University of Pittsburgh Medical Center, Pittsburgh, PA, USA.
McGowan Institute for Regenerative Medicine, Bridgeside Point 2 Building, 450 Technology Dr., Suite 300, Pittsburgh, PA, 15219, USA.
J Cardiovasc Transl Res. 2020 Oct;13(5):796-805. doi: 10.1007/s12265-020-09960-z. Epub 2020 Feb 10.
Degradable heart valves based on in situ tissue regeneration have been proposed as potentially durable and non-thrombogenic prosthetic alternatives. We evaluated the acute in vivo function, microstructure, mechanics, and thromboresistance of a stentless biodegradable tissue-engineered heart valve (TEHV) in the tricuspid position. Biomimetic stentless tricuspid valves were fabricated with poly(carbonate urethane)urea (PCUU) by double-component deposition (DCD) processing to mimic native valve mechanics and geometry. Five swine then underwent 24-h TEHV implantation in the tricuspid position. Echocardiography demonstrated good leaflet motion and no prolapse and trace to mild regurgitation in all but one animal. Histology revealed patches of proteinaceous deposits with no cellular uptake. SEM demonstrated retained scaffold microarchitecture with proteinaceous deposits but no platelet aggregation or thrombosis. Explanted PCUU leaflet thickness and mechanical anisotropy were comparable with native tricuspid leaflets. Bioinspired, elastomeric, stentless TEHVs fabricated by DCD were readily implantable and demonstrated good acute function in the tricuspid position.
已经提出了基于原位组织再生的可降解心脏瓣膜,作为潜在的耐用和非血栓形成的假体替代物。我们评估了无支架生物可降解组织工程心脏瓣膜(TEHV)在三尖瓣位置的急性体内功能、微观结构、力学和抗血栓性能。通过双组分沉积(DCD)处理用聚碳酸酯尿烷脲(PCUU)制造仿生无支架三尖瓣瓣膜,以模拟天然瓣膜的力学和几何形状。然后,5 只猪在三尖瓣位置接受了 24 小时的 TEHV 植入。超声心动图显示所有动物的瓣叶运动良好,无脱垂和微量至轻度反流。组织学显示有蛋白沉积物,但无细胞摄取。SEM 显示保留了支架微结构和蛋白沉积物,但无血小板聚集或血栓形成。植入的 PCUU 瓣叶厚度和机械各向异性与天然三尖瓣瓣叶相当。通过 DCD 制造的仿生、弹性、无支架 TEHV 易于植入,并在三尖瓣位置表现出良好的急性功能。