Shelf-life evaluation of bilayered human skin equivalent, MyDerm™.

Skin plays an important role in defense against infection and other harmful biological agents. Due to its fragile structure, skin can be easily damaged by heat, chemicals, traumatic injuries and diseases. An autologous bilayered human skin equivalent, MyDerm™, was engineered to provide a living skin...

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Main Authors: Wan Tai Seet, Maarof Manira, Khairoji Khairul Anuar, Kien-Hui Chua, Abdul Wahab Ahmad Irfan, Min Hwei Ng, Bin Saim Aminuddin, Bt Hj Idrus Ruszymah
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3426510?pdf=render
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spelling doaj-a1f832d573d44fd18377393b4ee6b2fc2020-11-25T01:29:11ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0178e4097810.1371/journal.pone.0040978Shelf-life evaluation of bilayered human skin equivalent, MyDerm™.Wan Tai SeetMaarof ManiraKhairoji Khairul AnuarKien-Hui ChuaAbdul Wahab Ahmad IrfanMin Hwei NgBin Saim AminuddinBt Hj Idrus RuszymahSkin plays an important role in defense against infection and other harmful biological agents. Due to its fragile structure, skin can be easily damaged by heat, chemicals, traumatic injuries and diseases. An autologous bilayered human skin equivalent, MyDerm™, was engineered to provide a living skin substitute to treat critical skin loss. However, one of the disadvantages of living skin substitute is its short shelf-life, hence limiting its distribution worldwide. The aim of this study was to evaluate the shelf-life of MyDerm™ through assessment of cell morphology, cell viability, population doubling time and functional gene expression levels before transplantation. Skin samples were digested with 0.6% Collagenase Type I followed by epithelial cells dissociation with TrypLE Select. Dermal fibroblasts and keratinocytes were culture-expanded to obtain sufficient cells for MyDerm™ construction. MyDerm™ was constructed with plasma-fibrin as temporary biomaterial and evaluated at 0, 24, 48 and 72 hours after storage at 4°C for its shelf-life determination. The morphology of skin cells derived from MyDerm™ remained unchanged across storage times. Cells harvested from MyDerm™ after storage appeared in good viability (90.5%±2.7% to 94.9%±1.6%) and had short population doubling time (58.4±8.7 to 76.9±19 hours). The modest drop in cell viability and increased in population doubling time at longer storage duration did not demonstrate a significant difference. Gene expression for CK10, CK14 and COL III were also comparable between different storage times. In conclusion, MyDerm™ can be stored in basal medium at 4°C for at least 72 hours before transplantation without compromising its functionality.http://europepmc.org/articles/PMC3426510?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Wan Tai Seet
Maarof Manira
Khairoji Khairul Anuar
Kien-Hui Chua
Abdul Wahab Ahmad Irfan
Min Hwei Ng
Bin Saim Aminuddin
Bt Hj Idrus Ruszymah
spellingShingle Wan Tai Seet
Maarof Manira
Khairoji Khairul Anuar
Kien-Hui Chua
Abdul Wahab Ahmad Irfan
Min Hwei Ng
Bin Saim Aminuddin
Bt Hj Idrus Ruszymah
Shelf-life evaluation of bilayered human skin equivalent, MyDerm™.
PLoS ONE
author_facet Wan Tai Seet
Maarof Manira
Khairoji Khairul Anuar
Kien-Hui Chua
Abdul Wahab Ahmad Irfan
Min Hwei Ng
Bin Saim Aminuddin
Bt Hj Idrus Ruszymah
author_sort Wan Tai Seet
title Shelf-life evaluation of bilayered human skin equivalent, MyDerm™.
title_short Shelf-life evaluation of bilayered human skin equivalent, MyDerm™.
title_full Shelf-life evaluation of bilayered human skin equivalent, MyDerm™.
title_fullStr Shelf-life evaluation of bilayered human skin equivalent, MyDerm™.
title_full_unstemmed Shelf-life evaluation of bilayered human skin equivalent, MyDerm™.
title_sort shelf-life evaluation of bilayered human skin equivalent, myderm™.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Skin plays an important role in defense against infection and other harmful biological agents. Due to its fragile structure, skin can be easily damaged by heat, chemicals, traumatic injuries and diseases. An autologous bilayered human skin equivalent, MyDerm™, was engineered to provide a living skin substitute to treat critical skin loss. However, one of the disadvantages of living skin substitute is its short shelf-life, hence limiting its distribution worldwide. The aim of this study was to evaluate the shelf-life of MyDerm™ through assessment of cell morphology, cell viability, population doubling time and functional gene expression levels before transplantation. Skin samples were digested with 0.6% Collagenase Type I followed by epithelial cells dissociation with TrypLE Select. Dermal fibroblasts and keratinocytes were culture-expanded to obtain sufficient cells for MyDerm™ construction. MyDerm™ was constructed with plasma-fibrin as temporary biomaterial and evaluated at 0, 24, 48 and 72 hours after storage at 4°C for its shelf-life determination. The morphology of skin cells derived from MyDerm™ remained unchanged across storage times. Cells harvested from MyDerm™ after storage appeared in good viability (90.5%±2.7% to 94.9%±1.6%) and had short population doubling time (58.4±8.7 to 76.9±19 hours). The modest drop in cell viability and increased in population doubling time at longer storage duration did not demonstrate a significant difference. Gene expression for CK10, CK14 and COL III were also comparable between different storage times. In conclusion, MyDerm™ can be stored in basal medium at 4°C for at least 72 hours before transplantation without compromising its functionality.
url http://europepmc.org/articles/PMC3426510?pdf=render
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