Polysaccharide nanofibrous scaffolds as a model for in vitro skin tissue regeneration

被引:0
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作者
R. Krishnan
R. Rajeswari
J. Venugopal
S. Sundarrajan
R. Sridhar
M. Shayanti
S. Ramakrishna
机构
[1] National University of Singapore,Centre for Nanofibers & Nanotechnology, NUSNNI, Faculty of Engineering
[2] National University of Singapore,Department of Mechanical Engineering
关键词
Nanofibrous Scaffold; Human Foreskin Fibroblast; Nanofibrous Membrane; Water Contact Angle Measurement; Dermal Substitute;
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学科分类号
摘要
Tissue engineering and nanotechnology have advanced a general strategy combining the cellular elements of living tissue with sophisticated functional biocomposites to produce living structures of sufficient size and function at a low cost for clinical relevance. Xylan, a natural polysaccharide was electrospun along with polyvinyl alcohol (PVA) to produce Xylan/PVA nanofibers for skin tissue engineering. The Xylan/PVA glutaraldehyde (Glu) vapor cross-linked nanofibers were characterized by SEM, FT-IR, tensile testing and water contact angle measurements to analyze the morphology, functional groups, mechanical properties and wettability of the fibers for skin tissue regeneration. The cell-biomaterial interactions were studied by culturing human foreskin fibroblasts on Xylan/PVA Glu vapor cross-linked and Xylan/PVA/Glu blend nanofibrous scaffolds. The observed results showed that the mechanical properties (72 %) and fibroblast proliferation significantly increased up to 23 % (P < 0.05) in 48 h Glu vapor cross-linked nanofibers compared to 24 h Glu vapor cross-linked Xylan/PVA nanofibers. The present study may prove that the natural biodegradable Xylan/PVA nanofibrous scaffolds have good potential for fibroblast adhesion, proliferation and cell matrix interactions relevant for skin tissue regeneration.
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页码:1511 / 1519
页数:8
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