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中度和深度低温对大鼠心室肌细胞Ca2+信号传导的影响。

Effects of moderate and deep hypothermia on Ca2+ signaling in rat ventricular myocytes.

作者信息

Groban Leanne, Zapata-Sudo Gisele, Lin Marina, Nelson Thomas E

机构信息

Department of Anesthesiology, Wake Forest University School of Medicine, Winston-Salem, NC 27157-1009, USA.

出版信息

Cell Physiol Biochem. 2002;12(2-3):101-10. doi: 10.1159/000063786.

Abstract

BACKGROUND/AIMS: We investigated whether the degree of hypothermia determines the impairment in cardiac muscle function upon rewarming and whether the sarcoplasmic reticulum Ca2+ release channel, RyR(2), contributes to hypothermia-induced changes in myoplasmic [Ca2+].

METHODS

Tension measurements using rat papillary muscle and calcium transients (Fluorescent Ca2+ indicator Fura 2-AM) in rat ventricular myocytes were compared during deep (10 degrees C-16 degrees C) and moderate hypothermic (28 degrees C) myocardial temperatures. In a second experiment, myocytes were pretreated with dantrolene, an RyR(2) antagonist; calcium transients were determined at control temperatures (32 degrees C), 16 degrees C, and upon rewarming (32 degrees C).

RESULTS

Papillary muscle contractility and myocyte calcium transients were significantly reduced during and after rewarming from 16 degrees C. At 28 degrees C, papillary muscle isometric tension was potentiated and calcium transients were unaffected. After rewarming from 28 degrees C, excitation-contraction coupling was maintained as isometric tension returned to 90% of control values. After rewarming from 16 degrees C, myocytes pretreated with dantrolene had return of calcium transients to 89% of control values while myocytes not treated with dantrolene recovered to only 50% of their control values.

CONCLUSION

We conclude that deep hypothermia, as opposed to moderate hypothermia of the myocardium, disrupts excitation-contraction coupling at cellular and tissue levels. Our finding of preserved calcium transients in dantrolene-pretreated myocytes exposed to deep hypothermia suggests a potential role for the RyR(2) channel in post-hypothermia reductions in cardiac function.

摘要

背景/目的:我们研究了低温程度是否决定复温时心肌功能的损害,以及肌浆网Ca2+释放通道RyR(2)是否参与低温诱导的肌浆[Ca2+]变化。

方法

在深度低温(10℃-16℃)和中度低温(28℃)心肌温度下,比较使用大鼠乳头肌进行的张力测量和大鼠心室肌细胞中的钙瞬变(荧光Ca2+指示剂Fura 2-AM)。在第二个实验中,用丹曲林(一种RyR(2)拮抗剂)预处理心肌细胞;在对照温度(32℃)、16℃和复温时(32℃)测定钙瞬变。

结果

从16℃复温期间及复温后,乳头肌收缩力和心肌细胞钙瞬变显著降低。在28℃时,乳头肌等长张力增强,钙瞬变不受影响。从28℃复温后,随着等长张力恢复到对照值的90%,兴奋-收缩偶联得以维持。从16℃复温后,用丹曲林预处理的心肌细胞钙瞬变恢复到对照值的89%,而未用丹曲林处理的心肌细胞仅恢复到对照值的50%。

结论

我们得出结论,与心肌中度低温相反,深度低温会在细胞和组织水平破坏兴奋-收缩偶联。我们发现在暴露于深度低温的经丹曲林预处理的心肌细胞中钙瞬变得以保留,这表明RyR(2)通道在低温后心脏功能降低中可能起作用。

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