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In vitro evaluation of carbon-nanotube-reinforced bioprintable vascular conduits

机译:碳纳米管增强的生物可打印血管导管的体外评估

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摘要

Vascularization of thick engineered tissue and organ constructs like the heart, liver, pancreas or kidney remains a major challenge in tissue engineering. Vascularization is needed to supply oxygen and nutrients and remove waste in living tissues and organs through a network that should possess high perfusion ability and significant mechanical strength and elasticity. In this thesis, we introduce a fabrication process to print vascular conduits directly, where conduits were reinforced with carbon nanotubes (CNTs) to enhance their mechanical properties and bioprintability. The generation of vascular conduit with a natural polymer hydrogel such as alginate needs to have improved mechanical properties in order to biomimic the natural vascular system. Carbon nanotube (CNT) is one of the best candidates for this goal because it is known as the strongest material and possesses a simple structure.In this thesis, multi-wall carbon nanotube (MWCNT) is dispersed homogenously in the hydrogel and fabricated through an extrusion-based system.In vitro evaluation of printed conduits encapsulated in human coronary artery smooth muscle cells was performed to characterize the effects of CNT reinforcement on the mechanical, perfusion and biological performance of the conduits. Perfusion and permeability, cell viability, extracellular matrix formation and tissue histology were assessed and discussed, and it was concluded that CNT-reinforced vascular conduits provided a foundation for mechanically appealing constructs where CNTs could be replaced with natural protein nanofibers for further integration of these conduits in large-scale tissue fabrication. It was concluded that MWCNT has a significant effect on mechanical properties, vascular conduit swelling ratio and biological characterization in short-term and long-term cellular viability.
机译:厚的工程组织和器官构造(如心脏,肝脏,胰腺或肾脏)的​​血管化仍然是组织工程中的主要挑战。需要血管化以提供氧气和营养,并通过网络来清除活组织和器官中的废物,该网络应具有高灌注能力以及显着的机械强度和弹性。在本文中,我们介绍了一种直接打印血管导管的制造工艺,其中用碳纳米管(CNT)加固了导管,以增强其机械性能和生物可印刷性。为了仿生天然血管系统,用天然聚合物水凝胶例如藻酸盐生成血管导管需要具有改善的机械性能。碳纳米管(CNT)是最理想的候选材料之一,因为它是最坚固的材料,并且具有简单的结构。基于挤出的系统。对封装在人冠状动脉平滑肌细胞中的印刷导管进行了体外评估,以表征CNT增强对导管的机械,灌注和生物学性能的影响。评估和讨论了灌注和通透性,细胞活力,细胞外基质形成和组织组织学,得出的结论是,CNT增强的血管导管为具有机械吸引力的构建体奠定了基础,其中可以用天然蛋白质纳米纤维替代CNT以进一步整合这些导管在大规模的组织制造中。结论是,MWCNT在短期和长期细胞存活率中对机械性能,血管导管溶胀率和生物学特性具有显着影响。

著录项

  • 作者

    Dolati, Farzaneh;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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