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The mineralization of polymer electrospun fibrous membranes modified with tourmaline nanoparticles

机译:电气石纳米粒子改性的聚合物电纺纤维膜的矿化作用

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摘要

As distinctive spontaneous polarization and far-infrared radiation characteristics, the natural mineral tourmaline (TM) has the regulatory effect on crystallization behavior, which possesses potential application in biomimetic mineralization and bone regeneration. In this study, polyurethane (PU) and gelatin (GE) membranes with different adding proportion of TM nanoparticles were prepared via electrospinning. Additionally, the effect of TM nanoparticles on the mineralization process of hydrophobic PU and hydrophilic GE was investigated by immersing the composite TM/PU and TM/GE electrospun membranes in the 10x simulated body fluid (10SBF) at 37 degrees C for varying periods of time. SEM images confirmed the well-dispersed TM nanoparticles in the PU and GE electrospun fibers. The mineralization deposition was characterized by the SEM, EDS, XRD, and FTIR, and it indicated that two types of calcium phosphate deposits with different Ca/P molar ratios were obtained when TM/PU membranes and TM/GE membranes were incubated in 10SBF. Honeycomb-like hydroxyapatite crystals nucleated and grew faster on TM/PU and TM/GE membranes than the pure PU and GE membranes, respectively. Furthermore, with the increase of the added TM nanoparticles in the composite membranes, more calcium phosphate crystals were precipitated. These results showed that the added TM nanoparticles were able to improve the mineralization of polymer fibrous membranes, which is potential for the composite bone scaffold.
机译:天然矿物质电气石具有独特的自发极化和远红外辐射特性,对结晶行为具有调节作用,在仿生矿化和骨骼再生中具有潜在的应用前景。在这项研究中,通过静电纺丝制备了添加比例不同的TM纳米颗粒的聚氨酯(PU)和明胶(GE)膜。此外,通过将复合的TM / PU和TM / GE电纺膜在37摄氏度下的10倍模拟体液(10SBF)中浸泡不同的时间,研究了TM纳米颗粒对疏水性PU和亲水性GE矿化过程的影响。 。 SEM图像证实了PU和GE电纺纤维中TM纳米颗粒的分散性。用SEM,EDS,XRD和FTIR对矿化沉积进行表征,结果表明,将TM / PU膜和TM / GE膜在10SBF中孵育时,可得到两种Ca / P摩尔比不同的磷酸钙沉积。蜂窝状羟基磷灰石晶体在TM / PU和TM / GE膜上的成核和生长速度分别比纯PU和GE膜快。此外,随着复合膜中添加的TM纳米颗粒的增加,更多的磷酸钙晶体沉淀。这些结果表明,添加的TM纳米颗粒能够改善聚合物纤维膜的矿化,这对于复合骨支架是潜在的。

著录项

  • 来源
    《Journal of Materials Research 》 |2019年第11期| 1900-1910| 共11页
  • 作者单位

    Hebei Univ Technol, Key Lab Special Funct Mat Ecol Environm & Informa, Minist Educ, Tianjin 300130, Peoples R China|Hebei Univ Technol, Inst Power Source & Mat Sci, Tianjin 300130, Peoples R China|Hebei Univ Technol, Key Lab New Type Funct Mat Hebei Prov, Tianjin 300130, Peoples R China;

    Hebei Univ Technol, Key Lab Special Funct Mat Ecol Environm & Informa, Minist Educ, Tianjin 300130, Peoples R China|Hebei Univ Technol, Inst Power Source & Mat Sci, Tianjin 300130, Peoples R China|Hebei Univ Technol, Key Lab New Type Funct Mat Hebei Prov, Tianjin 300130, Peoples R China;

    Hebei Univ Technol, Key Lab Special Funct Mat Ecol Environm & Informa, Minist Educ, Tianjin 300130, Peoples R China|Hebei Univ Technol, Inst Power Source & Mat Sci, Tianjin 300130, Peoples R China|Hebei Univ Technol, Key Lab New Type Funct Mat Hebei Prov, Tianjin 300130, Peoples R China;

    Hebei Univ Technol, Key Lab Special Funct Mat Ecol Environm & Informa, Minist Educ, Tianjin 300130, Peoples R China|Hebei Univ Technol, Inst Power Source & Mat Sci, Tianjin 300130, Peoples R China|Hebei Univ Technol, Key Lab New Type Funct Mat Hebei Prov, Tianjin 300130, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    tourmaline nanoparticles; polyurethane; gelatin; electrospinning; mineralization;

    机译:电气石纳米颗粒;聚氨酯;明胶;静电纺丝;矿化;

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