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Tissue-engineering of vascular grafts containing endothelium and smooth-muscle using triple-coaxial cell printing

  • Ge Gao
  • , Hyeok Kim
  • , Byoung Soo Kim
  • , Jeong Sik Kong
  • , Jae Yeon Lee
  • , Bong Woo Park
  • , Suhun Chae
  • , Jisoo Kim
  • , Kiwon Ban
  • , Jinah Jang
  • , Hun Jun Park*
  • , Dong Woo Cho
  • *此作品的通讯作者
  • Pohang University of Science and Technology
  • The Catholic University of Korea
  • City University of Hong Kong

科研成果: 期刊稿件文章同行评审

摘要

Tissue engineering has emerged as a promising approach to viable small-diameter vascular grafts that may be used to treat cardiovascular diseases. One challenge in constructing such blood vessels is proper localization of endothelial cells and smooth muscle cells, as well as promotion of their cellular functions to generate functional tissues. Thus far, construction of small-diameter vascular substitutes with both endothelial and muscular tissues, which is essential for the grafts to acquire antithrombosis function and sufficient strength to avoid thrombus formation as well as to withstand blood pressure, has not yet been demonstrated. In this study, we engineer small-diameter blood vessel grafts containing both functional endothelial and muscular cell layers, which has been demonstrated in vivo in a living rat model. Our construction of the blood vessel grafts uses vascular-tissue-derived extracellular matrix bioinks and a reservoir-assisted triple-coaxial cell printing technique. The prematured vessel was implanted for three weeks as a graft of rat abdominal aorta in a proof-of-concept study where all implants showed great patency, intact endothelium, remodeled smooth muscle, and integration with host tissues at the end of the study. These outcomes suggest that our approach to tissue-engineered biomimetic blood vessels provides a promising route for the construction of durable small-diameter vascular grafts that may be used in future treatments of cardiovascular diseases.

源语言英语
期刊论文编号041402
期刊Applied Physics Reviews
6
4
DOI
出版状态已出版 - 1 12月 2019
已对外发布

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