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Fabrication of biocompatible artificial skin for full-thickness wound by co-culture of adipose mesenchymal stem cells-human keratinocytes on oxygen-producing nanofiber electrospun scaffold in rat animal model

2024-10-23

Abstract excerpt

<title>Abstract</title> <p>In wound healing and skin regeneration, hypoxia is a significant limitation that delays this process. Lack of oxygen can lead to cell death and postpone tissue regeneration. Hence, eliminating the absence of oxygen by generating oxygen from an oxygen-generating scaffold can accelerate the skin's healing process. In our previous study, after making a scaffold with three components of pol...

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Literature Corpus work
f6f5f6d9-8fbc-5e79-92bb-4fd8c755366e
DOI
10.21203/rs.3.rs-5254281/v1
Open publication

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Fabrication of biocompatible artificial skin for full-thickness wound by co-culture of adipose mesenchymal stem cells-human keratinocytes on oxygen-producing nanofiber electrospun scaffold in rat animal modelDOI 10.21203/rs.3.rs-5254281/v1
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