首页> 外文期刊>Acta biomaterialia >Histological and three-dimensional evaluation of osseointegration to nanostructured calcium phosphate-coated implants.
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Histological and three-dimensional evaluation of osseointegration to nanostructured calcium phosphate-coated implants.

机译:组织学和三维评估的骨整合到纳米结构的磷酸钙涂层植入物。

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摘要

Nanostructures on implant surfaces have been shown to enhance osseointegration; however, commonly used evaluation techniques are probably not sufficiently sensitive to fully determine the effects of this process. This study aimed to observe the osseointegration properties of nanostructured calcium phosphate (CaP)-coated implants, by using a combination of three-dimensional imaging and conventional histology. Titanium implants were coated with stable CaP nanoparticles using an immersion technique followed by heat treatment. Uncoated implants were used as the control. After topographical and chemical characterizations, implants were inserted into the rabbit femur. After 2 and 4weeks, the samples were retrieved for micro-computed tomography and histomorphometric evaluation. Scanning electron microscopy evaluation indicated that the implant surface was modified at the nanoscale by CaP to obtain surface textured with rod-shaped structures. Relative to the control, the bone-to-implant contact for the CaP-coated implant was significantly higher at 4weeks after the implant surgery. Further, corresponding 3-D images showed active bone formation surrounding the implant. 3-D quantification and 2-D histology demonstrated statistical correlation; moreover, 3-D quantification indicated a statistical decrease in bone density in the non-coated control implant group between 2 and 4weeks after the surgery. The application of 3-D evaluation further clarified the temporal characteristics and biological reaction of implants in bone.
机译:植入物表面的纳米结构已显示出可增强骨整合。但是,常用的评估技术可能不够灵敏,无法完全确定此过程的效果。这项研究旨在通过结合三维成像和常规组织学观察纳米结构磷酸钙(CaP)涂层植入物的骨整合特性。使用浸入技术,然后进行热处理,将钛植入物涂有稳定的CaP纳米颗粒。未涂覆的植入物用作对照。经过形貌和化学表征后,将植入物插入兔股骨中。 2周和4周后,取回样品进行显微计算机断层扫描和组织形态计量学评估。扫描电子显微镜评估表明,植入物表面被CaP修饰成纳米级,以获得具有杆状结构的表面。相对于对照组,CaP涂层植入物在植入物手术后4周的骨与植入物接触明显更高。此外,相应的3D图像显示了植入物周围的活跃骨形成。 3-D定量和2-D组织学显示出统计学相关性;此外,3-D定量显示在手术后2至4周之间,未涂覆的对照组植入物的骨密度统计下降。 3-D评估的应用进一步阐明了植入物在骨骼中的时间特性和生物学反应。

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