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Riboflavin-mediated photooxidation to improve the characteristics of decellularized human arterial small diameter vascular grafts

  • Vascular grafts with a diameter of less than 6 mm are made from a variety of materials and techniques to provide alternatives to autologous vascular grafts. Decellularized materials have been proposed as a possible approach to create extracellular matrix (ECM) vascular prostheses as they are naturally derived and inherently support various cell functions. However, these desirable graft characteristics may be limited by alterations of the ECM during the decellularization process leading to decreased biomechanical properties and hemocompatibility. In this study, arteries from the human placenta chorion were decellularized using two distinct detergents (Triton X-100 or SDS), which differently affect ECM ultrastructure. To overcome biomechanical strength loss and collagen fiber exposure after decellularization, riboflavin-mediated UV (RUV) crosslinking was used to uniformly crosslink the collagenous ECM of the grafts. Graft characteristics and biocompatibility with and without RUV crosslinking were studied in vitro and in vivo. RUV-crosslinked ECM grafts showed significantly improved mechanical strength and smoothening of the luminal graft surfaces. Cell seeding using human endothelial cells revealed no cytotoxic effects of the RUV treatment. Short-term aortic implants in rats showed cell migration and differentiation of host cells. Functional graft remodeling was evident in all grafts. Thus, RUV crosslinking is a preferable tool to improve graft characteristics of decellularized matrix conduits.

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Metadaten
Author:Karl H. Schneider, Sabrina Rohringer, Barbara Kapeller, Christian Grasl, Herbert Kiss, Stefan Heber, Ingrid Walter, Andreas H. Teuschl, Bruno K. PodesserORCiD, Helga Bergmeister
Parent Title (English):Acta Biomaterialia
Document Type:Article
Language:English
Completed Date:2020/10/15
Responsibility for metadata:Fachhochschule Technikum Wien
Release Date:2022/01/03
GND Keyword:Biomaterials; Decellularization; Small diameter vascular graft; Surface modification; Tissue Engineering
Volume:116
First Page:246
Last Page:258
Publish on Website:1
Open Access:1
Reviewed:1
Link to Publication:10.1016/j.actbio.2020.08.037.
Department:Department Life Science Engineering
Research Focus:Tissue Engineering & Molecular Life Science Technologies
Projects:Eigenmittel
Studienjahr:2020/2021
Licence (German):License LogoCreative Commons - CC BY-ND - Namensnennung - Keine Bearbeitungen 4.0 International