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Influence of nanogram size of ZrO2 and Al2O3 ceramics on biological response of cells

机译:ZrO2和Al2O3陶瓷纳米尺寸对细胞生物响应的影响

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The influence of the grain size of alumina and zirconia ceramics on the spreading and adhesion of MG63 cell lines was investigated. Single-component ceramics and layered composite ceramics were prepared by electrophoretic deposition, uniaxial pressing and sintering. The grain size of zirconia was 100 nm to 2.7 μm and that of alumina was 0.5 μm to 1.5 urn. Subsequently, sample surfaces were polished and thermally etched. Biological tests of adhesion (0.5 to 8 h) were used to evaluate the influence of grain size on biological response. The highest cell spreading and adhesion was obtained for ZrO2 ceramics with an average grain size of 100 and 120 nm. The cell selection was observed on layered ZrO2/Al2O3 composites. The cells predominantly adhered to ZrO2 layers. The results showed a positive influence of nanostructured ceramic surfaces on biological behaviour of MG63 cells.
机译:研究了氧化铝和氧化锆陶瓷晶粒尺寸对MG63细胞系的扩散和粘附的影响。通过电泳沉积,单轴压制和烧结制备单组分陶瓷和层状复合陶瓷。氧化锆的晶粒尺寸为100nm至2.7μm,氧化铝为0.5μm至1.5瓮。随后,抛光样品表面并热蚀刻。粘附(0.5至8小时)的生物学试验用于评估晶粒尺寸对生物反应的影响。为ZrO2陶瓷获得最高的电池扩散和粘附,平均晶粒尺寸为100和120nm。在层状ZrO2 / Al2O3复合材料上观察到细胞选择。主要粘附到ZrO2层中的细胞。结果表明纳米结构陶瓷表面对Mg63细胞生物学行为的正影响。

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