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A hybrid vascular graft harnessing the superior mechanical properties of synthetic fibers and the biological performance of collagen filaments

机译:一种杂交血管移植利用合成纤维的优越性机械性能和胶原纤丝的生物学性能

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摘要

Tissue-engineered small caliber vascular grafts have attracted much research attention as a viable alternative to traditional vascular grafts with their biocompatibility and potential to achieve complete healing. However, the major challenge is to fabricate a scaffold with both satisfactory mechanical properties and fast endothelialization. In this study, a hybrid tubular vascular tissue engineered scaffold has been circular-knitted using novel electrochemically aligned collagen (ELAC) filaments plied together with traditional poly(lactic acid) (PLA) yarn. The collagen component was able to promote the recruitment and proliferation of endothelial cells by increasing the initial cell adhesion 10-fold and the eventual cell population 3.2 times higher than the PLA scaffold alone. At the same time, the PLA yarn was able to provide sufficient mechanical strength and structural stability, as well as facilitate scaffold fabrication on high speed textile production equipment. The tubular hybrid scaffold exhibited excellent bursting strength (1.89 +/- 0.43 MPa) and suture retention strength (10.86 +/- 0.49 N), and had comparable compliance (3.98 +/- 1.94%/100 mmHg) to that of the coronary artery (3.8 +/- 0.3%/100 mmHg) under normotensive pressure. With its excellent mechanical and biological performance, this prototype hybrid scaffold is a promising candidate for the construction of a clinically successful and easily translatable tissue-engineered small caliber vascular graft.
机译:组织工程的小口径血管移植物引起了许多研究关注,作为传统血管移植物的可行替代品,其生物相容性和潜力能够实现完全愈合。然而,主要挑战是使用令人满意的机械性能和快速内皮化来制造支架。在这项研究中,杂交管血管组织工程化支架已经使用新型电化学对齐的胶原(ELAC)长丝与传统的聚(乳酸)(PLA)纱线一起使用的新型电化学对齐的胶原纤维。胶原蛋白组分能够通过增加初始细胞粘附10倍和单独高3.2倍的初始细胞粘附和最终细胞群来促进内皮细胞的募集和增殖。与此同时,PLA纱线能够提供足够的机械强度和结构稳定性,并促进高速纺织生产设备上的支架制造。管状杂交支架表现出优异的爆破强度(1.89 +/- 0.43MPa)和缝合线保持强度(10.86 +/- 0.49 n),并具有可比的顺应性(3.98 +/- 1.94%/ 100mmHg),以冠状动脉(3.8 +/- 0.3%/ 100 mmHg)在正常压力下。凭借其优异的机械和生物学性能,该原型杂交脚手架是建造临床成功且易于可翻译的组织工程的小口径血管移植物的有希望的候选者。

著录项

  • 来源
    《Materials science & engineering》 |2021年第2期|111418.1-111418.12|共12页
  • 作者单位

    North Carolina State Univ Wilson Coll Text Raleigh NC USA;

    North Carolina State Univ Wilson Coll Text Raleigh NC USA;

    North Carolina State Univ Wilson Coll Text Raleigh NC USA;

    Donghua Univ Coll Text Shanghai Peoples R China;

    Case Western Reserve Univ Dept Mech & Aerosp Engn Cleveland OH 44106 USA;

    Donghua Univ Coll Text Shanghai Peoples R China;

    Case Western Reserve Univ Dept Mech & Aerosp Engn Cleveland OH 44106 USA|Case Western Reserve Univ Dept Biomed Engn Cleveland OH 44106 USA|Case Western Reserve Univ Dept Orthopaed Univ Hosp Cleveland Med Ctr Cleveland OH 44106 USA;

    North Carolina State Univ Wilson Coll Text Raleigh NC USA|Donghua Univ Coll Text Shanghai Peoples R China;

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

    Tissue-engineered vascular graft; Biomaterial; Hybrid; Electrochemically aligned collagen; Poly (lactic acid);

    机译:组织工程血管移植物;生物材料;杂交;电化学对齐胶原;聚(乳酸);

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