Skin wound healing improvement in diabetic mice through FTIR microspectroscopy after implanting pluripotent stem

Gustavo J Vazquez-Zapien, Adriana Martinez-Cuazitl, Alejandra Granados-Jimenez1

  • 1Escuela Militar de Medicina, Centro Militar de Ciencias de la Salud, Secretaría de la Defensa Nacional, Mexico City 11200, Mexico.

APL Bioengineering
|February 13, 2023
PubMed

Insights

Pluripotent stem cells (PSCs) accelerate diabetic wound healing by promoting ordered collagen deposition and reducing inflammation. This regenerative medicine approach offers improved skin repair in diabetic complications.

Area of Science:

  • Regenerative Medicine
  • Dermatology
  • Biomaterials Science

Background:

  • Diabetic cutaneous complications, including skin lesions and ulcers, affect 30%-70% of patients.
  • Current treatments for diabetic wounds are often ineffective due to complex healing mechanisms.
  • There is a limited understanding of diabetic skin biology and stem cell treatment effects.

Purpose of the Study:

  • To investigate the efficacy of pluripotent stem cells (PSCs) in promoting wound healing in a diabetic mouse model.
  • To analyze the morphometric, histological, and biomolecular changes during the wound healing process after PSC treatment.

Main Methods:

  • Utilized morphometric analysis (photographic follow-up) to measure lesion size.
  • Conducted histological analysis using H&E and picrosirius red stains to assess epidermal thickness, cellularity, and collagen types I and III.
  • Employed Fourier-transform infrared microspectroscopy (FTIRM) for biomolecular analysis of skin cryosections.

Main Results:

  • PSC-treated wounds showed evidence of hair follicle regeneration and improved keratinocyte polarity.
  • Histological analysis revealed enhanced granulation tissue formation, neovascularization, and increased deposition of ordered collagen, particularly type III.
  • FTIRM analysis indicated a faster wound healing process in the PSC-treated group.

Conclusions:

  • Pluripotent stem cell treatment significantly enhances diabetic wound healing compared to standard saline solution.
  • PSC therapy promotes more organized tissue structures, increased collagen deposition, and reduced inflammatory infiltration.
  • This study highlights the potential of PSCs as a regenerative therapy for diabetic skin complications.