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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Inotropic response of cardiac ventricular myocytes to beta-adrenergic stimulation with isoproterenol exhibits diurnal variation: involvement of nitric oxide.
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Inotropic response of cardiac ventricular myocytes to beta-adrenergic stimulation with isoproterenol exhibits diurnal variation: involvement of nitric oxide.

机译:异丙基肾上腺素对β-肾上腺素能刺激的心肌细胞的肌力反应表现出昼夜变化:一氧化氮的参与。

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RATIONALE: Although >10% of cardiac gene expression displays diurnal variations, little is known of their impact on excitation-contraction coupling. OBJECTIVE: To determine whether the time of day affects excitation-contraction coupling in rat ventricles. METHODS AND RESULTS: Left ventricular myocytes were isolated from rat hearts at 2 opposing time points, corresponding to the animals resting or active periods. Basal contraction and [Ca(2+)](i) was significantly greater in myocytes isolated during the resting versus active periods (cell shortening 12.4+/-0.3 versus 11.0+/-0.2%; P<0.05 and systolic [Ca(2+)](i) 422+/-12 versus 341+/-9 nmol/L; P<0.01. This corresponded to a greater sarcoplasmic reticulum (SR) Ca(2+) load (672+/-20 versus 551+/-13 nmol/L P<0.001). The increase in systolic [Ca(2+)](i) in response to isoproterenol (>3 nmol/L) was also significantly greater in resting versus active period myocytes, reflecting a greater SR Ca(2+) load at this time. This diurnal variation in response of Ca(2+)-homeostasis to isoproterenol translated to a greater incidence of arrhythmic activity in resting period myocytes. Inhibition of neuronal NO synthase during stimulation with isoproterenol, further increased systolic [Ca(2+)](i) and the percentage of arrhythmic myocytes, but this effect was significantly greater in active period versus resting period myocytes. Quantitative RT-PCR analysis revealed a 2.65-fold increase in neuronal NO synthase mRNA levels in active over resting period myocytes (P<0.05). CONCLUSIONS: The threshold for the development of arrhythmic activity in response to isoproterenol is higher during the active period of the rat. We suggest this reflects a reduction in SR Ca(2+) loading and a diurnal variation in neuronal NO synthase signaling.
机译:理由:尽管> 10%的心脏基因表达显示出昼夜变化,但对其兴奋-收缩耦合的影响知之甚少。目的:确定一天中的时间是否影响大鼠心室的兴奋-收缩耦合。方法和结果:在两个相对的时间点从大鼠心脏分离出左心室心肌细胞,分别对应于动物的休息或活跃时期。在休息与活动期间分离的心肌细胞中,基础收缩和[Ca(2 +)](i)显着更大(细胞缩短12.4 +/- 0.3对11.0 +/- 0.2%; P <0.05和收缩期[Ca(2 +)](i)422 +/- 12与341 +/- 9 nmol / L; P <0.01。这对应于较大的肌浆网(SR)Ca(2+)负荷(672 +/- 20与551+ / -13 nmol / LP <0.001)。静息期与活动期心肌细胞相比,对异丙肾上腺素(> 3 nmol / L)的收缩期[Ca(2 +)](i)的增加也明显更大,反映出更大的SR此时Ca(2+)的负荷。Ca(2+)稳态对异丙肾上腺素的反应的昼夜变化导致静息期心肌细胞的心律失常活动发生率更高。异丙肾上腺素刺激过程中神经元NO合酶的抑制作用进一步增加收缩期[Ca(2 +)](i)和心律失常性心肌细胞的百分比,但这种作用在活跃期的心肌细胞比静止期的心肌细胞明显更大。静息期心肌细胞活性神经元一氧化氮合酶mRNA水平升高2.65倍(P <0.05)。结论:在大鼠活动期间,对异丙肾上腺素的反应导致心律不齐活动发展的阈值较高。我们建议这反映了SR Ca(2+)负载的减少和神经元NO合酶信号的昼夜变化。

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