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首页> 外文期刊>Journal of Materials Research >Quantitative assessment of degradation, cytocompatibility, and in vivo bone regeneration of silicon-incorporated magnesium phosphate bioceramics
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Quantitative assessment of degradation, cytocompatibility, and in vivo bone regeneration of silicon-incorporated magnesium phosphate bioceramics

机译:掺硅的磷酸镁生物陶瓷的降解,细胞相容性和体内骨再生的定量评估

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The effects of silicon incorporation on the in vitro and in vivo properties of magnesium phosphate (MgP) bioceramics were studied. Samples were prepared by conventional solid state synthesis method. Scanning electron microscopy and micro-computed tomography (mu-CT) analysis showed that Si doping reduces degradability of MgP. In vitro studies have shown that MG63 cells can attach and proliferate on MgP samples. Live/dead imaging showed that MgP-0.5Si sample had highest cell proliferation, which was also quantitatively confirmed by alamar blue assay. In vivo biocompatibility of MgP ceramics was assessed after implantation in rabbit model. Detailed mu-CT analysis showed new bone tissue formation around the implant after 30 and 90 days. MgP-0.5Si ceramics had 84% bone regeneration compared with 56% for pure MgP ceramics, as confirmed by oxytetracycline labeling. Our finding suggests that Si doping can alter physicochemical properties of MgP ceramics and promotes osseointegration, which can be a useful choice for bone tissue engineering.
机译:研究了硅掺入对磷酸镁(MgP)生物陶瓷的体外和体内特性的影响。通过常规的固态合成方法制备样品。扫描电子显微镜和计算机断层扫描(mu-CT)分析表明,Si掺杂会降低MgP的降解性。体外研究表明,MG63细胞可以附着并增殖在MgP样品上。活/死成像表明,MgP-0.5Si样品具有最高的细胞增殖能力,这也通过阿尔玛蓝测定法得到了定量确认。植入兔模型后评估MgP陶瓷的体内生物相容性。详细的mu-CT分析显示,在30和90天后,植入物周围会形成新的骨组织。土霉素标记证实,MgP-0.5Si陶瓷具有84%的骨再生,而纯MgP陶瓷具有56%的骨再生。我们的发现表明,Si掺杂可以改变MgP陶瓷的物理化学性质并促进骨整合,这对于骨组织工程而言可能是一个有用的选择。

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