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Characterization and bioactivity of nano-submicro octacalcium phosphate/gelatin composite

机译:纳米亚微米八磷酸钙/明胶复合材料的表征和生物活性

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摘要

The present study was designed to investigate the physicochemical and bioactive properties of a nano-submicro sized octacalcium phosphate (OCP)-dispersed gelatin (Gel) composite (nano-submicro OCP/Gel) used as a bone substitute material in various bone defects. Well-grown, synthesized OCP was mechanically ground from 100 to 300 μm-sieved granules to particles that were approximately 500 nm in size. Then, 50wt% of the nano-submicro OCP was mixed with porcine skin-derived acid extracted gelatin. The mixture was molded and lyophilized and then subjected to dehydrothermal crosslinking. X-ray diffraction (XRD) and Fourier transform infrared (FTIR) spectroscopy showed that the structure of OCP was retained even after mechanical grinding to a nano-submicro scale level as well as inclusion in the Gel matrix. The bioactivity of nano-submicro OCP/Gel was examined by immersing the composite in simulated body fluid (SBF) for 7 days and by implanting it in rat critical-sized calvaria defects for 8 weeks. The nano-submicro OCP tended to convert to low crystalline hydroxyapatite (HA) in SBF as assessed by XRD. The nano-submicro OCP/Gel exhibited osteoconductivity in vivo, yielding new bone formation that was closely associated with the implanted composite. These results suggest that the nano-submicro OCP/Gel composite exhibits similar osteoconductivity as observed in other OCP-based materials previously reported and could be used as a bone substitute material for repairing various defects in bone.
机译:本研究旨在研究纳米亚微米级八磷酸钙(OCP)分散的明胶(Gel)复合材料(nano-submicro OCP / Gel)的物理化学和生物活性特性,该复合物在各种骨缺损中用作骨替代材料。将生长良好的合成OCP从100到300μm筛分的颗粒机械研磨成大小约为500 nm的颗粒。然后,将50wt%的纳米亚微OCP与猪皮肤来源的酸提取明胶混合。将混合物模塑并冻干,然后进行脱氢交联。 X射线衍射(XRD)和傅里叶变换红外(FTIR)光谱表明,即使在机械研磨至纳米亚微米级水平以及包含在凝胶基质中之后,OCP的结构仍得以保留。通过将复合材料浸泡在模拟体液(SBF)中7天,并将其植入大鼠临界大小的颅骨缺损8周,检查了纳米亚微OCP / Gel的生物活性。通过XRD评估,纳米亚微米OCP倾向于在S​​BF中转化为低结晶羟基磷灰石(HA)。纳米亚微OCP / Gel在体内表现出骨传导性,产生与植入的复合材料密切相关的新骨形成。这些结果表明,纳米亚微米OCP / Gel复合材料表现出与先前报道的其他基于OCP的材料相似的骨电导率,并且可以用作修复骨中各种缺陷的骨替代材料。

著录项

  • 来源
    《Applied Surface Science》 |2013年第1期|138-145|共8页
  • 作者单位

    Division of Craniofacial Function Engineering, Tohoku University Graduate School of Dentistry, Sendai, Japan,Division of Oral and Maxillofacial Surgery, Tohoku University Graduate School of Dentistry, Sendai, Japan,Division of Oral Surgery, Nagasaki University Graduate School of Dentistry, Japan;

    Division of Craniofacial Function Engineering, Tohoku University Graduate School of Dentistry, Sendai, Japan;

    Division of Craniofacial Function Engineering, Tohoku University Graduate School of Dentistry, Sendai, Japan,Osaka Dental University, Institute of Dental Research, Japan;

    Division of Craniofacial Function Engineering, Tohoku University Graduate School of Dentistry, Sendai, Japan,Division of Advanced Prosthetic Dentistry, Tohoku University Graduate School of Dentistry, Sendai, Japan,Department of Oral Medicine, Infection, and Immunity, Harvard School of Dental Medicine, USA;

    Division of Oral and Maxillofacial Surgery, Tohoku University Graduate School of Dentistry, Sendai, Japan;

    Division of Oral and Maxillofacial Surgery, Tohoku University Graduate School of Dentistry, Sendai, Japan;

    Division of Oral and Maxillofacial Surgery, Tohoku University Graduate School of Dentistry, Sendai, Japan;

    Division of Craniofacial Function Engineering, Tohoku University Graduate School of Dentistry, Sendai, Japan;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Nano-submicro octacalcium phosphate; Gelatin; Hydroxyapatite; Bioactivity; Bone regeneration;

    机译:纳米亚微米八磷酸钙;明胶;羟基磷灰石;生物活性骨再生;

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