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Investigation into the effects of varying frequency of mechanical stimulation in a cycle-by-cycle manner on engineered cardiac construct function

机译:在逐周期地对工程心脏构建功能的循环刺激改变频率的影响

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Mechanical stimulation has been used extensively to improve the function of cardiac engineered tissue, as it mimics the physical environment in which the tissue is situated during normal development. However, previous mechanical stimulation has been carried out under a constant frequency that more closely resembles a diseased heart. The goal of this study was to create a bioreactor system that would allow us to control the mechanical stimulation of engineered cardiac tissue on a cycle-by-cycle basis. This unique system allows us to determine the effects on cardiac construct function of introducing variability to the mechanical stretch. To test our bioreactor system, constructs created from neonatal rat cardiomyocytes entrapped in fibrin hydrogels were stimulated under various regimes for 2 weeks and then assessed for functional outcomes. No differences were observed in the final cell number in each condition, indicating that variability in frequency did not have a negative effect on viability. The forces were higher for all mechanical stimulation groups compared to static controls, although no differences were observed between the mechanically stimulated conditions, indicating that variable frequency on a cycle-by-cycle basis has limited effects on the resulting force. Although differences in the observed twitch force were not observed, differences in the protein expression indicate that variable-frequency mechanical stimulation had an effect on cell-cell coupling and growth pathway activation in the constructs. Thus, this bioreactor system provides a valuable tool for further development and optimization of engineered myocardial tissue as a repair or replacement strategy for patients undergoing heart failure. Copyright (C) 2014 John Wiley & Sons, Ltd.
机译:机械刺激已广泛使用以改善心脏工程组织的功能,因为它模拟了组织在正常发育过程中所在的物理环境。然而,先前的机械刺激已经在恒定的频率下进行,更与患病的心脏相似。本研究的目标是创建生物反应器系统,使我们能够在逐个循环的基础上控制工程心脏组织的机械刺激。这种独特的系统允许我们确定对心脏构造功能的影响引入机械拉伸的可变性。为了测试我们的生物反应器系统,在各种制度下捕获从纤维蛋白水凝胶中捕获的新生大鼠心肌细胞产生的构建体2周,然后评估功能结果。在每个条件下最终的细胞数未观察到差异,表明频率的可变性对生存性没有负面影响。与静态对照相比,所有机械刺激基团的力较高,尽管在机械刺激的条件下观察到没有差异,但表明逐循环基础上的可变频率对所得力有有限的影响。尽管未观察到观察到的抽搐力的差异,但蛋白质表达的差异表明可变频率的机械刺激对构建体中的细胞 - 细胞偶联和生长途径激活产生了影响。因此,这种生物反应器系统提供了一种有价值的工具,用于进一步发展和优化工程心肌组织作为经历心力衰竭的患者的修复或替代策略。版权所有(c)2014 John Wiley&Sons,Ltd。

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