2014
DOI: 10.1016/j.jbiotec.2014.07.428
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Chondrogenesis of human umbilical cord-derived mesenchymal stem cells in silk-fibroin/hyaluronic acid scaffolds for cartilage tissue engineering

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“…Combining the properties of natural protein and polysaccharides can be a promising strategy to obtain bioactive materials with a controlled structure in the biomedical field [ 135 , 136 , 137 , 138 , 139 , 140 , 141 , 142 , 143 , 144 , 145 ]. In silk fibroin/hyaluronic acid scaffolds, increasing hyaluronic acid content significantly enhanced the water binding capacity and flexibility [ 140 ].…”
Section: Blendingmentioning
confidence: 99%
“…Combining the properties of natural protein and polysaccharides can be a promising strategy to obtain bioactive materials with a controlled structure in the biomedical field [ 135 , 136 , 137 , 138 , 139 , 140 , 141 , 142 , 143 , 144 , 145 ]. In silk fibroin/hyaluronic acid scaffolds, increasing hyaluronic acid content significantly enhanced the water binding capacity and flexibility [ 140 ].…”
Section: Blendingmentioning
confidence: 99%
“…The human umbilical cord mesenchymal stem cells (HUMSCs) were used as the original cells for iPSC generation because they could be easily harvested from clinical wastes after child delivery. , Compared with other cell sources, collecting HUMSCs is a process of waste recycling. As a type of multipotent stromal cell, HUMSCs enjoy the capability of differentiation into a large number cell types, including fat and cartilage cells, , but they lack the pluripotency of differentiation into all three germ layers as ESCs and iPSCs do. Considering their easy accessibility and self-renewable property, HUMSCs would be desirable parental cells for iPSC generation.…”
Section: Introductionmentioning
confidence: 99%