A novel method for engineering autologous non-thrombogenic in situ tissue-engineered blood vessels for arteriovenous grafting

离体 组织工程 弹性蛋白 颈静脉 生物医学工程 去细胞化 体内 移植 血管 管腔(解剖学) 医学 血栓形成 动脉 材料科学 外科 血栓形成 病理 生物 内科学 生物技术
作者
Wouter J. Geelhoed,Koen E.A. van der Bogt,T.C. Rothuizen,Febriyani Damanik,Jaap F. Hamming,Carlos Mota,M.S. van Agen,Hetty C. de Boer,Mauricio Tobón Restrepo,Boris Hinz,Ankur Kislaya,Christian Poelma,Anton Jan van Zonneveld,Ton J. Rabelink,Lorenzo Moroni,Joris I. Rotmans
出处
期刊:Biomaterials [Elsevier BV]
卷期号:229: 119577-119577 被引量:37
标识
DOI:10.1016/j.biomaterials.2019.119577
摘要

The durability of prosthetic arteriovenous (AV) grafts for hemodialysis access is low, predominantly due to stenotic lesions in the venous outflow tract and infectious complications. Tissue engineered blood vessels (TEBVs) might offer a tailor-made autologous alternative for prosthetic grafts. We have designed a method in which TEBVs are grown in vivo, by utilizing the foreign body response to subcutaneously implanted polymeric rods in goats, resulting in the formation of an autologous fibrocellular tissue capsule (TC). One month after implantation, the polymeric rod is extracted, whereupon TCs (length 6 cm, diameter 6.8 mm) were grafted as arteriovenous conduit between the carotid artery and jugular vein of the same goats. At time of grafting, the TCs were shown to have sufficient mechanical strength in terms of bursting pressure (2382 ± 129 mmHg), and suture retention strength (SRS: 1.97 ± 0.49 N). The AV grafts were harvested at 1 or 2 months after grafting. In an ex vivo whole blood perfusion system, the lumen of the vascular grafts was shown to be less thrombogenic compared to the initial TCs and ePTFE grafts. At 8 weeks after grafting, the entire graft was covered with an endothelial layer and abundant elastin expression was present throughout the graft. Patency at 1 and 2 months was comparable with ePTFE AV-grafts. In conclusion, we demonstrate the remodeling capacity of cellularized in vivo engineered TEBVs, and their potential as autologous alternative for prosthetic vascular grafts.
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