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Bacterial cellulose/fibrin composites: Preparation and mechanical properties of potential artificial blood vessel material.

机译:细菌纤维素/纤维蛋白复合材料:潜在的人造血管材料的制备和力学性能。

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摘要

Bacterial cellulose (BC) and BC/fibrin composites were prepared and the static and dynamic mechanical properties were investigated to assess their suitability to artificial blood vessel applications. An important prerequisite for such applications is the ability to replicate the biological and mechanical properties of the blood vessels; and since published scientific works had observed both BC and fibrin to be biologically compliant, only mechanical properties were investigated in this study. Firstly, preparations of BC, BC/fibrin composites and their crosslinked counterparts were performed. BC/fibrin composites of varying compositions were produced by immersing never-dried-BC into fibrin/ionic liquid/DMSO solution in varied durations. The composite compositions were predicted from a calibration method based on calibration samples, FTIR data and Beer's law. Crosslinking was done by glutaraldehyde-treatment. Secondly, characterizations of static and dynamic mechanical properties were carried out by tensile test and cyclic loading test, respectively. The static test provided the data for the analysis of strength, modulus and elongation while the dynamic test for viscoelasticity and durability. The BC/fibrin composites and crosslinked BC had improved mechanical properties compared to their native components, however only the crosslinked BC/fibrin composites exhibited comparable strength, modulus, viscoelasticity and durability to the bovine blood vessel, indicating that the crosslinked composites were promising materials for artificial blood vessel applications. Additionally, the modification of fibrin content in the composites resulted in the modification of mechanical properties; such was desirable because real blood vessels exist in wide range of mechanical properties. The interactions and morphologies of the interfaces between BC and fibrin were investigated in relation to mechanical properties. The occurrence of crosslinking was believed to afford effective reinforcement in the BC/BC and/or BC/fibrin interfaces which imparted the significant mechanical improvement to the composites. The positive results obtained from the assessment of mechanical properties indicated that BC/fibrin composites are good potential artificial blood vessel materials. In the future, if an in vivo test will prove affirmative results, BC/fibrin composites, which have widely available resources and can be produced by simple method, may be used as blood vessel replacement material.
机译:制备了细菌纤维素(BC)和BC /纤维蛋白复合材料,并研究了其静态和动态力学性能,以评估其对人造血管应用的适用性。这种应用的重要先决条件是能够复制血管的生物学和机械特性。并且由于已发表的科学著作已经观察到BC和纤维蛋白在生物学上均符合要求,因此在这项研究中仅研究了机械性能。首先,进行了BC,BC /纤维蛋白复合物及其交联对应物的制备。通过将未干燥的BC以不同的持续时间浸入纤维蛋白/离子液体/ DMSO溶液中,可以生产出各种成分的BC /纤维蛋白复合物。基于校准样品,FTIR数据和比尔定律,通过校准方法预测复合材料的组成。交联通过戊二醛处理完成。其次,分别通过拉伸试验和循环载荷试验对静态和动态力学性能进行表征。静态测试为强度,模量和伸长率的分析提供了数据,而动态测试为粘弹性和耐久性提供了数据。与天然成分相比,BC /纤维蛋白复合物和交联的BC具有改善的机械性能,但是只有交联的BC /纤维蛋白复合物显示出与牛血管相当的强度,模量,粘弹性和耐用性,这表明交联的复合物是用于生物医学的有前途的材料。人造血管的应用。另外,复合物中纤维蛋白含量的改变导致机械性能的改变。因为真实的血管存在于广泛的机械性能中,所以这是理想的。研究了BC和纤维蛋白之间的界面的相互作用和形态与机械性能的关系。据信交联的发生在BC / BC和/或BC /纤维蛋白界面上提供了有效的增强,这赋予了复合材料显着的机械性能。从机械性能评估中获得的积极结果表明,BC /纤维蛋白复合材料是潜在的人造血管材料。将来,如果体内试验证明是肯定的结果,则具有广泛可得资源并且可以通过简单方法生产的BC /纤维蛋白复合物可用作血管替代材料。

著录项

  • 作者

    Brown, Elvie Escorro.;

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Engineering Biomedical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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