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Effects of surface microtopography of titanium disks on cell proliferation and differentiation of osteoblast-like cells isolated from rat calvariae

机译:钛圆片表面微观形貌对大鼠颅盖骨成骨样细胞增殖和分化的影响

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The surface topography of implant fixture is an important factor affecting the osseointegration. We herein demonstrated the effects of surface microtopography of titanium disks on proliferation and differentiation of osteoblast-like cells isolated from rat calvariae. Titanium disks with machine surface (MS), rough surface (R1) and rough surface combined with small cavities (R2) were used in an in vitro culture system. Rough surfaces (R1 and R2 disks) induced stronger osteoblast proliferation and differentiation (BGP and sclerostin mRNA expressions and calcium content) than the smooth surface (MS disk). Furthermore, surface microtopography of R2 disk, which was rough with small cavities, more strongly induced cell proliferation and mineralized bone matrix production than R1 disk. Our results suggest that surface microtopography influences osteoblast proliferation and differentiation. R2 disk, which is rough with small cavities, may be used in implant fixtures to increase osseointegration.
机译:植入物固定器的表面形貌是影响骨整合的重要因素。我们在本文中证明了钛盘表面微观形貌对分离自大鼠颅盖的成骨样细胞增殖和分化的影响。在体外培养系统中使用具有机械表面(MS),粗糙表面(R1)和粗糙表面与小腔体(R2)结合的钛圆盘。粗糙表面(R1和R2盘)比光滑表面(MS盘)诱导更强的成骨细胞增殖和分化(BGP和硬化蛋白mRNA表达和钙含量)。此外,与R1盘相比,R2盘的表面微观形貌(其粗糙且具有小空腔)更强烈地诱导细胞增殖和矿化的骨基质产生。我们的结果表明表面微观形貌影响成骨细胞的增殖和分化。 R2圆盘粗糙且带有小腔,可用于植入物固定装置中以增加骨整合。

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