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首页> 外文期刊>International Journal of Nanomedicine >The role of well-defined nanotopography of titanium implants on osseointegration: cellular and?molecular events in vivo
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The role of well-defined nanotopography of titanium implants on osseointegration: cellular and?molecular events in vivo

机译:钛植入物定义明确的纳米形貌在骨整合中的作用:体内细胞和分子事件

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Purpose: Mechanisms governing the cellular interactions with well-defined nanotopography are not well described in vivo. This is partly due to the difficulty in isolating a particular effect of nanotopography from other surface properties. This study employed colloidal lithography for nanofabrication on titanium implants in combination with an in vivo sampling procedure and different analytical techniques. The aim was to elucidate the effect of well-defined nanotopography on the molecular, cellular, and structural events of osseointegration. Materials and methods: Titanium implants were nanopatterned (Nano) with semispherical protrusions using colloidal lithography. Implants, with and without nanotopography, were implanted in rat tibia and retrieved after 3, 6, and 28 days. Retrieved implants were evaluated using quantitative polymerase chain reaction, histology, immunohistochemistry, and energy dispersive X-ray spectroscopy (EDS). Results: Surface characterization showed that the nanotopography was well defined in terms of shape (semispherical), size (79±6 nm), and distribution (31±2 particles/μm2). EDS showed similar levels of titanium, oxygen, and carbon for test and control implants, confirming similar chemistry. The molecular analysis of the retrieved implants revealed that the expression levels of the inflammatory cytokine, TNF-α , and the osteoclastic marker, CatK , were reduced in cells adherent to the Nano implants. This was consistent with the observation of less CD163-positive macrophages in the tissue surrounding the Nano implant. Furthermore, periostin immunostaining was frequently detected around the Nano implant, indicating higher osteogenic activity. This was supported by the EDS analysis of the retrieved implants showing higher content of calcium and phosphate on the Nano implants. Conclusion: The results show that Nano implants elicit less periimplant macrophage infiltration and downregulate the early expression of inflammatory ( TNF-α ) and osteoclastic ( CatK ) genes. Immunostaining and elemental analyses show higher osteogenic activity at the Nano implant. It is concluded that an implant with the present range of well-defined nanocues attenuates the inflammatory response while enhancing mineralization during osseointegration.
机译:目的:在体内对定义明确的纳米形貌控制细胞相互作用的机制还没有很好的描述。这部分是由于难以将纳米形貌的特定作用与其他表面性质隔离。这项研究结合体内采样程序和不同的分析技术,采用胶体光刻技术对钛植入物进行纳米加工。目的是阐明定义良好的纳米形貌对骨整合的分子,细胞和结构事件的影响。材料和方法:使用胶体光刻技术对钛植入物进行纳米图案化(纳米)加工,使其具有半球形凸起。将具有和不具有纳米形貌的植入物植入大鼠胫骨中,并在3、6和28天后取出。使用定量聚合酶链反应,组织学,免疫组织化学和能量色散X射线光谱法(EDS)对回收的植入物进行评估。结果:表面表征表明,纳米形貌在形状(半球形),尺寸(79±6 nm)和分布(31±2个粒子/μm 2 )方面定义明确。 EDS对测试和对照植入物显示出相似水平的钛,氧和碳,证实了相似的化学性质。回收的植入物的分子分析显示,在粘附到纳米植入物的细胞中,炎性细胞因子TNF-α和破骨细胞标志物CatK的表达水平降低。这与在纳米植入物周围的组织中观察到较少的CD163阳性巨噬细胞相一致。此外,在纳米植入物周围经常检测到骨膜素免疫染色,表明更高的成骨活性。对回收的植入物进行的EDS分析表明,纳米植入物上的钙和磷酸盐含量较高,这证明了这一点。结论:结果表明,纳米植入物引起较少的植入物周围巨噬细胞浸润,并下调了炎症(TNF-α)和破骨细胞(CatK)基因的早期表达。免疫染色和元素分析显示纳米植入物具有更高的成骨活性。结论是,具有当前范围明确的纳米提示的植入物可减轻炎症反应,同时增强骨整合过程中的矿化作用。

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