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首页> 外文期刊>Journal of Artificial Organs >Study on the physical properties of tissue-engineered blood vessels made by chemical cross-linking and polymer-tissue cross-linking
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Study on the physical properties of tissue-engineered blood vessels made by chemical cross-linking and polymer-tissue cross-linking

机译:化学交联和聚合物-组织交联制备的组织工程血管的物理性质研究

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摘要

In this study, we attempted to chemically cross-link decellularized blood vessel tissue and to perform cross-linking with a polymer in order to control its stability and functionalization. For this purpose, we cross-linked tissue by intrahelical, interhelical, and intermolecular cross-linking between the polymer and the collagen helix, which is a component of the native tissue. The intrahelically cross-linked tissue showed weaker stability against heat and degradation caused by collagenase compared to the interhelically cross-linked tissue. The tissue intermolecularly cross-linked with polymer showed the highest stability against heat and degradation caused by collagenase. The mechanical strength test showed that the Young’s moduli were different for the intra/interhelically and intermolecularly cross-linked tissues, with the latter being stiffer. This is thought to be because the cross-linked polymer functions in the same way as elastin, whereas simple collagen cross-linking provides a supportive matrix that holds the collagen and elastin together.
机译:在这项研究中,我们试图化学交联脱细胞的血管组织,并与聚合物进行交联,以控制其稳定性和功能化。为此,我们通过聚合物和胶原螺旋(天然组织的一部分)之间的螺旋内,螺旋间和分子间交联来交联组织。与螺旋间交联的组织相比,螺旋内交联的组织对胶原酶引起的热和降解的稳定性较弱。与聚合物分子间交联的组织对胶原酶引起的热和降解表现出最高的稳定性。机械强度测试表明,内部/螺旋间和分子间交联的组织的杨氏模量不同,后者更硬。认为这是因为交联的聚合物以与弹性蛋白相同的方式起作用,而简单的胶原蛋白交联提供了将胶原蛋白和弹性蛋白保持在一起的支持性基质。

著录项

  • 来源
    《Journal of Artificial Organs》 |2009年第1期|47-54|共8页
  • 作者单位

    Division of Biofunctional Molecules Institute of Biomaterials and Bioengineering Tokyo Medical and Dental University 2-3-10 Kanda-Surugadai Chiyoda-ku Tokyo 101-0062 Japan;

    Division of Biofunctional Molecules Institute of Biomaterials and Bioengineering Tokyo Medical and Dental University 2-3-10 Kanda-Surugadai Chiyoda-ku Tokyo 101-0062 Japan;

    Division of Biofunctional Molecules Institute of Biomaterials and Bioengineering Tokyo Medical and Dental University 2-3-10 Kanda-Surugadai Chiyoda-ku Tokyo 101-0062 Japan;

    Department of Biomedical Engineering Osaka Institute of Technology Osaka Japan;

    Kitamura National Cardiovascular Center Osaka Japan;

    Division of Biofunctional Molecules Institute of Biomaterials and Bioengineering Tokyo Medical and Dental University 2-3-10 Kanda-Surugadai Chiyoda-ku Tokyo 101-0062 Japan;

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

    Tissue engineering; Cross-linking; Decellularization; Phospholipid polymer;

    机译:组织工程;交联;脱细胞;磷脂聚合物;

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