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Modular design of a tissue engineered pulsatile conduit using human induced pluripotent stem cell-derived cardiomyocytes

机译:使用人诱导多能干细胞衍生的心肌细胞的组织工程脉动管道的模块化设计

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Single ventricle heart defects (SVDs) are congenital disorders that result in a variety of complications, including increased ventricular mechanical strain and mixing of oxygenated and deoxygenated blood, leading to heart failure without surgical intervention. Corrective surgery for SVDs are traditionally handled by the Fontan procedure, requiring a vascular conduit for completion. Although effective, current conduits are limited by their inability to aid in pumping blood into the pulmonary circulation. In this report, we propose an innovative and versatile design strategy for a tissue engineered pulsatile conduit (TEPC) to aid circulation through the pulmonary system by producing contractile force. Several design strategies were tested for production of a functional TEPC. Ultimately, we found that porcine extracellular matrix (ECM)-based engineered heart tissue (EHT) composed of human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) and primary cardiac fibroblasts (HCF) wrapped around decellularized human umbilical artery (HUA) made an efficacious basal TEPC. Importantly, the TEPCs showed effective electrical and mechanical function. Initial pressure readings from our TEPC in vitro (0.68 mmHg) displayed efficient electrical conductivity enabling them to follow electrical pacing up to a 2 Hz frequency. This work represents a proof of principle study for our current TEPC design strategy. Refinement and optimization of this promising TEPC design will lay the groundwork for testing the construct's therapeutic potential in the future. Together this work represents a progressive step toward developing an improved treatment for SVD patients.
机译:单心室心脏缺损(的SVD)是先天性病症导致多种并发症,包括增加心室的机械应变和含氧和去氧血混合,导致心脏衰竭而不手术干预。为的SVD矫正手术是传统上由Fontan手术处理,需要完成血管导管。虽然有效,但目前的管道通过他们无法在输送血液进入肺循环限于援助。在这份报告中,我们提出了一个组织的创新和灵活的设计战略,通过肺系统通过产生收缩力工程搏动导管(TEPC)以促进血液循环。一些设计策略被用于生产功能TEPC的测试。最终,我们发现,猪细胞外基质(ECM)为基础的人诱导多能干细胞衍生的心肌细胞(的hiPSC-CMS)和原发性心脏成纤维细胞(HCF)组成的工程化的心脏组织(EHT)缠脱细胞人脐动脉(HUA)由有效的基础TEPC。重要的是,显示出TEPCs有效的电气和机械功能。从我们的体外(0.68毫米汞柱)TEPC初始压力读数显示有效的导电性使它们能够跟随电起搏高达2赫兹频率。这项工作是原理的研究为我们目前TEPC设计策略的证明。细化和这个有前途TEPC设计的优化将奠定在未来的测试结构的治疗潜力。总之这项工作代表着向开发SVD患者改善治疗一种进步。

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