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首页> 外文期刊>Journal of biomedical materials research, Part A >Evaluation of an elastic decellularized tendon‐derived scaffold for the vascular tissue engineering application
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Evaluation of an elastic decellularized tendon‐derived scaffold for the vascular tissue engineering application

机译:用于血管组织工程应用的弹性脱细胞肌腱衍生支架的评价

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Abstract Due to the limited success rate of currently available vascular replacements, tissue engineering has received tremendous attention in recent years. A main challenge in the field of regenerative medicine is creating a mechanically functional tissue with a well‐organized extracellular matrix, particularly of collagen and elastin. In this study, the native collagen scaffold derived from decellularized tendon sections, as a scaffold having the potential to be used for vascular tissue engineering applications, was studied. We showed that the elasticity of the scaffolds was improved when crosslinked with the bovine elastin. The effect of different concentrations of elastin on mechanical properties of the collagen scaffolds was evaluated of which 15% elastin concentration was selected for further analysis based on the results. Addition of 15% elastin to collagen scaffolds significantly decreased Young's modulus and the tensile stress at the maximum load and increased the tensile strain at the maximum load of the constructs as compared to those of the collagen scaffolds or control samples. Moreover, tubular elastin modified collagen scaffolds showed significantly higher burst pressure compared to the control samples. Smooth muscle cells and endothelial cells cultured on the elastin modified collagen scaffolds showed high viability (80%) after 1, 3, and 7 days. Furthermore, the cells showed a high tendency to align with the collagen fibers within the scaffold and produced their own extracellular matrix over time. In conclusion, the results show that the decellularized tendon sections have a great potential to be used as scaffolds for vascular tissue engineering applications. ? 2019 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 107A: 1225–1234, 2019.
机译:摘要由于目前可用的血管更换的成功率有限,近年来组织工程得到了极大的关注。再生医学领域的主要挑战是用良好组织的细胞外基质,特别是胶原蛋白和弹性蛋白产生机械官能组织。在该研究中,研究了从脱细胞肌腱切片衍生的天然胶原蛋白支架,作为具有用于血管组织工程应用的电位的支架。我们表明,当用牛弹性蛋白交联时,支架的弹性得到改善。评价不同浓度ELASTIN对胶原蛋白支架的力学性能的影响,其中选择了15%的ELASTIN浓度,以基于结果进一步分析。向胶原蛋白的支架中加入15%的弹性蛋白显着降低了杨氏模量和拉伸应力,与胶原蛋白支架或对照样品相比,在构建体的最大负荷下增加拉伸应变。此外,与对照样品相比,管状弹性蛋白修饰的胶原支架显示出明显较高的突发压力。在Elastin改性胶原支架上培养的平滑肌细胞和内皮细胞在1,3和7天后显示出高可活力(& 80%)。此外,细胞显示出与支架内的胶原纤维对准并随时间产生自身的细胞外基质。总之,结果表明,脱细胞肌腱部分具有巨大的潜力,可用作血管组织工程应用的支架。还2019 Wiley期刊,Inc.J生物保解率A部分:107A:1225-1234,2019。

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