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首页> 外文期刊>Materials science & engineering >Freeze-casting for PLGA/carbonated apatite composite scaffolds: Structure and properties
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Freeze-casting for PLGA/carbonated apatite composite scaffolds: Structure and properties

机译:PLGA /碳酸磷灰石复合支架的冷冻浇铸:结构和性能

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摘要

This paper focuses on the fabrication of three-dimensional porous PLGA-biomimetic carbonated apatite composite scaffolds by freeze-casting and using dimethyl carbonate as a solvent Several charge/polymer ratios were tested in order to finely understand the influence of the filler rate on the scaffold porosity and mechanical and degradation properties using complementary characterization techniques (SEM, mercury porosimetry and X-ray microtomography). It was demonstrated that the apatite ratio within the composite scaffold has a strong influence in terms of architecture, material cohesion, mechanical properties and in vitro degradation properties. An optimum biomimetic apatite ratio was reached to combine good mechanical properties (higher rigidity) and material cohesion. In vitro degradation studies showed that higher apatite filler rates limited PLGA degradation and enhanced the hydrophilicity of the scaffolds which is expected to improve the biological properties of the scaffolds in addition to the bioactivity related to the presence of the apatite analogous to bone mineral.
机译:本文重点研究了通过冷冻铸造并使用碳酸二甲酯作为溶剂制造三维多孔PLGA仿生碳酸磷灰石复合支架的方法,测试了几种电荷/聚合物比率,以更好地了解填充率对支架的影响孔隙率以及机械和降解特性,使用互补的表征技术(SEM,水银孔隙率法和X射线显微断层扫描)。已经证明,复合支架内的磷灰石比率在结构,材料内聚力,机械性能和体外降解性能方面具有强烈的影响。达到了最佳的仿生磷灰石比例,以结合良好的机械性能(较高的刚度)和材料内聚力。体外降解研究表明,较高的磷灰石填料速率限制了PLGA的降解并增强了支架的亲水性,除了与存在类似于骨矿物质的磷灰石有关的生物活性外,有望改善支架的生物学特性。

著录项

  • 来源
    《Materials science & engineering 》 |2017年第8期| 731-738| 共8页
  • 作者单位

    CIRIMAT, Université de Toulouse, CNRS, INFT, UPS, ENSIACET, 4 allée Emile Monso, CS 44362,31030 Toulouse cedex 4, France ,PUCRS, GEPSI-LMN, Porto Alegre, Brazil;

    CIRIMAT, Université de Toulouse, CNRS, INFT, UPS, ENSIACET, 4 allée Emile Monso, CS 44362,31030 Toulouse cedex 4, France;

    CIRIMAT, Université de Toulouse, CNRS, INFT, UPS, ENSIACET, 4 allée Emile Monso, CS 44362,31030 Toulouse cedex 4, France;

    CIRIMAT, Université de Toulouse, CNRS. INPT, UPS, Université Paul Sabatier, Faculté de Pharmacie, 35 Chemin des Maraichers, 31062 Toulouse cedex 9, France;

    CIRIMAT, Université de Toulouse, CNRS, INPT, UPS, Université Toulouse 3 Paul Sabatier, Bât CIRIMAT, 118, Route de Narbonne, 31062 Toubuse cedex 9, France;

    CIRIMAT, Université de Toulouse, CNRS, INPT, UPS, Université Toulouse 3 Paul Sabatier, Bât CIRIMAT, 118, Route de Narbonne, 31062 Toubuse cedex 9, France;

    CIRIMAT, Université de Toulouse, CNRS, INFT, UPS, ENSIACET, 4 allée Emile Monso, CS 44362,31030 Toulouse cedex 4, France;

    PUCRS, GEPSI-LMN, Porto Alegre, Brazil;

    CIRIMAT, Université de Toulouse, CNRS, INFT, UPS, ENSIACET, 4 allée Emile Monso, CS 44362,31030 Toulouse cedex 4, France;

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

    Porous scaffolds; Composite; PLGA; Carbonated apatite; Bone engineering;

    机译:多孔支架;综合;PLGA;碳酸磷灰石;骨工程;

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