首页> 美国卫生研究院文献>International Journal of Molecular Sciences >T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure
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T-Tubular Electrical Defects Contribute to Blunted β-Adrenergic Response in Heart Failure

机译:T型管状电缺陷导致心力衰竭时β-肾上腺素反应迟钝

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摘要

Alterations of the β-adrenergic signalling, structural remodelling, and electrical failure of T-tubules are hallmarks of heart failure (HF). Here, we assess the effect of β-adrenoceptor activation on local Ca2+ release in electrically coupled and uncoupled T-tubules in ventricular myocytes from HF rats. We employ an ultrafast random access multi-photon (RAMP) microscope to simultaneously record action potentials and Ca2+ transients from multiple T-tubules in ventricular cardiomyocytes from a HF rat model of coronary ligation compared to sham-operated rats as a control. We confirmed that β-adrenergic stimulation increases the frequency of Ca2+ sparks, reduces Ca2+ transient variability, and hastens the decay of Ca2+ transients: all these effects are similarly exerted by β-adrenergic stimulation in control and HF cardiomyocytes. Conversely, β-adrenergic stimulation in HF cells accelerates a Ca2+ rise exclusively in the proximity of T-tubules that regularly conduct the action potential. The delayed Ca2+ rise found at T-tubules that fail to conduct the action potential is instead not affected by β-adrenergic signalling. Taken together, these findings indicate that HF cells globally respond to β-adrenergic stimulation, except at T-tubules that fail to conduct action potentials, where the blunted effect of the β-adrenergic signalling may be directly caused by the lack of electrical activity.
机译:β-肾上腺素信号的改变,结构重塑和T管的电衰竭是心力衰竭(HF)的标志。在这里,我们评估了β-肾上腺素受体激活对HF大鼠心室肌细胞电耦合和非耦合T管中局部Ca 2 + 释放的影响。我们采用超快速随机访问多光子(RAMP)显微镜,同时记录了与假手术组相比,来自冠状动脉结扎性HF大鼠模型的心室心肌细胞中多个T管的动作电位和Ca 2 + 瞬变。操作大鼠作为对照。我们证实,β-肾上腺素能刺激增加了Ca 2 + 火花的频率,降低了Ca 2 + 的瞬时变异性,并加速了Ca 2+ 的衰减。 sup>瞬态:β-肾上腺素刺激在对照组和HF心肌细胞中均具有所有这些作用。相反,HF细胞中的β-肾上腺素刺激仅在定期传导动作电位的T管附近加速Ca 2 + 升高。在未能传导动作电位的T管中发现的Ca 2 + 延迟升高反而不受β-肾上腺素信号的影响。综上所述,这些发现表明,HF细胞对β-肾上腺素的刺激产生整体反应,但在未能传导动作电位的T管处除外,在该处,β-肾上腺素信号传导的钝化作用可能直接由缺乏电活动引起。

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