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Nano hydroxyapatite-coated implants improve bone nanomechanical properties

机译:纳米羟基磷灰石涂层植入物改善骨骼纳米机械性能

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摘要

Nanostructure modification of dental implants has long been sought as a means to improve osseointegration through enhanced biomimicry of host structures. Several methods have been proposed and demonstrated for creating nanotopographic features; here we describe a nanoscale hydroxyapatite (HA)-coated implant surface and hypothesize that it will hasten osseointegration and improve its quality relative to that of non-coated implants. Twenty threaded titanium alloy implants, half prepared with a stable HA nanoparticle surface and half grit-blasted, acidetched, and heat-treated (HT), were inserted into rabbit femurs. Pre-operatively, the implants were morphologically and topographically characterized. After 3 weeks of healing, the samples were retrieved for histomorphometry. The nanomechanical properties of the surrounding bone were evaluated by nanoindentation. While both implants revealed similar bone-to-implant contact, the nanoindentation demonstrated that the tissue quality was significantly enhanced around the HA-coated implants, validating the postulated hypothesis.
机译:长期以来,一直在寻求对牙科植入物进行纳米结构修饰,作为通过增强宿主结构的仿生性来改善骨整合的方法。已经提出并证明了几种创建纳米形貌特征的方法。在这里,我们描述了一种纳米羟基磷灰石(HA)涂层的植入物表面,并假设与非涂层的植入物相比,它将加速骨整合并改善其质量。将二十个螺纹的钛合金植入物插入兔股骨中,其中一半用稳定的HA纳米颗粒表面制备,一半用喷砂处理,酸蚀和热处理(HT)。术前,对植入物进行形态和地形学表征。愈合3周后,取回样品进行组织形态测定。通过纳米压痕评估周围骨骼的纳米力学性能。虽然两种植入物都显示出相似的骨骼与植入物接触,但纳米压痕表明,HA涂层植入物周围的组织质量显着提高,从而验证了假设。

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