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Peptide nanogels as a scaffold for fabricating dermal grafts and 3D vascularized skin models
被引:9
|作者:
Arab, Wafaa T.
[1
]
Susapto, Hepi H.
[1
,2
]
Alhattab, Dana
[1
,2
]
Hauser, Charlotte A. E.
[1
,2
]
机构:
[1] King Abdullah Univ Sci & Technol KAUST, Div Biol & Environm Sci & Engn BESE, Lab Nanomed, Ibn Al Haytham Blg 2, Thuwal 239556900, Saudi Arabia
[2] KAUST, Computat Biosci Res Ctr CBRC, Thuwal, Saudi Arabia
来源:
JOURNAL OF TISSUE ENGINEERING
|
2022年
/
13卷
关键词:
Ultrashort peptides;
self-assembly;
wound healing;
fibroblast;
keratinocytes;
KERATINOCYTE GROWTH;
ENDOTHELIAL-CELLS;
SELF-ASSEMBLE;
FIBROBLASTS;
ANGIOGENESIS;
EXPRESSION;
MATRIX;
REGENERATION;
STIMULATION;
CONSTRUCTS;
D O I:
10.1177/20417314221111868
中图分类号:
Q813 [细胞工程];
学科分类号:
摘要:
Millions of people worldwide suffer from skin injuries, which create significant problems in their lives and are costly to cure. Tissue engineering is a promising approach that aims to fabricate functional organs using biocompatible scaffolds. We designed ultrashort tetrameric peptides with promising properties required for skin tissue engineering. Our work aimed to test the efficacy of these scaffolds for the fabrication of dermal grafts and 3D vascularized skin tissue models. We found that the direct contact of keratinocytes and fibroblasts enhanced the proliferation of the keratinocytes. Moreover, the expression levels of TGF-beta 1, b-FGF, IL-6, and IL-1 alpha is correlated with the growth of the fibroblasts and keratinocytes in the co-culture. Furthermore, we successfully produced a 3D vascularized skin co-culture model using these peptide scaffolds. We believe that the described results represent an advancement in the fabrication of skin tissue equivalent, thereby providing the opportunity to rebuild missing, failing, or damaged parts.
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页数:13
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