首页> 外文期刊>American Journal of Physiology >Decreased Ca2+ extrusion via Na+/Ca2+ exchange in epicardial left ventricular myocytes during compensated hypertrophy.
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Decreased Ca2+ extrusion via Na+/Ca2+ exchange in epicardial left ventricular myocytes during compensated hypertrophy.

机译:在补偿性肥大过程中,心外膜左心室心肌细胞中Na + / Ca2 +交换引起的Ca2 +挤出减少。

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Hypertension-induced cardiac hypertrophy alters the amplitude and time course of the systolic Ca2+ transient of subepicardial and subendocardial ventricular myocytes. The present study was designed to elucidate the mechanisms underlying these changes. Myocytes were isolated from the left ventricular subepicardium and subendocardium of 20-wk-old spontaneously hypertensive rats (SHR) and age-matched normotensive Wistar-Kyoto rats (WKY; control). We monitored intracellular Ca2+ using fluo 3 or fura 2; caffeine (20 mmol/l) was used to release Ca2+ from the sarcoplasmic reticulum (SR), and Ni2+ (10 mM) was used to inhibit Na+/Ca2+ exchange (NCX) function. SHR myocytes were significantly larger than those from WKY hearts, consistent with cellular hypertrophy. Subepicardial myocytes from SHR hearts showed larger Ca2+ transient amplitude and SR Ca2+ content and less Ca2+ extrusion via NCX compared with subepicardial WKY myocytes. These parameters did not change in subendocardial myocytes. The time course of decline of the Ca2+ transient was the same in all groups of cells, but its time to peak was shorter in subepicardial cells than in subendocardial cells in WKY and SHR and was slightly prolonged in subendocardial SHR cells compared with WKY subendocardial myocytes. It is concluded that the major change in Ca2+ cycling during compensated hypertrophy in SHR is a decrease in NCX activity in subepicardial cells; this increases SR Ca2+ content and hence Ca2+ transient amplitude, thus helping to maintain the strength of contraction in the face of an increased afterload.
机译:高血压引起的心脏肥大改变了心外膜下和心内膜下心室肌细胞收缩Ca2 +瞬变的幅度和时间进程。本研究旨在阐明这些变化的潜在机制。从20周龄自发性高血压大鼠(SHR)和年龄相匹配的正常血压Wistar-Kyoto大鼠(WKY;对照)的左心室皮下和心内膜分离心肌细胞。我们使用fluo 3或fura 2监测细胞内Ca2 +。咖啡因(20 mmol / l)用于从肌浆网(SR)释放Ca2 +,Ni2 +(10 mM)用于抑制Na + / Ca2 +交换(NCX)功能。 SHR心肌细胞显着大于WKY心脏,与细胞肥大一致。与心外膜下WKY心肌细胞相比,来自SHR心脏的心外膜下心肌细胞显示出较大的Ca2 +瞬时振幅和SR Ca2 +含量,并且通过NCX挤出的Ca2 +较少。这些参数在心内膜下心肌细胞中没有改变。 Ca2 +瞬变下降的时间过程在所有细胞组中都是相同的,但是与WKY心内膜下心肌细胞相比,在WKY和SHR中,心外膜下细胞达到峰值的时间短于心内膜下细胞,而在心内膜下SHR细胞中其到达峰值的时间略长。结论是,在SHR代偿性肥大过程中,Ca2 +循环的主要变化是心外膜下细胞NCX活性的降低。这增加了SR Ca2 +含量,从而增加了Ca2 +瞬态振幅,从而有助于在面对增加的后负荷时保持收缩强度。

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