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Engineered elastin-like polypeptide improves the efficiency of adipose-derived stem cell-mediated cutaneous wound healing in type II diabetes mellitus

Title
Engineered elastin-like polypeptide improves the efficiency of adipose-derived stem cell-mediated cutaneous wound healing in type II diabetes mellitus
Author(s)
Woo, Seung-HwaChoi, Joon HyukMo, Yun JeongLee, Yun-IlJeon, Won BaeLee, Young-Sam
Issued Date
2023-09
Citation
Heliyon, v.9, no.9
Type
Article
Author Keywords
Engineered elastin-like polypeptideWound healingType II diabetes mellitusAdipose -derived stem cellsSkin elasticity
Keywords
SKINPATHOGENESIS
ISSN
2405-8440
Abstract
Impaired cutaneous wound healing is a major complication in patients with diabetes mellitus (DM), leading to increased amputation and mortality rates in affected patients. Adipose-derived stem cells (ASCs) are widely used seed cells for promoted tissue regeneration to improve wound closure under diabetic conditions. However, ASCs-based therapies remain limited due to difficulties in maintaining cell quality during transplantation. To overcome this problem, extracellular matrix mimetic biomaterials have been developed for use in biomedical engineering field, including tissue engineering and regenerative medicine. Herein, a biosynthesized arginine–glycine–aspartate amino acid residues (RGD motif, known as a cell adhesion motif)-containing elastin-like polypeptides (REPs) improved the efficacy of ASCs in enhancing wound closure and skin elasticity in diabetic wounds by promoting the expression of angiogenic growth factors. Therefore, REPs can be used as potential supplements to stem cell-based therapeutic approach to accelerate diabetic wound repair. © 2023 The Authors
URI
http://hdl.handle.net/20.500.11750/46702
DOI
10.1016/j.heliyon.2023.e20201
Publisher
Cell Press
Related Researcher
  • 이윤일 Lee, Yun-Il 바이오메디컬연구부
  • Research Interests
Files in This Item:
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Appears in Collections:
Division of Biotechnology 1. Journal Articles
Department of New Biology Senescence-Associated Mechanism Lab 1. Journal Articles

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