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纤维粘连蛋白对部分脱蛋白骨细胞相容性影响研究 被引量:3
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作者 王福科 刘流 +3 位作者 代晓明 李逸松 颜光前 徐宏慧 《昆明医学院学报》 2010年第1期9-14,共6页
目的研究纤维粘连蛋白(fibronectin,FN)对细胞在部分脱蛋白骨(partially deproteinised bone,PDPB)支架材料上的粘附、增殖的影响,为体内构建组织工程骨提供理论依据.方法(1)用猪椎骨制备部分脱蛋白骨,纤维粘连蛋白修饰部分脱蛋白骨的... 目的研究纤维粘连蛋白(fibronectin,FN)对细胞在部分脱蛋白骨(partially deproteinised bone,PDPB)支架材料上的粘附、增殖的影响,为体内构建组织工程骨提供理论依据.方法(1)用猪椎骨制备部分脱蛋白骨,纤维粘连蛋白修饰部分脱蛋白骨的细胞相容性制成部分脱蛋白生物骨,扫描电镜观察修饰过的部分脱蛋白生物骨表面情况;(2)取5×106/mL浓度脂肪干细胞接种部分脱蛋白骨和部分脱蛋白生物骨片,MTT法检测吸光度,评价纤维粘连蛋白脂肪干细胞在PDPB生长影响.结果(1)猪椎骨制备部分脱蛋白骨孔隙分布均匀,由大量的羟基磷灰石纤维编织而成;部分脱蛋白生物骨表面可见大量颗粒状蛋白结晶.(2)部分脱蛋白骨细胞增殖曲线呈"S"形,部分脱蛋白生物骨细胞增殖曲线失去"S"形,第10天均达到高峰,各分组之间差异有统计学意义(P<0.001).结论纤维粘连蛋白能促进细胞在PDPB支架材料上的增殖和粘附,改善部分脱蛋白骨的细胞相容性. 展开更多
关键词 部分脱蛋白生物骨 纤维粘连蛋白 部分脱蛋白骨 细胞相容性
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Strength and fatigue properties of three-step sintered dense nanocrystal hydroxyapatite bioceramics 被引量:4
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作者 Wen-Guang GUO Zhi-Ye QIU +5 位作者 Han CUI Chang-Ming WANG Xiao-Jun ZHANG In-Seop LEE Yu-Qi DONG Fu-Zhai CUI 《Frontiers of Materials Science》 SCIE CSCD 2013年第2期190-195,共6页
Dense hydroxyapatite (HA) ceramic is a promising material for hard tissue repair due to its unique physical properties and biologic properties. However, the brittleness and low compressive strength of traditional HA... Dense hydroxyapatite (HA) ceramic is a promising material for hard tissue repair due to its unique physical properties and biologic properties. However, the brittleness and low compressive strength of traditional HA ceramics limited their applications, because previous sintering methods produced HA ceramics with crystal sizes greater than nanometer range. In this study, nano-sized HA powder was employed to fabricate dense nanocrystal HA ceramic by high pressure molding, and followed by a three-step sintering process. The phase composition, microstructure, crystal dimension and crystal shape of the sintered ceramic were examined by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Mechanical properties of the HA ceramic were tested, and cytocompatibility was evaluated. The phase of the sintered ceramic was pure HA, and the crystal size was about 200 nm. The compressive strength and elastic modulus of the HA ceramic were comparable to human cortical bone, especially the good fatigue strength overcame brittleness of traditional sintered HA ceramics. Cell attachment experiment also demonstrated that the ceramics had a good cytocompatibility. 展开更多
关键词 nanocrystal hydroxyapatite ceramic three-step sintering MECHANICALPROPERTY fatigue strength cytocom patibility
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