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人诱导多能干细胞在生成组织工程血管作为血管移植物中的应用。

Application of Human Induced Pluripotent Stem Cells in Generating Tissue-Engineered Blood Vessels as Vascular Grafts.

机构信息

Yale Cardiovascular Research Center, Section of Cardiovascular Medicine, Department of Internal Medicine, Yale School of Medicine, New Haven, Connecticut.

Department of Cardiology, Bethune First Hospital of Jilin University, ChangChun, China.

出版信息

Stem Cells Dev. 2019 Dec 15;28(24):1581-1594. doi: 10.1089/scd.2019.0234. Epub 2019 Nov 26.

Abstract

In pace with the advancement of tissue engineering during recent decades, tissue-engineered blood vessels (TEBVs) have been generated using primary seed cells, and their impressive success in clinical trials have demonstrated the great potential of these TEBVs as implantable vascular grafts in human regenerative medicine. However, the production, therapeutic efficacy, and readiness in emergencies of current TEBVs could be hindered by the accessibility, expandability, and donor-donor variation of patient-specific primary seed cells. Alternatively, using human induced pluripotent stem cells (hiPSCs) to derive seed vascular cells for vascular tissue engineering could fundamentally address this current dilemma in TEBV production. As an emerging research field with a promising future, the generation of hiPSC-based TEBVs has been reported recently with significant progress. Simultaneously, to further promote hiPSC-based TEBVs into vascular grafts for clinical use, several challenges related to the safety, readiness, and structural integrity of vascular tissue need to be addressed. Herein, this review will focus on the evolution and role of hiPSCs in vascular tissue engineering technology and summarize the current progress, challenges, and future directions of research on hiPSC-based TEBVs.

摘要

近几十年来,随着组织工程学的发展,利用原代种子细胞已经生成了组织工程血管(TEBVs),这些 TEBVs 在临床试验中的令人印象深刻的成功证明了它们作为人类再生医学中可植入血管移植物的巨大潜力。然而,目前 TEBVs 的生产、治疗效果和应急准备可能会受到患者特异性原代种子细胞的可及性、可扩展性和供体间变异性的限制。或者,使用人诱导多能干细胞(hiPSCs)衍生种子血管细胞用于血管组织工程可以从根本上解决 TEBV 生产中的这一当前困境。作为一个具有广阔前景的新兴研究领域,基于 hiPSC 的 TEBVs 的生成最近已经有了显著的进展。同时,为了进一步将基于 hiPSC 的 TEBVs 推进到临床应用的血管移植物,需要解决与血管组织的安全性、应急准备和结构完整性相关的几个挑战。本文将重点介绍 hiPSCs 在血管组织工程技术中的演变和作用,并总结基于 hiPSC 的 TEBVs 的当前进展、挑战和未来研究方向。

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