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首页> 外文期刊>Journal of biomedical materials research, Part A >Microtopography of titanium suppresses osteoblastic differentiation but enhances chondroblastic differentiation of rat femoral periosteum-derived cells.
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Microtopography of titanium suppresses osteoblastic differentiation but enhances chondroblastic differentiation of rat femoral periosteum-derived cells.

机译:钛的微形貌可抑制成骨细胞分化,但可增强大鼠股骨骨膜来源细胞的软骨成胶细胞分化。

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Despite the clinical fact that endosseous titanium implants directly contacts periosteum, the behavior and response of the periosteum-derived cells to surface topography of titanium have rarely been studied. This study examines the effect of titanium surface microtopography on osteoblastic and possibly-modulated chondroblastic phenotypes of femoral periosteum-derived cells. Rat femoral periosteum-derived cells were cultured on either relatively smooth, machined titanium surface or acid-etched, micro-roughened titanium surface. The osteoblastic gene expressions, including collagen I, osteopontin and osteocalcin, were downregulated on the acid-etched surface, compared with the machined surface. Alkaline phosphatase and mineralization activities on the acid-etched surface were approximately 20% of those on the machined surface. Instead, chondroblastic specific genes, including collagen II and IX, and sox 9, were exclusively expressed or highly upregulated on the acid-etched surface. Alcian blue stain revealed an extensive deposition of glycosaminoglycan on the acid-etched surface. The cultured matrix on the acid-etched surface lacked the submicron globular structures that were extensively seen on the machined surface, and contained a remarkably increased percentage of sulfur relative to calcium compared with the culture on the machined surface. These results indicated that titanium microroughness suppresses the osteoblastic phenotype and induces or at least considerably enhances the chondroblastic phenotype of the periosteal cells, suggesting the unique role of titanium surface topography in regulating the periosteal cell differentiation. The suppressive effect of titanium microroughness on the periosteal cells toward the osteoblastic linage was contrasted to the known promotive effect on the bone marrow-derived osteoblasts.
机译:尽管临床上骨内钛植入物直接接触骨膜,但是很少研究骨膜来源细胞对钛表面形貌的行为和反应。这项研究检查了钛表面微形貌对股骨骨膜来源细胞的成骨细胞和可能调节的软骨成肌表型的影响。将大鼠股骨骨膜来源的细胞培养在相对光滑的机加工钛表面或经酸蚀刻的微粗糙钛表面上。与机械加工的表面相比,酸蚀表面上的成骨细胞基因表达(包括胶原蛋白I,骨桥蛋白和骨钙蛋白)被下调。酸蚀表面的碱性磷酸酶和矿化活性约为机械加工表面的20%。取而代之的是,在酸蚀的表面上,软骨母细胞特异的基因,包括胶原蛋白II和IX,以及sox 9,被专门表达或高度上调。阿尔辛蓝色染色显示糖胺聚糖在酸蚀表面上大量沉积。在酸蚀表面上培养的基质缺乏在加工表面上广泛看到的亚微米球形结构,并且与在加工表面上的培养相比,其相对于钙的硫百分比显着增加。这些结果表明钛微粗糙度抑制成骨细胞表型并诱导或至少显着增强骨膜细胞的软骨细胞表型,表明钛表面形貌在调节骨膜细胞分化中的独特作用。钛微粗糙度对成骨细胞向骨膜细胞的骨膜细胞的抑制作用与已知的对源自骨髓的成骨细胞的促进作用相反。

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