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Tubular collagen scaffolds with radial elasticity for hollow organ regeneration

机译:具有径向弹性的管状胶原胶原屑,用于中空器官再生

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摘要

Tubular collagen scaffolds have been used for the repair of damaged hollow organs in regenerative medicine, but they generally lack the ability to reversibly expand in radial direction, a physiological characteristic seen in many native tubular organs. In this study, tubular collagen scaffolds were prepared that display a shape recovery effect and therefore exhibit radial elasticity. Scaffolds were constructed by compression of fibrillar collagen around a star-shaped mandrel, mimicking folds in a lumen, a typical characteristic of empty tubular hollow organs, such as ureter or urethra. Shape recovery effect was introduced by in situ fixation using a star-shaped mandrel, 3D-printed clamps and cytocompatible carbodiimide crosslinking. Prepared scaffolds expanded upon increase of lumina] pressure and closed to the star-shaped conformation after removal of pressure. In this study, we applied this method to construct a scaffold mimicking the dynamics of human urethra. Radial expansion and closure of the scaffold could be iteratively performed for at least 1000 cycles, burst pressure being 132 +/- 22 mmHg. Scaffolds were seeded with human epithelial cells and cultured in a bioreactor under dynamic conditions mimicking urination (pulse flow of 21 s every 2 h). Cells adhered and formed a closed lumina] layer that resisted flow conditions.
机译:管状胶原胶囊已被用于修复再生医学中的受损空心器官,但它们通常缺乏在径向方向上可逆地扩展的能力,在许多天然管道器官中看到的生理特性。在该研究中,制备管状胶原支架,其显示形状恢复效果,因此表现出径向弹性。支架通过压缩围绕星形心轴的纤维胶原构成,模拟腔内的褶皱,典型的空管空心器官,例如输尿管或尿道。通过使用星形心轴,3D印刷夹和细胞势型碳二亚胺交联引入形状恢复效果。制备的支架在叶片的增加时膨胀,然后在去除压力后闭合到星形构象上。在这项研究中,我们应用了这种方法来构建模仿人尿道动态的脚手架。可以迭代地进行支架的径向膨胀和闭合至少1000个循环,突发压力为132 +/-22mmHg。使用人的上皮细胞接种支架,并在模拟排尿中的动态条件下在生物反应器中培养(每2小时21秒的脉冲流量)。细胞粘附并形成抵抗流动条件的闭合叶米。

著录项

  • 来源
    《Acta biomaterialia》 |2017年第2017期|共8页
  • 作者单位

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Biochem Geert Grootepl 26-28 POB;

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Biochem Geert Grootepl 26-28 POB;

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Urol Geert Grootepl 26-28 POB 9101;

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Urol Geert Grootepl 26-28 POB 9101;

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Biochem Geert Grootepl 26-28 POB;

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Biochem Geert Grootepl 26-28 POB;

    Radboud Univ Nijmegen Med Ctr Dept Surg Geert Grootepl 26-28 POB 9101 NL-6500 HB Nijmegen;

    Radboud Univ Nijmegen Med Ctr Dept Surg Geert Grootepl 26-28 POB 9101 NL-6500 HB Nijmegen;

    Radboud Univ Nijmegen Med Ctr Dept Surg Geert Grootepl 26-28 POB 9101 NL-6500 HB Nijmegen;

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Urol Geert Grootepl 26-28 POB 9101;

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Urol Geert Grootepl 26-28 POB 9101;

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Biochem Geert Grootepl 26-28 POB;

    Radboud Univ Nijmegen Med Ctr Radboud Inst Mol Life Sci Dept Biochem Geert Grootepl 26-28 POB;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

    Regenerative medicine; Tissue engineering; Hollow organs; Scaffold; Collagen; Elasticity;

    机译:再生医学;组织工程;空心器官;脚手架;胶原蛋白;弹性;

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