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首页> 外文期刊>Biomaterials >Creation of myocardial tubes using cardiomyocyte sheets and an in vitro cell sheet-wrapping device.
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Creation of myocardial tubes using cardiomyocyte sheets and an in vitro cell sheet-wrapping device.

机译:使用心肌细胞片和体外细胞片包裹装置创建心肌管。

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摘要

Regenerative medicine involving injection of isolated cells and transplantation of tissue-engineered myocardial patches, has received significant attention as an alternative method to repair damaged heart muscle. In the present study, as the next generation of myocardial tissue engineering we demonstrate the in vitro fabrication of pulsatile myocardial tubes using cell sheet engineering technologies. Three neonatal rat cardiomyocyte sheets, which were harvested from temperature-responsive culture dishes, were wrapped around fibrin tubes using a novel cell sheet-wrapping device. The tubular constructs demonstrated spontaneous, synchronized pulsation within 3h after cell sheet wrapping. Contractile force measurements showed that the contractile force increased in accordance with both increasing rest length (Starling mechanism) and increasing extracellular Ca(2+) concentration. Furthermore, the tissue-engineered myocardial tubes presented measurable inner pressure changes evoked by tube contraction (0.11+/-0.01mmHg, max 0.15mmHg, n=5). Histological analyses revealed both well-differentiated sarcomeres and diffuse gap junctions within the myocardial tissues that resembled native cardiac muscle. These data indicate that tissue-engineered myocardial tubes have native heart-like structure and function. These new myocardial tissue constructs should be useful for future applications in physiological studies and pharmacological screening, and present a possible core technology for the creation of engineered tissues capable of independent cardiac assistance.
机译:作为修复受损心肌的替代方法,涉及注射离体细胞和组织工程化的心肌膜片移植的再生医学已受到广泛关注。在本研究中,作为下一代心肌组织工程,我们演示了使用细胞片工程技术体外制造搏动性心肌管。使用新颖的细胞片包裹装置,将从温度响应性培养皿中收获的三只新生大鼠心肌细胞片包裹在纤维蛋白管周围。管状结构在细胞片包裹后3h内显示出自发的,同步的搏动。收缩力测量结果表明,收缩力根据静止长度的增加(史达琳机制)和细胞外Ca(2+)浓度的增加而增加。此外,组织工程化的心肌管的收缩引起可测量的内部压力变化(0.11 +/- 0.01mmHg,最大0.15mmHg,n = 5)。组织学分析显示,在类似于天然心肌的心肌组织内,分化良好的肉瘤和弥散的间隙连接。这些数据表明组织工程化的心肌管具有天然的心脏样结构和功能。这些新的心肌组织构建体应可用于将来在生理研究和药理学筛选中的应用,并为创建能够独立心脏辅助的工程组织提供可能的核心技术。

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