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Human Split-Thickness Skin Allograft: Skin Substitute in the Treatment of Burn

Background: Human skin allograft has been used as wound coverage for a long time; it is one of the most successful and widely used dressings for burn wounds in the world. Objective: To prepare a freeze-dried human split-thickness skin allograft and evaluate its cytotoxicity, the structure and physic...

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Autores principales: Mahdavi-Mazdeh, M., Nozary Heshmati, B., Tavakoli, S. A. H., Ayaz, M., Azmoudeh Ardalan, F., Momeni, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Avicenna Organ Transplantation Institute 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4089318/
https://www.ncbi.nlm.nih.gov/pubmed/25013660
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author Mahdavi-Mazdeh, M.
Nozary Heshmati, B.
Tavakoli, S. A. H.
Ayaz, M.
Azmoudeh Ardalan, F.
Momeni, M.
author_facet Mahdavi-Mazdeh, M.
Nozary Heshmati, B.
Tavakoli, S. A. H.
Ayaz, M.
Azmoudeh Ardalan, F.
Momeni, M.
author_sort Mahdavi-Mazdeh, M.
collection PubMed
description Background: Human skin allograft has been used as wound coverage for a long time; it is one of the most successful and widely used dressings for burn wounds in the world. Objective: To prepare a freeze-dried human split-thickness skin allograft and evaluate its cytotoxicity, the structure and physical properties after processing methods and clinical efficacy in burn patients. Methods: After ensuring tissue safety, we lyophilized human cadaveric partial thickness skin and exposed it to gamma radiation. Histopathological and immunohistochemical properties, tensile strength and in vitro cytotoxicity were assayed for the skin samples. Then, we tested the samples in 11 patients with deep skin burn. Results: On histological and histopathological examinations, we found a normal skin structure. The tensile strength of the rehydrated freeze-dried human skin allograft was not lesser than the fresh human skin. Cell viability in MTT testing was more than 95%. None of our patients showed any signs of immunological reactions or complications. Conclusion: Gamma-irradiated freeze-dried human split-thickness skin is safe and non-toxic and can be used for the treatment of patients with deep skin burn.
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spelling pubmed-40893182014-07-10 Human Split-Thickness Skin Allograft: Skin Substitute in the Treatment of Burn Mahdavi-Mazdeh, M. Nozary Heshmati, B. Tavakoli, S. A. H. Ayaz, M. Azmoudeh Ardalan, F. Momeni, M. Int J Organ Transplant Med Original Article Background: Human skin allograft has been used as wound coverage for a long time; it is one of the most successful and widely used dressings for burn wounds in the world. Objective: To prepare a freeze-dried human split-thickness skin allograft and evaluate its cytotoxicity, the structure and physical properties after processing methods and clinical efficacy in burn patients. Methods: After ensuring tissue safety, we lyophilized human cadaveric partial thickness skin and exposed it to gamma radiation. Histopathological and immunohistochemical properties, tensile strength and in vitro cytotoxicity were assayed for the skin samples. Then, we tested the samples in 11 patients with deep skin burn. Results: On histological and histopathological examinations, we found a normal skin structure. The tensile strength of the rehydrated freeze-dried human skin allograft was not lesser than the fresh human skin. Cell viability in MTT testing was more than 95%. None of our patients showed any signs of immunological reactions or complications. Conclusion: Gamma-irradiated freeze-dried human split-thickness skin is safe and non-toxic and can be used for the treatment of patients with deep skin burn. Avicenna Organ Transplantation Institute 2013 2013-08-01 /pmc/articles/PMC4089318/ /pubmed/25013660 Text en This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Mahdavi-Mazdeh, M.
Nozary Heshmati, B.
Tavakoli, S. A. H.
Ayaz, M.
Azmoudeh Ardalan, F.
Momeni, M.
Human Split-Thickness Skin Allograft: Skin Substitute in the Treatment of Burn
title Human Split-Thickness Skin Allograft: Skin Substitute in the Treatment of Burn
title_full Human Split-Thickness Skin Allograft: Skin Substitute in the Treatment of Burn
title_fullStr Human Split-Thickness Skin Allograft: Skin Substitute in the Treatment of Burn
title_full_unstemmed Human Split-Thickness Skin Allograft: Skin Substitute in the Treatment of Burn
title_short Human Split-Thickness Skin Allograft: Skin Substitute in the Treatment of Burn
title_sort human split-thickness skin allograft: skin substitute in the treatment of burn
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4089318/
https://www.ncbi.nlm.nih.gov/pubmed/25013660
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