PCL-CA scaffolds showed a higher protein expression level of CK19 after 3 days compared to those cultured on type IV collagen.
  • On post injury day 21, the new skin tissue in the ESCs scaffold group demonstrated a more orderly collagen arrangement than in the control and scaffold alone groups.
  • The expression levels of Notch1, Jagged1, and Hes1 were significantly higher in the new skin tissue of the ESCs scaffold group compared to the scaffold alone group.
  • The PCL-CA nanofiber scaffolds may inhibit the differentiation of ESCs while promoting wound healing through the activation of the Notch signaling pathway.

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