University of Alabama at Birmingham, Department of Biomedical Engineering, Birmingham, 35294, United States of America.
University of Alabama at Birmingham, Division of Cardiovascular Disease, Department of Medicine, Birmingham, 35294, United States of America.
Sci Rep. 2018 Jul 12;8(1):10506. doi: 10.1038/s41598-018-28743-w.
Mechanical stimulation can elicit electrical activation of the heart. This mechanosensitivity can start life-threatening arrhythmias (commotio cordis) or terminate them (precordial thump). Mechanosensitivity may also be involved in arrhythmogenesis in other settings. Stretch-activated ion channels (SACs) are thought to be important in mechanosensitivity and a number of agents that block them have been identified. Such agents could potentially be used as tools in experimental investigation of mechanosensitivity. However, studies using them in intact-heart preparations have yielded inconsistent results. In the present study, we used isolated, perfused hearts from 25-35 kg pigs and a computer-controlled device that repeatably delivered focal mechanical stimuli. The concentration-dependent ability of the SAC blocker gadolinium to suppress mechanical activation was assessed by the success rate of mechanical stimulation and by the delay between successful mechanical stimulation and electrical activation. In six hearts, perfusate was recirculated. In an additional six hearts, perfusate was not recirculated to prevent gadolinium from forming complexes with metabolic waste and possibly precipitating. Gadolinium did not suppress mechanically-induced activation. Although gadolinium has been shown to be an effective SAC blocker in isolated cells, using it to probe the role of mechanical stimulation in whole heart preparations should be done with great caution.
机械刺激可引发心脏电激活。这种机械敏感性可引发危及生命的心律失常(震荡性心搏骤停),也可终止心律失常(心前区捶击)。机械敏感性也可能与其他情况下的心律失常发生有关。拉伸激活的离子通道(SAC)被认为在机械敏感性中很重要,已经确定了许多可阻断它们的药物。这些药物有可能被用作机械敏感性实验研究的工具。然而,在完整心脏制剂中使用这些药物的研究得出了不一致的结果。在本研究中,我们使用了 25-35 公斤猪的离体灌注心脏和一个可重复施加焦点机械刺激的计算机控制设备。通过机械刺激的成功率和成功机械刺激与电激活之间的延迟,评估了 SAC 阻断剂钆的浓度依赖性抑制机械激活的能力。在六只心脏中,灌注液被再循环。在另外六只心脏中,未再循环灌注液以防止钆与代谢废物形成复合物并可能沉淀。钆并没有抑制机械诱导的激活。尽管钆已被证明是一种有效的分离细胞中的 SAC 阻断剂,但在整个心脏制剂中使用它来探测机械刺激的作用时应非常谨慎。