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首页> 外文期刊>The Journal of Experimental Biology >Effects of temperature, adrenaline and ryanodine on power production in rainbow trout Oncorhynchus mykiss ventricular trabeculae
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Effects of temperature, adrenaline and ryanodine on power production in rainbow trout Oncorhynchus mykiss ventricular trabeculae

机译:温度,肾上腺素和瑞丹碱对虹鳟Oncorhynchus mykiss心室小梁的功率产生的影响

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This study is the first to examine the contractility of teleost ventricular muscle in an oscillating muscle preparation. The experiments were designed to test the relative importance of Ca2+ released from the sarcoplasmic reticulum (SR) and Ca2+ influx across the sarcolemma (SL) to cardiac performance in rainbow trout Oncorhynchus mykiss. Adrenaline and ryanodine were used to modulate Ca2+ flux through the SL and SR, respectively. Experiments were conducted at two temperatures (12 degrees C and 22 degrees C) (1) to investigate the effect of an acute temperature change (from 12 degrees C to 22 degrees C) on power production, and (2) to test the effects of acute temperature change on the relative contributions of the SR and SL Ca2+ flux to power production. Concordant with isometric studies, the results showed that trans-sarcolemmal influx was the major source of Ca2+ (approximately 90 %) for cardiac power production at all temperatures. This SL Ca2+ influx was increased with adrenergic stimulation. The power curves generated in this study suggest an optimum frequency for power production of approximately 1.0 Hz at 12 degrees C, which corresponds well to typical in vivo heart rates for rainbow trout at that temperature, Further, this study indicated that temperature-induced changes in power output cannot be predicted from temperature-induced changes in isometric tension because the temperature-sensitivity of work and power proved to be greater than that of isometric tension. This finding is important because many previous studies have assessed cardiac contractility using only isometric tension. [References: 45]
机译:这项研究是第一个检查硬骨性心室肌在振荡性肌肉准备中的收缩性的研究。设计这些实验是为了测试从肌质网(SR)释放的Ca2 +和穿过肌膜(SL)的Ca2 +流入对虹鳟Oncorhynchus mykiss的心脏性能的相对重要性。肾上腺素和ryanodine分别用于调节通过SL和SR的Ca2 +通量。在两个温度(12摄氏度和22摄氏度)下进行了实验(1)研究急剧的温度变化(从12摄氏度到22摄氏度)对发电的影响,以及(2)测试温度的影响。温度急剧变化对SR和SL Ca2 +通量对发电的相对贡献。与等轴测图研究一致,结果表明,在所有温度下,横穿肌膜的血流都是心脏动力产生的Ca2 +的主要来源(约90%)。 SL Ca2 +内流随着肾上腺素能刺激而增加。这项研究中产生的功率曲线表明,在12摄氏度时,最佳的发电频率约为1.0 Hz,这与该温度下虹鳟的典型体内心率相对应。此外,这项研究表明,温度诱发的变化无法通过温度引起的等轴测张力变化来预测功率输出,因为功和功率的温度敏感性被证明大于等轴测张力。这一发现很重要,因为许多先前的研究仅使用等轴测张力来评估心脏收缩力。 [参考:45]

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