Elastin in vascular grafts

Richard Wang, Bente de Kort, Anthal Smits, Anthony Weiss

Onderzoeksoutput: Hoofdstuk in Boek/Rapport/CongresprocedureHoofdstukAcademicpeer review

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The clinical demand for a superior vascular graft is rising due to the increase in cardiovascular disease with an aging population. Despite decades of research, clinically translatable solutions remain limited. Recent progress in vascular graft engineering has highlighted the significance of biological integration for the success of implanted grafts. Thus there has been an increase in the usage of biological materials in vascular graft manufacture. Elastin, a natural protein that makes up a significant portion of the natural vascular extracellular matrix, has been demonstrated to be particularly important with both mechanical and biological modulatory roles. Progress in understanding elastogenesis, the process by which elastin is naturally synthesized, and increased access to synthetic elastin-based materials, has increased the usage of elastin in vascular graft engineering. In this chapter, we explore recent advances in the utilization of elastin as a material for vascular graft engineering. In particular, we focus on the myriad of methods which incorporate elastin into vascular grafts which demonstrate superior biological functionality and closer resemblance to native blood vessels.
Originele taal-2Engels
TitelTissue-Engineered Vascular Grafts
RedacteurenBeat Walpoth, Helga Bergmeister, Gary Bowlin, Deling Kong, Joris Rotmans, Peter Zilla
Plaats van productieCham
UitgeverijSpringer Nature
Pagina's1-32
ISBN van elektronische versie978-3-319-71530-8
DOI's
StatusGepubliceerd - 27 aug. 2019

Publicatie series

NaamReference Series in Biomedical Engineering
UitgeverijSpringer

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