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首页> 外文期刊>Journal of materials science >Biodegradable β-tricalcium phosphate cement with anti-washout property based on chelate-setting mechanism of inositol phosphate
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Biodegradable β-tricalcium phosphate cement with anti-washout property based on chelate-setting mechanism of inositol phosphate

机译:基于磷酸肌醇螯合机理的具有抗冲洗性能的可生物降解的β-三钙磷酸钙水泥

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摘要

Novel biodegradable β-tricalcium phosphate (β-TCP) cements with anti-washout properties were created on the basis of chelate-setting mechanism of inositol phosphate (IP6) using β-TCP powders. The β-TCP powders were ball-milled using ZrO_2 beads for 0-6 h in the IP6 solutions with concentrations from 0 to 10,000 ppm. The chelate-setting β-TCP cement with anti-washout property was successfully fabricated by mixing the β-TCP powder ball-milled in 3,000 ppm IP6 solution for 3 h and 2.5 mass% Na_2HPO_4 solution, and compressive strength of the cement was 13.4 ± 0.8 MPa. An in vivo study revealed that the above cement was directly in contact with host and newly formed bones without fibrous tissue layers, and was resorbed by osteoclast-like cells on the surface of the cement. The chelate-setting β-TCP cement with anti-washout property is promising for application as a novel injectable artificial bone with both biodegradability and osteoconductivity.
机译:基于肌醇磷酸酯(IP6)的螯合定型机理,使用β-TCP粉末创建了具有抗冲洗性能的新型可生物降解的β-磷酸三钙(β-TCP)水泥。使用ZrO_2珠在IP6溶液中以0至10,000 ppm的浓度将β-TCP粉末球磨0-6小时。将球磨的β-TCP粉末在3,000 ppm IP6溶液中研磨3h和2.5质量%的Na_2HPO_4溶液混合,成功制备了具有抗冲刷性的螯合固化β-TCP水泥。水泥的抗压强度为13.4± 0.8兆帕体内研究表明,上述骨水泥直接与宿主和新形成的骨头接触,没有纤维组织层,并且被骨表面上的破骨细胞样细胞吸收。具有抗冲洗性能的螯合型β-TCP水泥有望作为具有生物降解性和骨传导性的新型可注射人造骨应用。

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  • 来源
    《Journal of materials science》 |2013年第6期|1383-1394|共12页
  • 作者单位

    Department of Applied Chemistry, School of Science and Technology, Meiji University, 1-1-1 Higashimita, Tama-ku,Kawasaki 214-8571, Japan,Kanagawa Academy of Science and Technology (KAST), KSP East 404, 3-2-1 Sakado, Takatsu-ku, Kawasaki 213-0012, Japan;

    Department of Applied Chemistry, School of Science and Technology, Meiji University, 1-1-1 Higashimita, Tama-ku,Kawasaki 214-8571, Japan,Kanagawa Academy of Science and Technology (KAST), KSP East 404, 3-2-1 Sakado, Takatsu-ku, Kawasaki 213-0012, Japan;

    Department of Applied Chemistry, School of Science and Technology, Meiji University, 1-1-1 Higashimita, Tama-ku,Kawasaki 214-8571, Japan;

    Department of Applied Chemistry, School of Science and Technology, Meiji University, 1-1-1 Higashimita, Tama-ku,Kawasaki 214-8571, Japan,Kanagawa Academy of Science and Technology (KAST), KSP East 404, 3-2-1 Sakado, Takatsu-ku, Kawasaki 213-0012, Japan;

    Kanagawa Academy of Science and Technology (KAST), KSP East 404, 3-2-1 Sakado, Takatsu-ku, Kawasaki 213-0012, Japan;

    Kanagawa Academy of Science and Technology (KAST), KSP East 404, 3-2-1 Sakado, Takatsu-ku, Kawasaki 213-0012, Japan,Meiji University International Institute for Bio-Resource Research, 1-1-1 Higashimita, Tama-ku, Kawasaki 214-8571,Japan;

    Department of Life Sciences, School of Agriculture,Meiji University, 1-1-1 Higashimita, Tama-ku,Kawasaki 214-8571, Japan;

    Meiji University International Institute for Bio-Resource Research, 1-1-1 Higashimita, Tama-ku, Kawasaki 214-8571,Japan,Department of Life Sciences, School of Agriculture,Meiji University, 1-1-1 Higashimita, Tama-ku,Kawasaki 214-8571, Japan;

    Kanagawa Academy of Science and Technology (KAST), KSP East 404, 3-2-1 Sakado, Takatsu-ku, Kawasaki 213-0012, Japan,Meiji University International Institute for Bio-Resource Research, 1-1-1 Higashimita, Tama-ku, Kawasaki 214-8571,Japan,Department of Life Sciences, School of Agriculture,Meiji University, 1-1-1 Higashimita, Tama-ku,Kawasaki 214-8571, Japan;

    Department of Applied Chemistry, School of Science and Technology, Meiji University, 1-1-1 Higashimita, Tama-ku,Kawasaki 214-8571, Japan,Kanagawa Academy of Science and Technology (KAST), KSP East 404, 3-2-1 Sakado, Takatsu-ku, Kawasaki 213-0012, Japan,Meiji University International Institute for Bio-Resource Research, 1-1-1 Higashimita, Tama-ku, Kawasaki 214-8571,Japan;

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