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Adult Human Dermal Progenitor Cell Transplantation Modulates the Functional Outcome of Split-Thickness Skin Xenografts

Following full-thickness skin injuries, epithelialization of the wound is essential. The standard of care to achieve this wound “closure” in patients is autologous split-thickness skin grafting (STSG). However, patients living with STSGs report significant chronic impairments leading to functional d...

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Autores principales: Agabalyan, Natacha A., Sparks, Holly D., Tarraf, Samar, Rosin, Nicole L., Anker, Katie, Yoon, Grace, Burnett, Lindsay N., Nickerson, Duncan, Di Martino, Elena S., Gabriel, Vincent A., Biernaskie, Jeff
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6915850/
https://www.ncbi.nlm.nih.gov/pubmed/31735655
http://dx.doi.org/10.1016/j.stemcr.2019.10.011
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author Agabalyan, Natacha A.
Sparks, Holly D.
Tarraf, Samar
Rosin, Nicole L.
Anker, Katie
Yoon, Grace
Burnett, Lindsay N.
Nickerson, Duncan
Di Martino, Elena S.
Gabriel, Vincent A.
Biernaskie, Jeff
author_facet Agabalyan, Natacha A.
Sparks, Holly D.
Tarraf, Samar
Rosin, Nicole L.
Anker, Katie
Yoon, Grace
Burnett, Lindsay N.
Nickerson, Duncan
Di Martino, Elena S.
Gabriel, Vincent A.
Biernaskie, Jeff
author_sort Agabalyan, Natacha A.
collection PubMed
description Following full-thickness skin injuries, epithelialization of the wound is essential. The standard of care to achieve this wound “closure” in patients is autologous split-thickness skin grafting (STSG). However, patients living with STSGs report significant chronic impairments leading to functional deficiencies such as itch, altered sensation, fragility, hypertrophic scarring, and contractures. These features are attributable to the absence of functional dermis combined with the formation of disorganized fibrotic extracellular matrix. Recent work has demonstrated the existence of dermal progenitor cells (DPCs) residing within hair follicles that function to continuously regenerate mesenchymal tissue. The present work examines whether cultured DPCs could regenerate dermis within an STSG and improve overall graft function. Adult human DPCs were transplanted into a full-thickness skin wound in immune-compromised mice and closed with a human STSG. At 3 months, human DPCs (hDPCs) had successfully integrated into the xenograft and differentiated into various regionally specified phenotypes, improving both viscoelastic properties of the graft and mitigating pruritus.
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spelling pubmed-69158502019-12-23 Adult Human Dermal Progenitor Cell Transplantation Modulates the Functional Outcome of Split-Thickness Skin Xenografts Agabalyan, Natacha A. Sparks, Holly D. Tarraf, Samar Rosin, Nicole L. Anker, Katie Yoon, Grace Burnett, Lindsay N. Nickerson, Duncan Di Martino, Elena S. Gabriel, Vincent A. Biernaskie, Jeff Stem Cell Reports Article Following full-thickness skin injuries, epithelialization of the wound is essential. The standard of care to achieve this wound “closure” in patients is autologous split-thickness skin grafting (STSG). However, patients living with STSGs report significant chronic impairments leading to functional deficiencies such as itch, altered sensation, fragility, hypertrophic scarring, and contractures. These features are attributable to the absence of functional dermis combined with the formation of disorganized fibrotic extracellular matrix. Recent work has demonstrated the existence of dermal progenitor cells (DPCs) residing within hair follicles that function to continuously regenerate mesenchymal tissue. The present work examines whether cultured DPCs could regenerate dermis within an STSG and improve overall graft function. Adult human DPCs were transplanted into a full-thickness skin wound in immune-compromised mice and closed with a human STSG. At 3 months, human DPCs (hDPCs) had successfully integrated into the xenograft and differentiated into various regionally specified phenotypes, improving both viscoelastic properties of the graft and mitigating pruritus. Elsevier 2019-11-14 /pmc/articles/PMC6915850/ /pubmed/31735655 http://dx.doi.org/10.1016/j.stemcr.2019.10.011 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Agabalyan, Natacha A.
Sparks, Holly D.
Tarraf, Samar
Rosin, Nicole L.
Anker, Katie
Yoon, Grace
Burnett, Lindsay N.
Nickerson, Duncan
Di Martino, Elena S.
Gabriel, Vincent A.
Biernaskie, Jeff
Adult Human Dermal Progenitor Cell Transplantation Modulates the Functional Outcome of Split-Thickness Skin Xenografts
title Adult Human Dermal Progenitor Cell Transplantation Modulates the Functional Outcome of Split-Thickness Skin Xenografts
title_full Adult Human Dermal Progenitor Cell Transplantation Modulates the Functional Outcome of Split-Thickness Skin Xenografts
title_fullStr Adult Human Dermal Progenitor Cell Transplantation Modulates the Functional Outcome of Split-Thickness Skin Xenografts
title_full_unstemmed Adult Human Dermal Progenitor Cell Transplantation Modulates the Functional Outcome of Split-Thickness Skin Xenografts
title_short Adult Human Dermal Progenitor Cell Transplantation Modulates the Functional Outcome of Split-Thickness Skin Xenografts
title_sort adult human dermal progenitor cell transplantation modulates the functional outcome of split-thickness skin xenografts
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6915850/
https://www.ncbi.nlm.nih.gov/pubmed/31735655
http://dx.doi.org/10.1016/j.stemcr.2019.10.011
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