Cellularized small-caliber tissue-engineered vascular grafts: looking for the ultimate gold standard
Abstract Due to the lack of efficacy of synthetic vascular substitutes in the replacement of small-caliber arteries, vascular tissue engineering (VTE) has emerged as a promising solution to produce viable small-caliber tissue-engineered vascular grafts (TEVG). Previous studies have shown the importa...
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2021
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oai:doaj.org-article:0ca98b3dacd64e58b3db5aa59f2accbe2021-12-02T18:50:54ZCellularized small-caliber tissue-engineered vascular grafts: looking for the ultimate gold standard10.1038/s41536-021-00155-x2057-3995https://doaj.org/article/0ca98b3dacd64e58b3db5aa59f2accbe2021-08-01T00:00:00Zhttps://doi.org/10.1038/s41536-021-00155-xhttps://doaj.org/toc/2057-3995Abstract Due to the lack of efficacy of synthetic vascular substitutes in the replacement of small-caliber arteries, vascular tissue engineering (VTE) has emerged as a promising solution to produce viable small-caliber tissue-engineered vascular grafts (TEVG). Previous studies have shown the importance of a cellular intimal layer at the luminal surface of TEVG to prevent thrombotic events. However, the cellularization of a TEVG seems to be a critical approach to consider in the development of a TEVG. To date, no standard cellularization method or cell type has been established to create the ideal TEVG by promoting its long-term patency and function. In this review, advances in VTE are described and discussed with a particular focus on the construction approaches of cellularized small-caliber TEVGs, the cell types used, as well as their preclinical and clinical applications.Adrien FayonPatrick MenuReine El OmarNature PortfolioarticleMedicineRENnpj Regenerative Medicine, Vol 6, Iss 1, Pp 1-11 (2021) |
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Medicine R Adrien Fayon Patrick Menu Reine El Omar Cellularized small-caliber tissue-engineered vascular grafts: looking for the ultimate gold standard |
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Abstract Due to the lack of efficacy of synthetic vascular substitutes in the replacement of small-caliber arteries, vascular tissue engineering (VTE) has emerged as a promising solution to produce viable small-caliber tissue-engineered vascular grafts (TEVG). Previous studies have shown the importance of a cellular intimal layer at the luminal surface of TEVG to prevent thrombotic events. However, the cellularization of a TEVG seems to be a critical approach to consider in the development of a TEVG. To date, no standard cellularization method or cell type has been established to create the ideal TEVG by promoting its long-term patency and function. In this review, advances in VTE are described and discussed with a particular focus on the construction approaches of cellularized small-caliber TEVGs, the cell types used, as well as their preclinical and clinical applications. |
format |
article |
author |
Adrien Fayon Patrick Menu Reine El Omar |
author_facet |
Adrien Fayon Patrick Menu Reine El Omar |
author_sort |
Adrien Fayon |
title |
Cellularized small-caliber tissue-engineered vascular grafts: looking for the ultimate gold standard |
title_short |
Cellularized small-caliber tissue-engineered vascular grafts: looking for the ultimate gold standard |
title_full |
Cellularized small-caliber tissue-engineered vascular grafts: looking for the ultimate gold standard |
title_fullStr |
Cellularized small-caliber tissue-engineered vascular grafts: looking for the ultimate gold standard |
title_full_unstemmed |
Cellularized small-caliber tissue-engineered vascular grafts: looking for the ultimate gold standard |
title_sort |
cellularized small-caliber tissue-engineered vascular grafts: looking for the ultimate gold standard |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/0ca98b3dacd64e58b3db5aa59f2accbe |
work_keys_str_mv |
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