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丝素蛋白溶液诱导成骨分化及其性能评价
引用本文:易兵成,张会兰,余哲泡,袁卉华,王先流,沈炎冰,包佳煜,娄向新,张彦中. 丝素蛋白溶液诱导成骨分化及其性能评价[J]. 中国组织工程研究, 2016, 20(52): 7788-7795. DOI: 10.3969/j.issn.2095-4344.2016.52.005
作者姓名:易兵成  张会兰  余哲泡  袁卉华  王先流  沈炎冰  包佳煜  娄向新  张彦中
作者单位:东华大学化学化工与生物工程学院,上海市 201620
基金项目:国家自然科学基金面上项目(51073032,31570969);上海市科委基础研究重点项目(14JC1490100)
摘    要:


关 键 词:生物材料  骨生物材料  丝素蛋白  骨髓间充质干细胞  细胞相容性  增殖  成骨分化  国家自然科学基金  
收稿时间:2016-09-25

Osteoinductivity and performance of silk fibroin solution
Yi Bing-cheng,Zhang Hui-lan,Yu Zhe-pao,Yuan Hui-hua,Wang Xian-liu,Shen Yan-bing,Bao Jia-yu,Lou Xiang-xin,Zhang Yan-zhong. Osteoinductivity and performance of silk fibroin solution[J]. Chinese Journal of Tissue Engineering Research, 2016, 20(52): 7788-7795. DOI: 10.3969/j.issn.2095-4344.2016.52.005
Authors:Yi Bing-cheng  Zhang Hui-lan  Yu Zhe-pao  Yuan Hui-hua  Wang Xian-liu  Shen Yan-bing  Bao Jia-yu  Lou Xiang-xin  Zhang Yan-zhong
Affiliation:College of Chemistry, Chemical Engineering & Biotechnology, Donghua University, Shanghai 201620, China
Abstract:
BACKGROUND: Silk fibroin, as a kind of high-performance biomaterial, has been widely used to construct scaffolds in bone tissue engineering. However, whether silk fibroin itself holds osteoinductive ability has not been reported yet.OBJECTIVE: To investigate the impact of different concentrations of silk fibroin solution on the proliferation and differentiation of rat bone marrow mesenchymal stem cells (BMSCs) in vitro. METHODS: Silk fibroin and BMSCs were respectively isolated from silkworm cocoon and rat tibia, and were identified. Then, BMSCs were cultured in different concentrations of silk fibroin solution (0.01%, 0.05% and 0.1%), and the cell proliferation and the alkaline phosphatase activity were detected at different time points. RESULTS AND CONCLUSION: FTIR spectra of the sample extracted from silkworm cocoon showed distinct absorption peaks at 1 653 (amide I), 1 530.5 (amide II) and 1 212.3 cm-1 (amide III), which could be confirmed to be silk fibroin. Thus generated BMSCs showed long fusiform or astral morphology, positive for representative markers (CD29, CD44 and CD90) relating to mesenchymal stem cells, and could differentiate into osteocytes, chondrocytes and adipocytes under specific induction conditions, which further confirmed the extracted cells were BMSCs. Compared with the control group (without silk fibroin), 0.05% silk fibroin not only significantly promoted the cell adhesion, migration and proliferation, but also enhanced the alkaline phosphatase activity (P < 0.01). With the increasing of the silk fibroin concentrations, the osteodifferentiation capacity of the BMSCs was progressively improved within the range of 0-0.05% and then declined at 0.01% of silk fibroin solutions. These results suggest that silk fibroin can promote osteogenesis, thus providing scientific evidence for developing silk fibroin-based tissue-engineered scaffolds.
Keywords:Bone Marrow  Mesenchymal Stem Cells  Silk  Biocompatible Materials  Tissue Engineering  
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