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Manipulations and Alterations of the Force-Frequency Response in Isolated Cardiac Muscle.

机译:在孤立的心肌中的力-频率响应的操纵和改变。

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摘要

There are three main physiological governing mechanisms for cardiac contractility; the force-frequency response, the length-tension response, and the beta-adrenergic response. One of the major hallmarks of heart failure is a decrease in the force of contraction with increasing frequency. Here we utilize the ex vivo isolated cardiac muscle in an attempt to discuss the physiological role of the force-frequency response in health. We aim to determine the functional attributes of the normal heart by studying alterations in contractility, calcium transient amplitude, and phosphorylation status following changes in frequency, alterations in beta-adrenergic stimulation, and chronic stretch. All experiments were conducted on isolated muscle preparations extracted from the right ventricular free wall of the male New Zealand white rabbit. Our hope is to increase the understanding of the manipulations and alterations that occur in the context of the force-frequency response in health.;We first determined the direct changes in the calcium and force response on a beat-to-beat basis during an instantaneous change in frequency. Because heart failure is rarely a spontaneous event, determining the minute changes in calcium transient amplitude as it relates to force production provides insight into the intricate balance that occurs at every beat. In this study we were able to highlight the dynamic relationship between force and calcium during the process of force stabilization at different frequencies.;In additional studies, we determined the effects of beta-adrenergic stimulation in conjunction to the force-frequency response. This work aimed to combine the force-frequency response with the beta-adrenergic response in a controlled manner. These experiments highlighted a modulation of the force-frequency response during beta-adrenergic stimulation, suggesting an important role for beta-stimulation in immediate contractile alterations which have an inhibitory effect on the response to frequency.;Finally, we determined the time dependent effects of stretch on alterations of the force-frequency response. We show that if a muscle is set to contract at a maintained stretch, there is a significant reversal of the force-frequency response that occurs in conjunction with alterations in the phosphorylation state of key myofilament proteins after 24 hours. Taken together, these results highlight potential modulators of the force-frequency relationship, which could be ideal targets for future work.
机译:心脏收缩的三种主要生理调控机制是:力-频率响应,长度-张力响应和β-肾上腺素能响应。心力衰竭的主要标志之一是收缩力随着频率增加而降低。在这里,我们利用离体离体的心肌,试图讨论力频率响应在健康中的生理作用。我们旨在通过研究收缩力,钙瞬变幅度和频率变化,β-肾上腺素能刺激的改变以及慢性拉伸后的磷酸化状态的改变来确定正常心脏的功能属性。所有实验都是在从雄性新西兰白兔的右心室游离壁提取的分离的肌肉制剂上进行的。我们的希望是增进对健康中力量频率反应中发生的操纵和改变的理解。;我们首先确定了在瞬时搏动的基础上,钙和力量反应的直接变化频率变化。由于心力衰竭很少是自发事件,因此确定与力产生有关的钙瞬变幅度的微小变化可洞悉每次搏动时发生的复杂平衡。在这项研究中,我们能够突出显示在不同频率的力稳定过程中,力与钙之间的动态关系。在其他研究中,我们确定了β-肾上腺素能刺激与力-频率响应的关系。这项工作旨在以受控的方式将力频率响应与β-肾上腺素能响应相结合。这些实验强调了β-肾上腺素能刺激过程中力-频率反应的调节,表明β-刺激在立即收缩变化中具有重要作用,对频率响应具有抑制作用。最后,我们确定了时间依赖性效应拉伸力-频率响应的变化。我们显示,如果将肌肉设置为在维持的伸展状态下收缩,则24小时后与关键肌丝蛋白磷酸化状态的改变相关的力-频率响应将发生重大逆转。综上所述,这些结果突出了力-频率关系的潜在调制器,这可能是未来工作的理想目标。

著录项

  • 作者

    Haizlip, Kaylan Michelle.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Biology Physiology.;Biophysics General.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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