首页> 外文期刊>American Journal of Physiology >Abnormal myocyte Ca2+ homeostasis in rabbits with pacing-induced heart failure.
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Abnormal myocyte Ca2+ homeostasis in rabbits with pacing-induced heart failure.

机译:起搏诱发的心力衰竭兔的心肌细胞Ca2 +稳态异常。

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摘要

To determine whether there are abnormalities in myocyte excitation-contraction coupling and intracellular Ca2+ concentration ([Ca2+]i) homeostasis in pacing-induced heart failure (PF), we measured L-type Ca2+ current (ICa,L) and Na+/Ca2+ exchanger current (INa/Ca) with voltage clamp and measured intracellular Na+ concentration ([Na+]i) and [Ca2+]i with the use of sodium-binding benzofuran isophthalate (SBFI) and fluo 3 in ventricular myocytes isolated from control and paced rabbits. The peak systolic and diastolic levels and the amplitude of electrically stimulated [Ca2+]i transients (0.25 Hz, extracellular Ca2+ concentration = 1.08 mM) were significantly less in PF myocytes. Also, there was prolongation of the times to peak and decline of [Ca2+]i transients. ICa,L density was markedly decreased in PF myocytes. INa/Ca at -40 mV elicited by rapid exposure to 0 Na+ solution with a rapid solution switcher was significantly reduced in PF myocytes, suggesting that the function of the Na+/Ca2+ exchanger is impaired in these myocytes. In PF myocytes the decline of the [Ca2+]i transient when the Na+/Ca2+ exchanger was abruptly disabled was markedly prolonged compared with the decline in control myocytes, consistent with depressed sarcoplasmic reticulum (SR) Ca2+-ATPase function. RNase protection assay showed decreased levels of Na+/Ca2+ exchanger and SR Ca2+-ATPase mRNA in PF hearts, consistent with the function studies. We conclude that the functions of L-type Ca2+ channels, Na+/Ca2+ exchanger, and SR Ca2+-ATPase are impaired in myocytes from rabbit hearts with failure induced by rapid pacing. These abnormalities result in reduced [Ca2+]i transients and systolic and diastolic dysfunction and appear to account for the abnormal ventricular function observed.
机译:为了确定起搏诱发的心力衰竭(PF)中是否存在肌细胞兴奋收缩耦合和细胞内Ca2 +浓度([Ca2 +] i)稳态的异常,我们测量了L型Ca2 +电流(ICa,L)和Na + / Ca2 +交换剂电压钳制电流(INa / Ca),并使用钠结合苯并呋喃间苯二酸酯(SBFI)和fluo 3从对照组和成年兔的心室肌细胞中测量细胞内Na +浓度([Na +] i)和[Ca2 +] i。 PF心肌细胞的峰值收缩和舒张水平以及电刺激的[Ca2 +] i瞬变幅度(0.25 Hz,细胞外Ca2 +浓度= 1.08 mM)显着降低。另外,[Ca2 +] i瞬变达到峰值和下降的时间也延长了。 PF肌细胞中ICa,L密度显着降低。通过快速溶液切换器快速暴露于0 Na +溶液引起的-40 mV INa / Ca在PF心肌细胞中显着降低,表明这些细胞中Na + / Ca2 +交换子的功能受损。在PF心肌细胞中,突然禁用Na + / Ca2 +交换子时,[Ca2 +] i瞬变的下降与对照心肌细胞的下降相比明显延长,这与肌浆网(SR)Ca2 + -ATPase功能降低相一致。 RNase保护试验显示,PF心内Na + / Ca2 +交换子和SR Ca2 + -ATPase mRNA的水平降低,与功能研究一致。我们得出的结论是,快速起搏诱发的兔心脏心肌细胞中L型Ca2 +通道,Na + / Ca2 +交换子和SR Ca2 + -ATPase的功能受损。这些异常导致减少的[Ca2 +] i瞬变以及收缩和舒张功能障碍,并且似乎可以解释观察到的心室功能异常。

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