口腔医学研究 ›› 2015, Vol. 31 ›› Issue (3): 221-225.

• 基础研究论著 • 上一篇    下一篇

丝素蛋白/左旋聚乳酸支架材料与软骨细胞体外细胞相容性研究

孙莹1, 李正强1, 刘炜炜1, 郑璐2, 韩冰1*   

  1. 1. 吉林大学口腔医院口腔颌面外科 吉林 长春 130021;
    2. 吉林大学化学学院应用化学
  • 收稿日期:2014-08-07 出版日期:2015-03-28 发布日期:2016-04-29
  • 通讯作者: 韩冰,电话:0431-85579316
  • 作者简介:孙莹(1987~ ),女,山东济南人,硕士在读,主要从事口腔颌面外科肿瘤学及损伤的研究。
  • 基金资助:
    吉林省科技厅科研基金资助课题(3D512K513431)

Cytocompatibility Study of Silk Fibroin/poly-L-lactic Acid Scaffold and Chondrocytes in Vitro.

SUN Ying, LI Zheng-qiang, LIU Wei-wei, et al.   

  1. Department of Oral and Maxillofacial Surgery, Hospital of Stomatology, Jilin University, Changchun 130021
  • Received:2014-08-07 Online:2015-03-28 Published:2016-04-29

摘要: 目的:观察静电纺丝支架材料丝素蛋白/左旋聚乳酸(SF/PLLA)的体外细胞相容性,探索其作为软骨组织工程支架材料的可行性,为进一步的体内及动物实验奠定基础。方法:将兔膝关节软骨细胞与丝素蛋白/左旋聚乳酸(SF/PLLA)支架材料复合培养,在第3、7、14天分别作HE染色和阿利新蓝+核固红染色,扫描电镜检验细胞黏着情况,MTT试验检测细胞在支架上的增殖情况。结果:细胞在支架上可以获得良好的粘附,细胞增殖良好,无细胞表型的变化。结论:丝素蛋白/左旋聚乳酸(SF/PLLA)具有良好的细胞相容性,可作为软骨组织工程支架材料。

关键词: 丝素蛋白/左旋聚乳酸(SF/PLLA), 组织工程, 软骨

Abstract: Objective: To lay the foundation for further body and animal experiment, we observe the cytocompatibility on electrostatic spinning scaffold of silk fibroin/poly-L-lactic acid (SF/PLLA) in vitro and explore the feasibility in cartilage tissue engineering scaffolds. Methods: The rabbit knee joint chondrocyte were co-cultured with silk fibroin/poly-L-lactic acid (SF/PLLA) scaffold. Hematoxylin-eosin staining and Alcian blue- nuclear fast red staining were tested on day 3, 7 and 14 respectively. Cell adhesion was tested by scanning electron microscopy (SEM). Cell proliferation was determined by MTT test. Results: Adhesion, proliferation, and growth of chondrocyte derived from rabbit knee joint chondrocytes were great on the surface of silk fibroin/poly-L-lactic acid (SF/PLLA). The chondrocytes cultured in vitro maintained the specific chondrocytes phenotype on the scaffold. Conclusion: Silk fibroin/poly-L-lactic acid (SF/PLLA) scaffold exhibits excellent cytocompatibility, and can be used for cartilage tissue engineering.

Key words: Silk fibroin/poly-L-lactic acid (SF/PLLA), Tissue engineering, Cartilage

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