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生物启发型碳化硅陶瓷的细胞相容性。

Cytocompatibility of bio-inspired silicon carbide ceramics.

机构信息

Applied Physics Department, University of Vigo, Campus Lagoas-Marcosende, 36310 Vigo, Spain.

出版信息

J Biomed Mater Res B Appl Biomater. 2010 Oct;95(1):177-83. doi: 10.1002/jbm.b.31700.

Abstract

Due to its good mechanical and biochemical properties and, also, because of its unique interconnected porosity, bio-inspired silicon carbide (bioSiC) can be considered as a promising material for biomedical applications, including controlled drug delivery devices and tissue engineering scaffolds. This innovative material is produced by molten-Si infiltration of carbon templates, obtained by controlled pyrolysis of vegetable precursors. The final SiC ceramic presents a porous-interconnected microstructure that mimics the natural hierarchical structure of bone tissue and allows the internal growth of tissue, as well as favors angiogenesis. In the present work, the in vitro cytocompatibility of the bio-inspired SiC ceramics obtained, in this case, from the tree sapelli (Entandrophragma cylindricum) was evaluated. The attachment, spreading, cytoskeleton organization, proliferation, and mineralization of the preosteoblastic cell line MC3T3-E1 were analyzed for up to 28 days of incubation by scanning electron microscopy, interferometric profilometry, confocal laser scanning microscopy, MTT assay, as well as red alizarin staining and quantification. Cells seeded onto these ceramics were able to attach, spread, and proliferate properly with the maintenance of the typical preosteoblastic morphology throughout the time of culture. A certain level of mineralization on the surface of the sapelli-based SiC ceramics is observed. These results demonstrated the cytocompatibility of this porous and hierarchical material.

摘要

由于其良好的机械和生化性能,以及独特的互联多孔性,生物启发碳化硅(bioSiC)可以被认为是一种有前途的生物医学应用材料,包括控制药物输送装置和组织工程支架。这种创新材料是通过熔融硅渗透碳模板生产的,碳模板是通过植物前体的受控热解获得的。最终的 SiC 陶瓷呈现出多孔互联的微观结构,模仿了天然骨组织的层次结构,允许组织内部生长,并有利于血管生成。在本工作中,评估了从树 sapelli(Entandrophragma cylindricum)获得的生物启发 SiC 陶瓷的体外细胞相容性。通过扫描电子显微镜、干涉轮廓术、共聚焦激光扫描显微镜、MTT 测定以及茜素红染色和定量分析,分析了前成骨细胞系 MC3T3-E1 的附着、铺展、细胞骨架组织、增殖和矿化情况,培养时间长达 28 天。接种到这些陶瓷上的细胞能够正常附着、铺展和增殖,并在整个培养过程中保持典型的前成骨细胞形态。在 sapelli 基 SiC 陶瓷的表面观察到一定程度的矿化。这些结果证明了这种多孔和层次结构材料的细胞相容性。

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