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Evaluation of collagen-elastin hybrid tissue engineered vascular constructs

机译:胶原蛋白-弹性蛋白杂交组织工程血管构建物的评估

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摘要

Collagen-based tissue engineered replacements for small diameter blood vessels have been investigated for many years but typically lack the elasticity and tensile strength necessary for implantation. In this study, we have incorporated elastin with an organized structural architecture into tubular cell-seeded collagen constructs using two different reconstituted collagen sources. We evaluated the mechanical, chemical, and biological properties of these collagen-only and collagen-elastin hybrid grafts. Gel compaction quantification and live/dead staining revealed that cells in all matrix combinations were viable and able to rapidly compact their surrounding matrix. Compared to controls, uniaxial tensile testing revealed an increase in ultimate tensile strength and linear modulus for elastin hybrid constructs and for constructs formed with bovine dermal type I collagen. Histological assessment showed the unique composite structure of the elastin hybrid construct as well as the cell and extracellular matrix organization in all constructs studied. A discussion of these findings and their importance to vascular tissue engineering is discussed.
机译:基于胶原蛋白的组织工程替代物用于小直径血管的研究已经进行了多年,但通常缺乏植入所必需的弹性和拉伸强度。在这项研究中,我们已经使用两种不同的重组胶原来源将具有组织结构结构的弹性蛋白整合到管状细胞播种的胶原构建物中。我们评估了这些仅胶原蛋白和胶原蛋白-弹性蛋白杂种移植物的机械,化学和生物学特性。凝胶压实定量和活/死染色表明,所有基质组合中的细胞均具有活力,并能够快速压紧周围的基质。与对照相比,单轴拉伸测试显示弹性蛋白杂交构建物和用牛真皮I型胶原蛋白形成的构建物的极限拉伸强度和线性模量增加。组织学评估显示,在所有研究的构建物中,弹性蛋白杂交构建物的独特复合结构以及细胞和细胞外基质的组织。讨论了这些发现及其对血管组织工程的重要性。

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