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首页> 外文期刊>Journal of Industrial Textiles >Fabrication and characterization of tailor-made novel electrospun fibrous polyurethane scaffolds decorated with propolis and neem oil for tissue engineering applications
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Fabrication and characterization of tailor-made novel electrospun fibrous polyurethane scaffolds decorated with propolis and neem oil for tissue engineering applications

机译:量身定制的新型蜂胶和印em油装饰的新型电纺纤维状聚氨酯支架,用于组织工程应用

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摘要

Recently, textile technologies have gained a huge attention for fabricating the tissue constructs. In tissue engineering, the development of biodegradable polymer scaffolds which resemble the native function of the extra cellular matrix is a great challenge. In this research, a novel electrospun scaffold based on polyurethane, propolis and neem oil was developed for tissue-engineering applications through textile technology like electrospinning. The morphology of the electrospun polyurethane/propolis and polyurethane/propoliseem oil exhibited reduced fibre and pore diameter than the pristine polyurethane. The change in the chemical structure of the electrospun composites was identified by peak shifting of CH band peak with hydrogen bond formation.The contact angle measurements revealed that the PU/propolis mat was found to be super hydrophilic (0 degrees) in nature and the electrospun polyurethane/propoliseem oil mat was observed to be hydrophilic (41 degrees +/- 1) in nature. Thermogravimetric analysis and atomic force microscopy analysis showed that the prepared polyurethane/propolis and polyurethane/propoliseem oil mats exhibited higher thermal stability and decreased surface roughness than the pristine polyurethane. Moreover, the developed polyurethane/propolis (activated partial thromboplastin time - 144 +/- 4 s and prothrombin time - 85 +/- 3 s) and polyurethane/propoliseem oil (activated partial thromboplastin time - 147 +/- 3 s and prothrombin time - 86 +/- 2 s) composite displayed decreased blood clotting time than the pristine polyurethane (activated partial thromboplastin time - 153 +/- 3 s and prothrombin time - 89 +/- 3 s). The results of the haemolytic assay indicated that the electrospun polyurethane/propolis (1.21%) and polyurethane/propoliseem oil (1.30%) mats exhibited better safety to red blood cells than the pristine polyurethane (2.48%). Hence, these desirable characteristics of the newly developed scaffold might be used as a potential platform for tissue engineering applications.
机译:近来,纺织技术在制造组织构造方面已经引起了极大的关注。在组织工程中,开发类似于细胞外基质天然功能的可生物降解的聚合物支架是一个巨大的挑战。在这项研究中,开发了一种基于聚氨酯,蜂胶和印em油的新型电纺支架,用于通过电纺等纺织技术进行组织工程应用。与原始聚氨酯相比,电纺聚氨酯/蜂胶和聚氨酯/蜂胶/印em油的形态显示出减小的纤维和孔径。通过形成氢键的CH带峰的峰移识别了电纺复合材料的化学结构变化。接触角测量表明,PU /蜂胶垫在自然界中具有超亲水性(0度),并且电纺观察到聚氨酯/蜂胶/印em油垫本质上是亲水性的(41度+/- 1)。热重分析和原子力显微镜分析表明,所制备的聚氨酯/蜂胶和聚氨酯/蜂胶/印em油垫比原始聚氨酯具有更高的热稳定性和降低的表面粗糙度。此外,已开发的聚氨酯/蜂胶(活化的部分凝血活酶时间-144 +/- 4 s和凝血酶原时间-85 +/- 3 s)和聚氨酯/蜂胶/印em油(活化的部分凝血活酶时间-147 +/- 3 s和凝血酶原时间-86 +/- 2 s)复合材料显示的血凝时间比原始聚氨酯减少(活化的部分凝血活酶时间-153 +/- 3 s和凝血酶原时间-89 +/- 3 s)。溶血分析的结果表明,电纺聚氨酯/蜂胶(1.21%)和聚氨酯/蜂胶/印em油(1.30%)垫比原始聚氨酯(2.48%)表现出对红细胞更好的安全性。因此,新开发的支架的这些期望的特性可以用作组织工程应用的潜在平台。

著录项

  • 来源
    《Journal of Industrial Textiles》 |2020年第9期|1178-1197|共20页
  • 作者

  • 作者单位

    Ton Duc Thang Univ Dept Management Sci & Technol Dev Ho Chi Minh City Vietnam|Ton Duc Thang Univ Fac Appl Sci Ho Chi Minh City Vietnam|Univ Teknol Malaysia Fac Engn IJN UTM Cardiovasc Engn Ctr Sch Biomed Engn & Hlth Sci Skudai Malaysia;

    Univ Teknol Malaysia Fac Engn Sch Biomed Engn & Hlth Sci Skudai Malaysia;

    Kongu Engn Coll Dept Mech Engn Erode Tamil Nadu India;

    Univ Teknol Malaysia Fac Sci Dept Biosci Skudai Johor Malaysia;

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

    Polyurethane; propolis; neem oil; electrospinning; fibres; tissue engineering;

    机译:聚氨酯蜂胶印em油电纺;纤维组织工程;

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