Electrospun Nanofibers of Hydroxyapatite / Collagen / Chitos
發(fā)布時(shí)間:2021-05-18 05:54
Bone tissue engineering, aiming at developing bone substitutes for repair and regeneration of bone defects instead of using autologous bone grafts,has attracted wide attention in the field of tissue engineering and regenerative medicine.Developing biomimetic biomaterial scaffolds able to regulate osteogenic differentiation of stem cells could be a promising strategy to improve the therapeutic efficacy.In this study, electrospun composite nanofibers of hydroxyapatite / collagen / chitosan( HAp / ...
【文章來(lái)源】:Journal of Donghua University(English Edition). 2014,31(05)EI
【文章頁(yè)數(shù)】:5 頁(yè)
【文章目錄】:
Introduction
1 Experimental
1.1 Materials
1.2 Fabrication of HAp/Col/CTS nanofibers
1.3 Cell culture with scaffolds
1.4 Cell proliferation assay
1.5 Alkaline phosphatase (ALP) activity
1.6 Col quantification assay
1.7 Biomineralization assay
1.8 Statistical analysis
2 Results and Discussion
2.1 Morphology observation
2.2 Proliferation of BMSCs
2.3 Osteogenic differentiation of BMSCs
2.4 Biomineralization of the differentiated osteoblasts
3 Conclusions
本文編號(hào):3193243
【文章來(lái)源】:Journal of Donghua University(English Edition). 2014,31(05)EI
【文章頁(yè)數(shù)】:5 頁(yè)
【文章目錄】:
Introduction
1 Experimental
1.1 Materials
1.2 Fabrication of HAp/Col/CTS nanofibers
1.3 Cell culture with scaffolds
1.4 Cell proliferation assay
1.5 Alkaline phosphatase (ALP) activity
1.6 Col quantification assay
1.7 Biomineralization assay
1.8 Statistical analysis
2 Results and Discussion
2.1 Morphology observation
2.2 Proliferation of BMSCs
2.3 Osteogenic differentiation of BMSCs
2.4 Biomineralization of the differentiated osteoblasts
3 Conclusions
本文編號(hào):3193243
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