Suppr超能文献

组织工程化活体自体血管移植物的功能、生长和加速老化。

Functionality, growth and accelerated aging of tissue engineered living autologous vascular grafts.

机构信息

Swiss Centre for Regenerative Medicine, University Hospital and University of Zurich, Zurich, Switzerland.

出版信息

Biomaterials. 2012 Nov;33(33):8277-85. doi: 10.1016/j.biomaterials.2012.07.049. Epub 2012 Aug 18.

Abstract

Living autologous tissue engineered vascular-grafts (TEVGs) with growth-capacity may overcome the limitations of contemporary artificial-prostheses. However, the multi-step in vitro production of TEVGs requires extensive ex vivo cell-manipulations with unknown effects on functionality and quality of TEVGs due to an accelerated biological age of the cells. Here, the impact of biological cell-age and tissue-remodeling capacity of TEVGs in relation to their clinical long-term functionality are investigated. TEVGs were implanted as pulmonary-artery (PA) replacements in juvenile sheep and followed for up to 240 weeks (∼4.5years). Telomere length and telomerase activity were compared amongst TEVGs and adjacent native tissue. Telomerase-activity of in vitro expanded autologous vascular-cells prior to seeding was <5% as compared to a leukemic cell line, indicating biological-aging associated with decreasing telomere-length with each cellular-doubling. Up to 100 weeks, the cells in the TEVGs had consistently shorter telomeres compared to the native counterpart, whereas no significant differences were detectable at 240 weeks. Computed tomography (CT) analysis demonstrated physiological wall-pressures, shear-stresses, and flow-pattern comparable to the native PA. There were no signs of degeneration detectable and continuous native-analogous growth was confirmed by vessel-volumetry. TEVGs exhibit a higher biological age compared to their native counterparts. However, despite of this tissue engineering technology related accelerated biological-aging, growth-capacity and long-term functionality was not compromised. To the contrary, extensive in-vivo remodeling processes with substantial endogenous cellular turnover appears to result in "TEVG rejuvenation" and excellent clinical performance. As these large-animal results can be extrapolated to approximately 20 human years, this study suggests long-term clinical-safety of cardiovascular in vitro tissue engineering and may contribute to safety-criteria as to first-in-man clinical-trials.

摘要

具有生长能力的活体自体组织工程血管移植物(TEVG)可能克服当代人工假体的局限性。然而,TEVG 的多步体外生产需要广泛的体外细胞操作,由于细胞的生物年龄加速,这些操作对 TEVG 的功能和质量存在未知影响。在这里,研究了 TEVG 的生物学细胞年龄和组织重塑能力与其临床长期功能的关系。将 TEVG 作为肺动脉(PA)替代品植入幼年绵羊体内,并进行长达 240 周(约 4.5 年)的随访。比较了 TEVG 与相邻天然组织之间的端粒长度和端粒酶活性。与白血病细胞系相比,在接种前体外扩增的自体血管细胞中端粒酶活性<5%,表明与端粒长度随细胞倍增而逐渐缩短相关的生物衰老。在 100 周内,TEVG 中的细胞端粒始终比天然对应物短,而在 240 周时则没有检测到明显差异。计算机断层扫描(CT)分析表明,壁压、剪切应力和流型与 PA 相似。没有检测到退化的迹象,通过血管容积测量证实了持续的类似天然的生长。TEVG 与天然对应物相比具有更高的生物学年龄。然而,尽管存在与组织工程技术相关的加速生物衰老,但生长能力和长期功能并未受到影响。相反,大量的体内重塑过程伴随着大量的内源性细胞更替,似乎导致了“TEVG 年轻化”和优异的临床性能。由于这些大型动物的结果可以外推到大约 20 年的人类寿命,因此该研究表明心血管体外组织工程的长期临床安全性,并可能有助于制定人体临床试验的安全性标准。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验