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INCREASED OSTEOBLAST FUNCTION ON NANOFIBERED ALUMINA

机译:纳米纤维氧化铝上的成骨细胞功能增强

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摘要

A novel nanosize form of alumina fibers has been found to be bioactive. A separate study done at Argonide Corporation (not yet published) demonstrated that such fibers attracted and retained virus particles. In this study, the adhesion and proliferation of osteoblasts (or bone-forming cells) to these fibers was completed in vitro. Compacts of such fibers showed improved osteoblast adhesion and proliferation as compared to notable orthopedic/dental implant materials such as commercially pure titanium and hydroxyapatite. Osteoblast adhesion on fiber compacts was determined as a function of heat treatment of the fibers, demonstrating that heat treatment at 400℃ was optimal. Since adhesion and proliferation are crucial prerequisites for the deposition of calcium-containing mineral, the demonstrated activity of osteoblasts on the novel alumina fibers presents an opportunity for using them in the next-generation of orthopedic/dental implant prostheses. Such fibers could act as scaffolding in new formulations to enhance bone synthesis that is critical in the clinical success of bone prostheses.
机译:已经发现新型纳米尺寸的氧化铝纤维具有生物活性。在Argonide公司进行的另一项研究(尚未发表)表明,这种纤维吸引并保留了病毒颗粒。在这项研究中,在体外完成了成骨细胞(或成骨细胞)对这些纤维的粘附和增殖。与著名的矫形/牙科植入物材料(例如商业纯钛和羟基磷灰石)相比,此类纤维的压坯显示出改善的成骨细胞粘附和增殖。确定成骨细胞在纤维压坯上的附着力是纤维热处理的函数,表明在400℃进行热处理是最佳的。由于粘附和增殖是沉积含钙矿物质的关键先决条件,因此,在新型氧化铝纤维上表现出的成骨细胞活性为将其用于下一代骨科/牙科植入物假体提供了机会。这样的纤维可以在新配方中充当支架,以增强骨骼合成,这对骨骼修复的临床成功至关重要。

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