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首页> 外文期刊>Polymer Degradation and Stability >Influence of calcium phosphates incorporation into poly(lactic-co-glycolic acid) electrospun membranes for guided bone regeneration
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Influence of calcium phosphates incorporation into poly(lactic-co-glycolic acid) electrospun membranes for guided bone regeneration

机译:磷酸钙掺入聚(乳酸共乙醇酸)电纺膜中的影响引导骨再生中的影响

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摘要

In cases of bone critical size defects, a guided bone regeneration (GBR) membrane is used to promote space for bone reconstruction. Calcium phosphates have been widely added to these GBR membranes to increment bioactivity and osteoconduction; however, there is a lack of understanding of their effects on the membranes' properties, other than the biological ones. Therefore, this study developed electrospun membranes of PLGA with additions of HAp (hydroxyapatite):β-TCP (P-tricalcium phosphate) in the proportions of 60:40, 70:30 and 85:15 to evaluate the additions' influence. Results have shown, as expected, that the incorporation of calcium phosphates improved osteoblastic size, spreading and migration into the highly porous membranes. Fibre diameters and crystallinity degrees were influenced differently by each phosphate proportion and their characteristics. The group with the lowest HAp:β-TCP ratio (60:40) had a significant difference in the degradation rate faster (aiding in the optimization of the degradation profile) and was the best in terms of osteoblastic behaviour. Additionally, an unprecedented degradation study has shown that the degradation process increased fibre diameters unexpectedly, a behaviour that was detailed and explained. Taken together, results have shown that the calcium phosphates incorporation, if used pointedly, can tune the membranes' properties and the reconstruction of the anatomical bone.
机译:在骨临界尺寸缺陷的情况下,使用引导骨再生(GBr)膜来促进骨重建空间。磷酸钙已被广泛添加到这些GBR膜中以增量生物活性和疏松疏松骨展;然而,除生物学中,缺乏对其对膜性质的影响的理解。因此,该研究开发了PLGA的电纺膜,加入了HAP(羟基磷灰石):β-TCP(P-磷酸钙),比例为60:40,70:30和85:15,以评估增加的影响。结果如预期所示,磷酸钙的掺入改善了骨细胞尺寸,散布和迁移到高度多孔膜中。通过每种磷酸盐比例及其特征对纤维直径和结晶度进行不同的影响。具有最低HAP的组:β-TCP比率(60:40)在降解速率方面具有显着差异(帮助在降解型材的优化中),并且在成骨细胞的方面是最好的。另外,前所未有的降解研究表明,劣化过程意外增加了纤维直径,这是一种细节和解释的行为。连胜,结果表明,如果尖锐的话,磷酸钙掺入可以调节膜的性质和解剖骨的重建。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2020年第9期|109253.1-109253.12|共12页
  • 作者单位

    Mechanical Engineering Department Federal University of Santa Catarina Florianopolis SC 88040-900 Brazil;

    Mechanical Engineering Department Federal University of Santa Catarina Florianopolis SC 88040-900 Brazil Materials Engineering Special Coordinating Federal University of Santa Catarina Blumenau SC 89036-002 Brazil;

    Cermat Research Croup Federal University of Santa Catarina Florianopolis SC 88040-900 Brazil;

    Chemical and Food Engineering Department Federal University of Santa Catarina Florianopolis SC 88040-900 Brazil;

    Mechanical Engineering Department Federal University of Santa Catarina Florianopolis SC 88040-900 Brazil;

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

    Membrane; Guided bone regeneration; Electrospinning; Calcium phosphate; PLGA; Degradation;

    机译:膜;引导骨再生;静电纺丝;磷酸钙;PLGA;降解;

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