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Enhanced mechanical and biocompatible properties of strontium ions doped mesoporous bioactive glass

机译:增强锶离子掺杂介孔生物活性玻璃的机械和生物相容性性质

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摘要

Very low (= 0.2%) strontium (Sr) ion doped mesoporous (45S5) bioactive glasses (BG) were synthesized by solgel technique and calcination without using polymers (porogens), mould or other additives. The phases and their functional groups were confirmed by the X-ray diffraction (XRD) and Fourier transform infrared (FTIR) and FTRaman spectroscopy respectively. Sodium calcium phosphate silicate [(Na0.11Ca0.89) (P0.11Si0.89O3)] which is essential for assisting the self-repair process of enamel was formed along with sodium calcium silicate (Na2Ca2Si3O9) phase. Doping of Sr ions (0.2 wt %) enhances the pore volume (96%) and surface area (108%) compared to pristine. Further, interconnected network structures are created exhibiting controlled and sustained drug release (58% in 720 h). The mechanical strength of the Sr doped BG samples increased significantly. The compressive strength of sample (Sr = 0.2 and 0.5 wt %) were 8.1 +/- 0.5 and 11.2 +/- 0.5 MPa with respective percentage increase of 440 and 647% compared to BG. The thermal stability and zeta potential of the Sr doped BG samples increase with considerable variation in the particle size when compared to the pristine. The cell viability and proliferation were also significantly enhanced by the doping of Sr ions which tailor the surface properties as well. The overall results robustly demonstrate for the first time that the very low doping of Sr ions (= 0.2%) in BG, play a major role in engineering the properties viz., mechanical, surface, drug release and cell proliferation making them suitable for multifunctional biomedical applications.
机译:通过溶胶技术和煅烧合成非常低(SR)离子掺杂的介孔(45S5)生物活性玻璃(BG),而不使用聚合物(散孔),模具或其他添加剂。通过X射线衍射(XRD)和傅里叶变换红外(FTIR)和FTRAMAN光谱证实相和其官能团。磷酸钙硅酸钙[(Na0.11ca0.89)(p0.11si0.89O3),其对于辅助搪瓷的自修复过程是必不可少的,并与硅酸钙(Na 2 Cl 2 Si 3O9)相形成。与原始相比,Sr离子的掺杂(0.2wt%)增强孔体积(96%)和表面积(108%)。此外,互连的网络结构是在表现出控制和持续的药物释放(720小时内58%)的。 SR掺杂BG样品的机械强度显着增加。样品的抗压强度(Sr = 0.2和0.5wt%)为8.1 +/- 0.5和11.2 +/- 0.5MPa,与Bg相比,相比百分比的百分比和647%的百分比增加。与原始相比,Sr掺杂BG样品的热稳定性和ζ电位随着粒度的相当大的变化而增加。通过掺杂的Sr离子也显着增强了细胞活力和增殖,该SR离子也是如此。总体结果强大地证明了BG中的SR离子(<= 0.2%)的非常低的掺杂,在工程中发挥了重要作用,在工程中,机械,表面,药物释放和细胞增殖使它们适合多功能生物医学应用。

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  • 来源
    《Composites》 |2020年第1期|108099.1-108099.11|共11页
  • 作者单位

    Anna Univ Crystal Growth Ctr Chennai 600025 Tamil Nadu India;

    Anna Univ Crystal Growth Ctr Chennai 600025 Tamil Nadu India|Univ Madras Natl Ctr Nanosci & Nanotechnol Guindy Campus Chennai 600025 Tamil Nadu India;

    AMET Deemed Be Univ Dept Phys Energy & Biophoton Lab Chennai 603112 Tamil Nadu India|Tamkang Univ Dept Phys Tamsui 25137 Taiwan;

    Cent Leather Res Inst CSIR Madras 600020 Tamil Nadu India;

    Cent Leather Res Inst CSIR Madras 600020 Tamil Nadu India;

    Anna Univ Crystal Growth Ctr Chennai 600025 Tamil Nadu India;

    Interuniv Accelerator Ctr Aruna Asaf Ali Marg New Delhi 110067 India;

    Tamkang Univ Dept Phys Tamsui 25137 Taiwan;

    Anna Univ Crystal Growth Ctr Chennai 600025 Tamil Nadu India;

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

    Bioglass; Raman spectroscopy; Sustained drug release; Bioactivity;

    机译:生物加工;拉曼光谱;持续的药物释放;生物活性;

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