首页> 外文期刊>American Journal of Physiology >Cardiac excitation-contraction coupling is altered in myocytes from aged male mice but not in cells from aged female mice.
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Cardiac excitation-contraction coupling is altered in myocytes from aged male mice but not in cells from aged female mice.

机译:老年雄性小鼠的心肌细胞中心脏的兴奋-收缩偶联发生改变,而老年雌性小鼠的细胞中心脏的兴奋-收缩偶联没有改变。

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This study characterized age-related alterations in excitation-contraction (EC)-coupling in ventricular myocytes and investigated whether these alterations are affected by the sex of the animal. Voltage-clamp experiments were conducted in myocytes from young adult (approximately 7 mo) and aged (approximately 24 mo) male and female mice. Intracellular Ca(2+) concentrations and unloaded cell shortening were measured at 37 degrees C with fura-2 and a video edge detector. Fractional shortening and Ca(2+) current density were significantly reduced in aged male myocytes compared with those in young adult male cells. In addition, Ca(2+) transients were significantly smaller in aged male myocytes. Sarcoplasmic reticulum (SR) content, assessed by rapid application of 10 mM caffeine, declined with age in male myocytes. However, EC coupling gain and fractional release of SR Ca(2+) were similar in young adult and aged male cells. In contrast to results in male animals, fractional shortening and Ca(2+) current densities were similar in young adult and aged myocytes isolated from female hearts. Furthermore, Ca(2+) transient amplitudes were unaffected by age in female cells. Interestingly, SR Ca(2+) content was elevated in aged female myocytes, and fractional SR Ca(2+) release declined with age in females. However, the gain of EC coupling was not different in myocytes from young adult and aged female mice. These data demonstrate that age-related alterations in EC coupling are more prominent in myocytes from male hearts than in cells from female hearts and suggest that it is important to consider sex as a variable in studies of the effects of aging on cardiac EC coupling.
机译:这项研究的特点是与心室肌细胞的兴奋收缩(EC)耦合相关的年龄相关变化,并研究了这些变化是否受动物性别的影响。电压钳实验是在成年雄性和雌性小鼠(约7 mo)和成年(约24 mo)成年小鼠的肌细胞中进行的。在37摄氏度下使用fura-2和视频边缘检测器测量细胞内Ca(2+)浓度和未加载的细胞缩短。与年轻成年雄性细胞相比,老年雄性肌细胞的分数缩短和Ca(2+)电流密度显着降低。此外,Ca(2+)瞬变在老年男性心肌细胞中明显较小。通过快速应用10 mM咖啡因评估的肌质网(SR)含量随着年龄的增长而下降。但是,EC耦合增益和SR Ca(2+)的分数释放在年轻的成年和老年男性细胞中相似。与雄性动物的结果相反,在成年和成年的从女性心脏中分离出来的心肌细胞中,缩短分数和Ca(2+)电流密度相似。此外,Ca(2+)瞬变幅度不受女性细胞年龄的影响。有趣的是,SR Ca(2+)含量在老年女性心肌细胞中升高,并且部分SR Ca(2+)释放随女性年龄下降。然而,与成年和成年雌性小鼠相比,EC偶联在肌细胞中没有差异。这些数据表明,与男性心脏细胞相比,与男性心脏细胞相比,EC耦合中与年龄相关的变化更为明显,这表明在研究衰老对心脏EC耦合的影响中,将性别视为变量非常重要。

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