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首页> 外文期刊>Journal of Materials Science >Electrophoretic deposition of spray-dried Sr-containing mesoporous bioactive glass spheres on glass-ceramic scaffolds for bone tissue regeneration
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Electrophoretic deposition of spray-dried Sr-containing mesoporous bioactive glass spheres on glass-ceramic scaffolds for bone tissue regeneration

机译:喷雾干燥的含Sr的介孔生物活性玻璃球体的电泳沉积在玻璃 - 陶瓷支架上进行骨组织再生

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摘要

The development of strong and bioactive scaffolds with a trabecular architecture mimicking that of cancellous bone is one of the major and still partially unmet challenges of modern biomaterials science and regenerative medicine. In this work, we exploited the electrophoretic process to deposit highly bioactive particles of mesoporous glass on the struts of a mechanically strong but almost inert glass-ceramic scaffold produced by the sponge replica method. A SiO2-CaO-SrO mesoporous glass was innovatively synthesized by aerosol-assisted spray drying in order to obtain spherical particles with high control over shape and morphology. The glass microspheres underwent morphological, chemical and textural characterizations, and the release kinetics of strontium-known for its ability to stimulate new bone formation in osteoporotic bone-were assessed upon immersion in simulated body fluid. Sr-containing mesoporous glass particles electrophoretically deposited on the scaffold walls retained a fast apatite-forming ability and formed a highly bioactive coating on the macroporous substrate without occluding the pores. The meso-macroporous hierarchical constructs produced in this research could be proposed as bioactive and mechanically strong implants for potential applications in bone tissue engineering.
机译:强大的生物活跃的脚手架的发展,具有模棱两可建筑,模仿松质骨骼是现代生物材料和再生医学的主要且仍然未满足的挑战之一。在这项工作中,我们利用电泳方法在机械强度但几乎惰性的玻璃 - 陶瓷支架上沉积高度生物活性颗粒的介孔玻璃,但几乎惰性玻璃 - 陶瓷支架由海绵复制品制备。通过气溶胶辅助喷雾干燥创新合成SiO2-CaO-SRO介孔玻璃,以获得具有高控制形状和形态的球形颗粒。玻璃微球经历了形态学,化学和纹理表征,并且在浸入模拟体液中评估了溶液刺激骨质疏松骨中新骨形成的能力的释放动力学。含Sr的中孔玻璃颗粒在支架壁上电泳沉积在支架壁上保持快速磷灰石形成能力,并在大孔基材上形成高度生物活性涂层而不堵塞孔。本研究中生产的中间巨孔等级构建体可以提出作为生物活性和机械强的植入物,用于骨组织工程中的潜在应用。

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  • 来源
    《Journal of Materials Science》 |2017年第15期|共12页
  • 作者单位

    Politecn Torino Dept Appl Sci &

    Technol Corso Duca Abruzzi 24 I-10129 Turin Italy;

    Politecn Torino Dept Appl Sci &

    Technol Corso Duca Abruzzi 24 I-10129 Turin Italy;

    Politecn Torino Dept Appl Sci &

    Technol Corso Duca Abruzzi 24 I-10129 Turin Italy;

    Politecn Torino Dept Appl Sci &

    Technol Corso Duca Abruzzi 24 I-10129 Turin Italy;

    Politecn Torino Dept Appl Sci &

    Technol Corso Duca Abruzzi 24 I-10129 Turin Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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