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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Cell Seeding on UV-C-Treated 3D Polymeric Templates Allows for Cost-Effective Production of Small-Caliber Tissue-Engineered Blood Vessels
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Cell Seeding on UV-C-Treated 3D Polymeric Templates Allows for Cost-Effective Production of Small-Caliber Tissue-Engineered Blood Vessels

机译:UV-C处理的3D聚合物模板上的细胞播种允许成本有效地生产小口径组织工程血管

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摘要

There is a strong clinical need to develop small-caliber tissue-engineered blood vessels for arterial bypass surgeries. Such substitutes can be engineered using the self-assembly approach in which cells produce their own extracellular matrix (ECM), creating a robust vessel without exogenous material. However, this approach is currently limited to the production of flat sheets that need to be further rolled into the final desired tubular shape. In this study, human fibroblasts and smooth muscle cells were seeded directly on UV-C-treated cylindrical polyethylene terephthalate glycol-modified (PETG) mandrels of 4.8 mm diameter. UV-C treatment induced surface modification, confirmed by Fourier-transform infrared spectroscopy (FTIR) analysis, was necessary to ensure proper cellular attachment and optimized ECM secretion/assembly. This novel approach generated solid tubular conduits with high level of cohesion between concentric cellular layers and enhanced cell-driven circumferential alignment that can be manipulated after 21 days of culture. This simple and cost-effective mandrel-seeded approach also allowed for endothelialization of the construct and the production of perfusable trilayered tissue-engineered blood vessels with a closed lumen. This study lays the foundation for a broad field of possible applications enabling custom-made reconstructed tissues of specialized shapes using a surface treated 3D structure as a template for tissue engineering.
机译:有一个强烈的临床需要为动脉旁路手术开发小口径组织工程血管。可以使用细胞产生自己的细胞外基质(ECM)的自组装方法来设计这些替代物,在没有外源材料的情况下产生鲁棒容器。然而,该方法目前仅限于需要进一步轧制到最终所需管状的平板上的平板。在该研究中,将人的成纤维细胞和平滑肌细胞直接接种在直径为4.8mm的UV-C处理的圆柱形聚对苯二甲酸乙二醇酯乙二醇改性(PETG)心轴上。 UV-C治疗诱导的表面改性,通过傅立叶变换红外光谱(FTIR)分析确认,是确保适当的细胞附着和优化的ECM分泌/组件。这种新颖的方法在同心细胞层之间具有高水平的内聚力和增强的电池驱动的周向对准,可以在培养21天后进行制服。这种简单且经济高效的心轴接种方法也允许构建体的内皮化和用闭合的内腔生产灌注的三叶式组织工程血管。该研究为具有使用表面处理的3D结构的专用形状的自定义重建组织作为组织工程模板的特殊应用的广泛可能的应用基础。

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  • 作者单位

    Laval Univ Enfant Jesus Hosp Expt Organogenesis Res Ctr LOEX Div Regenerat Med CHU Quebec Res Ctr 1401 18e Rue Quebec City PQ G1J 1Z4 Canada;

    Laval Univ Enfant Jesus Hosp Expt Organogenesis Res Ctr LOEX Div Regenerat Med CHU Quebec Res Ctr 1401 18e Rue Quebec City PQ G1J 1Z4 Canada;

    Laval Univ Enfant Jesus Hosp Expt Organogenesis Res Ctr LOEX Div Regenerat Med CHU Quebec Res Ctr 1401 18e Rue Quebec City PQ G1J 1Z4 Canada;

    McGill Univ Dept Food Sci &

    Agr Chem Macdonald Campus Montreal PQ Canada;

    Laval Univ Enfant Jesus Hosp Expt Organogenesis Res Ctr LOEX Div Regenerat Med CHU Quebec Res Ctr 1401 18e Rue Quebec City PQ G1J 1Z4 Canada;

    Laval Univ Fac Sci &

    Engn Dept Chem Quebec City PQ Canada;

    Laval Univ Enfant Jesus Hosp Expt Organogenesis Res Ctr LOEX Div Regenerat Med CHU Quebec Res Ctr 1401 18e Rue Quebec City PQ G1J 1Z4 Canada;

    McGill Univ Dept Food Sci &

    Agr Chem Macdonald Campus Montreal PQ Canada;

    Laval Univ Enfant Jesus Hosp Expt Organogenesis Res Ctr LOEX Div Regenerat Med CHU Quebec Res Ctr 1401 18e Rue Quebec City PQ G1J 1Z4 Canada;

    Laval Univ Enfant Jesus Hosp Expt Organogenesis Res Ctr LOEX Div Regenerat Med CHU Quebec Res Ctr 1401 18e Rue Quebec City PQ G1J 1Z4 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物工程学(生物技术);
  • 关键词

    cell sheet; fibroblast; FTIR; PETG; self-assembly; surface treatment; tissue-engineered blood vessel;

    机译:细胞片;成纤维细胞;FTIR;PETG;自组装;表面处理;组织工程血管;

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