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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >2-P 2O 5-MgO bioactive composition for bone repair applications]]>
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2-P 2O 5-MgO bioactive composition for bone repair applications]]>

机译:<![CDATA [CDATA [CAO-SIO中铜氧化物掺杂效果的初步调查 2 -P 2 < / CE:INF> O 5 骨修复应用的生物活性组合物]]>

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AbstractA diopside based bioactive system with a nominal composition of xCuO-(45.55-x)CaO-29.44 SiO2-10.28P2O5-14.73 MgO (x=0,1,3 and 5mol%) has been prepared by sol gel technique in the laboratory. X-ray Diffraction, Fourier Transform Infra-Red and Raman Spectroscopy, Field Emission Scanning Electron Microscopy along with Energy Dispersive X-ray Analysis and pH studies have been undertaken on the prepared samples before and after dipping the samples in simulated body fluid. It has been observed that hydroxyapatite layer starts to form with in 24h during immersion in simulated body fluid. Degradation studies have also been employed to check the degradation behavior in Tris-HCl. Dynamic light scattering studies show that particles are mostly agglomerated and have an average size of 356nm. Zeta potential studies have been undertaken to check the surface charge and it has been estimated that samples carry negative charge when dipped in simulated body fluid. Negative surface charge may contribute to attachment and proliferation of osteoblasts. Samples have also shown the antimicrobial properties against theVibro choleraeandEscherichia colipathogens. To check the non-toxic nature of the samples, cell cytotoxic and cell culture studies have been undertaken using the MG-63 cell lines. Samples have shown good response with good percentage viability of the cells in the culture media and hence, provides friendly environment to the growth of cells. The particle size, bioactivity, negative values of zeta potential, antimicrobial properties and good cell viabili
机译:<![cdata [ 抽象 基于巨孔的生物活性系统,具有XCuo-(45.55-x)CaO-29.44 SiO-29.44 SIO 2 -10.28P 2 O 5 -14.73 MgO(x = 0,1,3和5mol%)通过溶胶凝胶技术在实验室中制备。 X射线衍射,傅里叶变换红外线和拉曼光谱,现场发射扫描电子显微镜以及能量分散X射线分析和pH研究已经在浸渍模拟体液中浸渍样品之前和之后在制备的样品上进行。已经观察到羟基磷灰石层在浸入模拟体液中以24小时形成24小时。还采用降解研究来检查Tris-HCl中的降解行为。动态光散射研究表明,颗粒大多数凝聚,平均尺寸为356nm。已经进行了Zeta潜在研究以检查表面电荷,据估计,样品在浸入模拟体液中携带负电荷。负面电荷可能有助于成骨细胞的附着和增殖。样品还针对慢性霍乱(Vibro Cholerae 大肠杆菌病原体)的抗微生物性质。为了检查样品的无毒性,使用Mg-63细胞系已经进行了细胞细胞毒性和细胞培养研究。样品对培养基中细胞的良好活力具有良好的响应,并且因此为细胞的生长提供友好的环境。粒径,生物活性,Zeta电位的阴性值,抗微生物性质和良好的细胞空间

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