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首页> 外文期刊>American Journal of Physiology >Characteristics of intracellular Ca2+ cycling in intact rat heart: a comparison of sex differences.
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Characteristics of intracellular Ca2+ cycling in intact rat heart: a comparison of sex differences.

机译:完整大鼠心脏中细胞内Ca2 +循环的特征:性别差异的比较。

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摘要

Males and females show distinct differences in action potential waveform, ion channel expression patterns, and ECG characteristics. However, it is not known how sex-based differences in Ca2+ cycling might contribute to these differences in electrophysiological activity. The goal of this study was to investigate the differences in cellular Ca2+ transients in males and females and to examine how these might contribute to electrophysiological function. Ca2+ transients were measured in individual myocytes within microscopic regions of the fluo-4 AM-loaded left ventricular epicardium of intact rat heart of both sexes (3 to 5 mo old). Pacing protocols were used to measure transient characteristics at a basic cycle length of 500 ms and during 10-s trains of rapid pacing delivered to the left ventricular apex. Ca2+ transients were smaller in magnitude and longer in duration in females than in males. More importantly, the variability in Ca2+ transient characteristics between myocytes in a microscopic recording site (heterogeneity index) was greater for females than males for characteristics related to transient duration. The rate sensitivity of Ca2+ alternans development in individual myocytes was greater in females than in males, but there was also a greater heterogeneity in cellular responses to the rate dependence of alternans development in females. The longer Ca2+ transients in females were also associated with slower restitution, which was likely to be responsible for the development of Ca2+ and repolarization alternans at slower heart rates. These results demonstrate that there are distinct differences in cellular Ca2+ cycling in male and female rat hearts. Not only is there slower reuptake of Ca2+ in female rats, but there is greater local variability in Ca2+ cycling at the microscopic level. These sex-based differences in Ca2+ cycling could contribute to differences in ECG morphology and in arrhythmia sensitivity in males and females.
机译:男性和女性在动作电位波形,离子通道表达模式和ECG特征方面显示出明显的差异。但是,尚不知道Ca2 +循环中基于性别的差异如何导致这些电生理活动差异。这项研究的目的是调查男性和女性中细胞内Ca2 +瞬变的差异,并研究它们可能如何促进电生理功能。 Ca2 +瞬变是在完整的两性大鼠心脏(3到5个月大)的经fluo-4 AM加载的左心室心包fluo-4 AM的微观区域内的单个心肌细胞中测量的。起搏协议用于在500 ms的基本周期长度和10 s的快速起搏序列中测量瞬时特征,这些起搏被传递到左心室顶点。与男性相比,女性的Ca2 +瞬变幅度较小,持续时间更长。更重要的是,在微观记录部位,心肌细胞之间Ca2 +瞬态特征的变异性(异质性指数)与瞬态持续时间相关的特征相比,男性要大于男性。雌性个体肌细胞中Ca2 +交替蛋白发育的速率敏感性比雄性要大,但是女性对交替蛋白生长速率依赖性的细胞反应也存在更大的异质性。女性中较长的Ca2 +瞬变也与恢复较慢有关,这很可能是造成心律较慢时Ca2 +和复极化交联蛋白的发展的原因。这些结果表明,在雄性和雌性大鼠心脏中,细胞内Ca2 +循环存在明显差异。在雌性大鼠中,不仅Ca2 +的吸收较慢,而且在微观水平上Ca2 +循环的局部变异性更大。这些基于性别的Ca2 +循环差异可能会导致男性和女性心电图形态和心律失常敏感性方面的差异。

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