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首页> 外文期刊>American Journal of Physiology >Electrophysiological properties of the L-type Ca(2+) current in cardiomyocytes from bluefin tuna and Pacific mackerel.
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Electrophysiological properties of the L-type Ca(2+) current in cardiomyocytes from bluefin tuna and Pacific mackerel.

机译:从蓝鳍金枪鱼和太平洋鲭鱼的心肌细胞中的L型Ca(2+)电流的电生理特性。

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Tunas are capable of exceptionally high maximum metabolic rates; such capability requires rapid delivery of oxygen and metabolic substrate to the tissues. This requirement is met, in part, by exceptionally high maximum cardiac outputs, opening the possibility that myocardial Ca(2+) delivery is enhanced in myocytes from tuna compared with those from other fish. In this study, we investigated the electrophysiological properties of the cardiac L-type Ca(2+) channel current (I(Ca)) to test the hypothesis that Ca(2+) influx would be large and have faster kinetics in cardiomyocytes from Pacific bluefin tuna (Thunnus orientalis) than in those from its sister taxon, the Pacific mackerel (Scombe japonicus). In accordance with this hypothesis, I(Ca) in atrial myocytes from bluefin tuna had significantly greater peak current amplitudes and faster fast inactivation kinetics (-4.4 +/- 0.2 pA/pF and 25.9 +/- 1.6 ms, respectively) than those from mackerel (-2.7 +/- 0.5 pA/pF and 32.3 +/- 3.8 ms, respectively). Steady-state activation, inactivation, and recovery from inactivation were also faster in atrial myocytes from tuna than from mackerel. In ventricular myocytes, current amplitude and activation and inactivation rates were similar in both species but elevated compared with those of other teleosts. These results indicate enhanced I(Ca) in atrial myocytes from bluefin tuna compared with Pacific mackerel; this enhanced I(Ca) may be associated with elevated cardiac performance, because I(Ca) delivers the majority of Ca(2+) involved in excitation-contraction coupling in most fish hearts. Similarly, I(Ca) is enhanced in the ventricle of both species compared with other teleosts and may play a role in the robust cardiac performance of fishes of the family Scombridae.
机译:金枪鱼具有极高的最大代谢率;这种能力需要将氧气和代谢底物快速输送到组织。此需求部分地通过极高的最大心输出量得以满足,从而打开了金枪鱼肌细胞与其他鱼类相比心肌Ca(2+)传递增强的可能性。在这项研究中,我们调查了心脏L型Ca(2+)通道电流(I(Ca))的电生理特性,以测试以下假设:Ca(2+)流入量大,并且来自太平洋的心肌细胞动力学更快蓝鳍金枪鱼(Thunnus Orientalis)比其姊妹分类单元太平洋鲭鱼(Scombe japonicus)中的金枪鱼更重要。根据这一假设,来自蓝鳍金枪鱼的心房肌细胞中的I(Ca)具有明显更高的峰值电流幅度和更快的快速失活动力学(分别为-4.4 +/- 0.2 pA / pF和25.9 +/- 1.6 ms)。鲭鱼(分别为-2.7 +/- 0.5 pA / pF和32.3 +/- 3.8 ms)。金枪鱼心房肌细胞的稳态活化,失活和失活恢复也比鲭鱼快。在心室肌细胞中,这两个物种的电流幅度,激活和失活率均相似,但与其他硬骨鱼相比却升高。这些结果表明,与太平洋鲭鱼相比,蓝鳍金枪鱼心房肌细胞中的I(Ca)增强。这种增强的I(Ca)可能与提高的心脏功能有关,因为I(Ca)传递了大多数鱼心中与激励-收缩耦合有关的大部分Ca(2+)。类似地,与其他硬骨鱼相比,这两个物种的心室中的I(Ca)均得到增强,并且可能在com科鱼类的强健心脏性能中发挥作用。

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