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Characterization of nickel-doped biphasic calcium phosphate/graphene nanoplatelet composites for biomedical application

机译:镍掺杂双相磷酸钙/石墨烯纳米片复合材料的表征,用于生物医学应用

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摘要

The effect of the addition of an ionic dopant to calcium phosphates for biomedical applications requires specific research due to the essential roles played in such processes. In the present study, the mechanical and biological properties of Ni-doped hydroxyapatite (HA) and Ni-doped HA mixed with graphene nanoplatelets (GNPs) were evaluated. Ni (3 wt.% and 6 wt.%)-doped HA was synthesized using a continuous precipitation method and calcined at 900 ℃ for 1 h. The GNP (0.5-2 wt.%)-reinforced 6% Ni-doped HA (Ni6) composite was prepared using rotary ball milling for 15 h. The sintering process was performed using hot isostatic pressing at processing con-ditionsofll50℃ and 160 MPa with a 1-h holding time. The results indicated that the phase compositions and structural features of the products were noticeably affected by the Ni and GNPs. The mechanical properties of Ni6 and 1.5Ni6 were increased by 55% and 75% in hardness, 59% and 163% in fracture toughness and 120% and 85% in elastic modulus compared with monolithic HA, respectively. The in-vitro biological behavior was investigated using h-FOB osteoblast cells in 1, 3 and 5 days of culture. Based on the osteoblast results, the cyto-toxicity of the products was indeed affected by the Ni doping. In addition, the effect of GNPs on the growth and proliferation of osteoblast cells was investigated in Ni6 composites containing different ratios of GNPs, where 1.5 wt% was the optimum value.
机译:对于生物医学应用而言,向磷酸钙中添加离子掺杂剂的效果由于在此类过程中起着至关重要的作用,因此需要进行专门研究。在本研究中,评估了掺Ni的羟基磷灰石(HA)和掺Ni的HA与石墨烯纳米片(GNPs)的机械和生物学性能。采用连续沉淀法合成了掺杂Ni(3wt。%和6wt。%)的HA,并在900℃下煅烧1h。使用旋转球磨15小时来制备GNP(0.5-2重量%)增强的6%Ni掺杂的HA(Ni6)复合材料。烧结过程是在温度为50℃,160 MPa的条件下,通过热等静压进行的,保温时间为1小时。结果表明,产物的相组成和结构特征明显受Ni和GNP的影响。与整体HA相比,Ni6和1.5Ni6的机械性能分别提高了55%和75%的硬度,59%和163%的断裂韧性以及120%和85%的弹性模量。在培养的1、3和5天中,使用h-FOB成骨细胞研究了体外生物学行为。根据成骨细胞的结果,产品的细胞毒性确实受到镍掺杂的影响。另外,在含有不同比例的GNP的Ni6复合材料中,研究了GNP对成骨细胞生长和增殖的影响,其中最佳值为1.5重量%。

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  • 来源
    《Materials science & engineering》 |2015年第4期|656-668|共13页
  • 作者单位

    Department of Mechanical Engineering, Faculty of Engineering, University of Malaya, 50603 Kuala Lumpur, Malaysia;

    Tropical Infectious Diseases Research and Education Centre, Department of Medical Microbiology, Faculty of Medicine, University of Malaya, 50603 Kuala Lumpur, Malaysia;

    Advanced Materials Research Center, Materials Engineering Department, Najafabad Branch, Islamic Azad University, Isfahan, Iran;

    Department of Chemistry, Faculty of Science, University of Malaya, Kuala Lumpur 50603, Malaysia,Institute of Nanotechnology& Catalysis Research (NanoCat), University Malaya, 50603 Kuala Lumpur, Malaysia;

    Department of Mechanical Engineering, Faculty of Engineering, University of Malaya, 50603 Kuala Lumpur, Malaysia,Department of Biomedical Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur 50603, Malaysia;

    Department of Physics, Faculty of Science, University of Malaya, Kuala Lumpur 50603, Malaysia;

    Center of Advanced Manufacturing and Material Processing, University of Malaya, 50603 Kuala Lumpur, Malaysia;

    Department of Chemistry, Faculty of Science, University of Malaya, Kuala Lumpur 50603, Malaysia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomaterials; Sintering; Electron microscopy; Fracture and toughness; Graphene nanoplatelet; Biological properties;

    机译:生物材料;烧结;电子显微镜;断裂和韧性;石墨烯纳米片;生物学特性;

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