首页> 外文OA文献 >Temperature dependence of Ca2+ wave properties in cardiomyocytes: implications for the mechanism of autocatalytic Ca2+ release in wave propagation.
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Temperature dependence of Ca2+ wave properties in cardiomyocytes: implications for the mechanism of autocatalytic Ca2+ release in wave propagation.

机译:心肌细胞中Ca2 +波动特性的温度依赖性:对波动传播中自催化Ca2 +释放机制的影响。

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摘要

Digital imaging microscopy of fluo-3 fluorescence was used to study the velocity and shape of intracellular Ca2+ waves in isolated rat cardiomyocytes as a function of temperature. Decreasing the temperature from 37 to 17 degrees C reduced the longitudinal wave velocity by a factor of 1.8 and remarkably slowed the decay of [Ca2+]i in the trailing flank of a wave. Using image analysis, rise times, and half-maximum decay times of local Ca2+ transients, which characterize the processes of local Ca2+ release and removal, were determined as a function of temperature. Apparent activation energies for wave front propagation, local Ca2+ release, and local Ca2+ removal were derived from Arrhenius plots and amounted to -23, -28, and -46 kJ/mol, respectively. The high activation energy of Ca2+ removal, which arises from the activity of the sarcoplasmic reticulum (SR) Ca2+ ATPase, relative to those of longitudinal wave propagation and local Ca2+ release excludes the hypothetical mechanism of regenerative "spontaneous Ca2+ release," in which Ca2+ that has been taken up from the approaching wavefront triggers Ca2+ release at a luminal site of the SR. It is consistent, however, with the hypothesis that Ca2+ wave propagation is based on Ca(2+)-induced Ca2+ release where Ca2+ triggers release on the cytosolic face of the SR.
机译:使用fluo-3荧光数字成像显微镜研究了离体大鼠心肌细胞内Ca2 +波的速度和形状随温度的变化。将温度从37摄氏度降低到17摄氏度,纵向波速降低了1.8倍,并显着减慢了波尾翼中[Ca2 +] i的衰减。使用图像分析,确定了局部Ca2 +瞬变的上升时间和最大半衰期,它们是局部Ca2 +释放和去除过程的特征,是温度的函数。波前传播,局部Ca2 +释放和局部Ca2 +去除的表观活化能从Arrhenius曲线得出,分别为-23,-28和-46 kJ / mol。相对于纵向波传播和局部Ca2 +释放的活性,由肌浆网(SR)Ca2 + ATPase的活性引起的Ca2 +去除的高活化能排除了再生“自发Ca2 +释放”的假想机理,其中Ca2 +已经从接近的波前触发信号中吸收了Ca 2+在SR的腔部位释放。但是,这与Ca2 +波传播基于Ca(2+)诱导的Ca2 +释放的假设是一致的,其中Ca2 +触发了SR的胞质面上的释放。

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