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首页> 外文期刊>The Journal of Experimental Biology >Temperature dependence of cardiac sarcoplasmic reticulum function in rainbow trout myocytes
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Temperature dependence of cardiac sarcoplasmic reticulum function in rainbow trout myocytes

机译:虹鳟心肌细胞中心肌肌浆网功能的温度依赖性

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To explore how the cardiac sarcoplasmic reticulum (SR) functions over a range of temperatures, we used whole-cell voltage clamp combined with rapid caffeine application to study SR Ca2+ accumulation, release and steady-state content in atrial myocytes from rainbow trout. Myocytes were isolated from rainbow trout acclimated to 14degreesC, and the effect of varying stimulation pulse number, frequency and experimental temperature (7degreesC, 14degreesC and 21degreesC) on SR function was studied. To add physiological relevance, in addition to 200 ms square (SQ) voltage pulses, myocytes were stimulated with temperature-specific action potentials (AP) applied at relevant frequencies for each test temperature. We found that the SR accumulated Ca2+ more rapidly and to a greater concentration (1043+/-189 mumoll(-1) Ca2+, 1138+/-173 mumoll(-1) Ca2+, and 1095+/-142 mumoll(-1) Ca2+ at 7degreesC, 14degreesC and 21degreesC, respectively) when stimulated with physiological AP waveforms at physiological frequencies compared with 200ms SQ pulses at the same frequencies (664+/-180 mumoll(-1) Ca2+, 474+/-75 mumoll(-1) Ca2+ and 367+/-42 mumoll(-1) Ca2+ at 7degreesC, 14degreesC and 21degreesC, respectively). Also, and in contrast to 200ms SQ pulse stimulation, temperature had little effect on steady-state SR Ca2+ accumulation during AP stimulation. Furthermore, we observed SR-Ca2+-dependent inactivation of the L-type Ca2+ channel current (I-Ca) at 7degreesC, 14degreesC and 21degreesC, providing additional evidence of maintained SR function in fish hearts over an acute range of temperatures. We conclude that the waveform of the AP may be critical in ensuring adequate SR Ca2+ cycling during temperature change in rainbow trout in vivo.
机译:为了探索在一定温度范围内心肌肌质网(SR)的功能,我们使用全细胞电压钳结合快速咖啡因应用来研究虹鳟心房肌细胞中SR Ca2 +的积累,释放和稳态含量。从驯化至14℃的虹鳟鱼中分离出心肌细胞,研究刺激脉冲数,频率和实验温度(7℃,14℃和21℃)的变化对SR功能的影响。为了增加生理相关性,除了200 ms平方(SQ)电压脉冲外,还针对每个测试温度,以相关频率施加温度特异性动作电位(AP)刺激心肌细胞。我们发现SR积累的Ca2 +更快且浓度更高(1043 +/- 189 mumoll(-1)Ca2 +,1138 +/- 173 mumoll(-1)Ca2 +和1095 +/- 142 mumoll(-1)当以生理频率的生理AP波形刺激时的Ca2 +分别为7°C,14°C和21°C),而相同频率下的200ms SQ脉冲(664 +/- 180 mumoll(-1)Ca2 +,474 +/- 75 mumoll(-1) )Ca2 +和367 +/- 42 mumoll(-1)Ca2 +分别在7°C,14°C和21°C下)。而且,与200ms SQ脉冲刺激相反,温度对AP刺激期间稳态SR Ca2 +积累的影响很小。此外,我们观察到在7℃,14℃和21℃下L型Ca2 +通道电流(I-Ca)的SR-Ca2 +依赖性失活,提供了在急性温度范围内鱼心中SR功能维持的其他证据。我们得出结论,在体内虹鳟鱼温度变化期间,AP的波形可能对确保适当的SR Ca2 +循环至关重要。

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