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Platelet-rich plasma with keratinocytes and fibroblasts enhance healing of full-thickness wounds
Authors:Jia Xian Law  Shiplu Roy Chowdhury  Aminuddin Bin Saim  Ruszymah Bt Hj Idrus
Affiliation:1. Tissue Engineering Centre, Faculty of Medicine, Universiti Kebangsaan Malaysia Medical Centre, Jalan Yaacob Latif, 56000, Kuala Lumpur, Malaysia;2. Ear, Nose & Throat Consultant Clinic, Ampang Puteri Specialist Hospital, 68000, Ampang, Selangor, Malaysia;3. Department of Physiology, Faculty of Medicine, Universiti Kebangsaan Malaysia, Jalan Yaacob Latif, 56000, Kuala Lumpur, Malaysia
Abstract:Advances in tissue engineering led to the development of various tissue-engineered skin substitutes (TESS) for the treatment of skin injuries. The majority of the autologous TESS required lengthy and costly cell expansion process to fabricate. In this study, we determine the possibility of using a low density of human skin cells suspended in platelet-rich plasma (PRP)-enriched medium to promote the healing of full-thickness skin wounds. To achieve this, full-thickness wounds of size 1.767 cm2 were created at the dorsum part of nude mice and treated with keratinocytes (2 × 104 cells/cm2) and fibroblasts (3 × 104 cells/cm2) suspended in 10% PRP-enriched medium. Wound examination was conducted weekly and the animals were euthanized after 2 weeks. Gross examination showed that re-epithelialization was fastest in the PRP+cells group at both day 7 and 14, followed by the PRP group and NT group receiving no treatment. Only the PRP+cells group achieved complete wound closure by 2 weeks. Epidermal layer was presence in the central region of the wound of the PRP+cells and PRP groups but absence in the NT group. Comparison between the PRP+cells and PRP groups showed that the PRP+cells-treated wound was more mature as indicated by the presence of thinner epidermis with single cell layer thick basal keratinocytes and less cellular dermis. In summary, the combination of low cell density and diluted PRP creates a synergistic effect which expedites the healing of full-thickness wounds. This combination has the potential to be developed as a rapid wound therapy via the direct application of freshly harvested skin cells in diluted PRP.
Keywords:Wound healing  Rapid treatment  Platelet-rich plasma  Keratinocyte  Fibroblast  TESS  tissue-engineered skin substitutes  PRP  platelet-rich plasma  FBS  fetal bovine serum  TGF-β1  transforming growth factor-β1  VEGF  vascular endothelial growth factor  PDGF-BB  platelet-derived growth factor-BB  NT  no treatment  DEJ  dermal-epidermal junction  IHC  Immunohistochemical staining  TEM  Transmission electron microscopy  ANOVA  one-way analysis of variance
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