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通过内皮化和机械调节推进组织工程血管移植物的发展。

Advancing tissue-engineered vascular grafts via their endothelialization and mechanical conditioning.

作者信息

Antonyshyn Jeremy A, D'''''Costa Katya A, Santerre J Paul

机构信息

Institute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, ON, Canada.

Translational Biology and Engineering Program, Ted Rogers Centre for Heart Research, Toronto, ON, Canada.

出版信息

J Cardiovasc Surg (Torino). 2020 Oct;61(5):555-576. doi: 10.23736/S0021-9509.20.11582-9. Epub 2020 Sep 10.

DOI:10.23736/S0021-9509.20.11582-9
PMID:32909708
Abstract

Tissue engineering has garnered significant attention for its potential to address the predominant modes of failure of small diameter vascular prostheses, namely mid-graft thrombosis and anastomotic intimal hyperplasia. In this review, we described two main features underpinning the promise of tissue-engineered vascular grafts: the incorporation of an antithrombogenic endothelium, and the generation of a structurally and biomechanically mimetic extracellular matrix. From the early attempts at the in-vitro endothelialization of vascular prostheses in the 1970s through to the ongoing clinical trials of fully tissue-engineered vascular grafts, the historical advancements and unresolved challenges that characterize the current state-of-the-art are summarized in a manner that establishes a guide for the development of an effective vascular prosthesis for small diameter arterial reconstruction. The importance of endothelial cell purity and their arterial specification for the prevention of both diffuse neointimal hyperplasia and the accelerated development of atherosclerotic lesions is delineated. Additionally, the need for an extracellular matrix that recapitulates both the composition and structure of native elastic arteries to facilitate the protracted stability and patency of an engineered vasoactive conduit is described. Finally, the capacity of alternative sources of cells and mechanical conditioning to overcome these technical barriers to the clinical translation of an effective small diameter vascular prosthesis is discussed. In conclusion, this review provides an overview of the historical development of tissue-engineered vascular grafts, highlighting specific areas warranting further research, and commentating on the outlook of a clinically feasible and therapeutically efficacious vascular prosthesis for small diameter arterial reconstruction.

摘要

组织工程因其在解决小口径血管移植物主要失效模式方面的潜力而备受关注,这些失效模式主要是移植物中段血栓形成和吻合口内膜增生。在本综述中,我们描述了支撑组织工程血管移植物前景的两个主要特征:抗血栓形成内皮的整合,以及结构和生物力学模拟细胞外基质的生成。从20世纪70年代早期对血管移植物进行体外内皮化的尝试,到目前正在进行的全组织工程血管移植物的临床试验,以一种为开发用于小口径动脉重建的有效血管移植物建立指南的方式,总结了表征当前技术水平的历史进展和未解决的挑战。阐述了内皮细胞纯度及其动脉特异性对于预防弥漫性新生内膜增生和动脉粥样硬化病变加速发展的重要性。此外,还描述了需要一种能够重现天然弹性动脉的组成和结构的细胞外基质,以促进工程化血管活性导管的长期稳定性和通畅性。最后,讨论了替代细胞来源和机械调节克服有效小口径血管移植物临床转化技术障碍的能力。总之,本综述概述了组织工程血管移植物的历史发展,突出了值得进一步研究的特定领域,并对用于小口径动脉重建的临床可行且治疗有效的血管移植物的前景进行了评论。

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