首页> 外文期刊>Journal of cardiovascular translational research >Development of a Novel Human Cell-Derived Tissue-Engineered Heart Valve for Transcatheter Aortic Valve Replacement: an In Vitro and In Vivo Feasibility Study
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Development of a Novel Human Cell-Derived Tissue-Engineered Heart Valve for Transcatheter Aortic Valve Replacement: an In Vitro and In Vivo Feasibility Study

机译:开发用于经截管主动脉瓣膜的新型人细胞衍生的组织工程心脏瓣膜置换:体外和体内可行性研究

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摘要

Transcatheter aortic valve replacement (TAVR) is being extended to younger patients. However, TAVR-compatible bioprostheses are based on xenogeneic materials with limited durability. Off-the-shelf tissue-engineered heart valves (TEHVs) with remodeling capacity may overcome the shortcomings of current TAVR devices. Here, we develop for the first time a TEHV for TAVR, based on human cell-derived extracellular matrix and integrated into a state-of-the-art stent for TAVR. The TEHVs, characterized by a dense acellular collagenous matrix, demonstrated in vitro functionality under aortic pressure conditions (n=4). Next, transapical TAVR feasibility and in vivo TEHV functionality were assessed in acute studies (n=5) in sheep. The valves successfully coped with the aortic environment, showing normal leaflet motion, free coronary flow, and absence of stenosis or paravalvular leak. At explantation, TEHVs presented full structural integrity and initial cell infiltration. Its long-term performance proven, such TEHV could fulfill the need for next-generation lifelong TAVR prostheses.
机译:经齿轮管主动脉瓣更换(TAVR)延长至较年轻的患者。然而,Tavr兼容的生物制剂基于具有有限耐久性的异种材料。具有重塑能力的搁板内的组织工程心脏瓣膜(Tehvs)可能会克服当前TAVR器件的缺点。在这里,我们基于人培养的细胞外基质第一次为TAVR开发TAVR,并集成到TAVR的最先进的支架中。 Tehvs以致密的无细胞胶原基质为特征,在主动脉压力条件下在体外官能团(n = 4)。接下来,在绵羊中的急性研究(n = 5)中评估转产Tavr可行性和体内Tehv功能。阀门成功地应对主动脉环境,显示正常的宣传叶运动,自由冠状动脉,并且没有狭窄或静脉泄漏。在促进过程中,Tehvs呈现完全的结构完整性和初始细胞渗透。其长期表现已被证明,此类Tehv可以满足下一代终身TAVR假肢的需求。

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