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Effects of uniform electric fields on intracellular calcium transients in single cardiac cells.

机译:均匀电场对单个心肌细胞内钙瞬变的影响。

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Although intracellular calcium ([Ca(2+)](i)) transients in cardiac cells have been well studied in the uniformly polarized cell membrane, how these transients are modified during field stimulation when the cell membrane is nonuniformly polarized has not been investigated. In this study we characterized the effects of uniform field stimuli on [Ca(2+)](i) transients in isolated guinea pig cardiac cells. Single guinea pig cells were enzymatically isolated, loaded with the [Ca(2+)](i) fluorescent indicator fluo-3, and stimulated along their longitudinal axes with S1 or S1-S2 (S1-S2 = 50 ms) pulses. The fluorescence signals were recorded simultaneously from up to 12 sites along the cell length using a multisite mapping system. S1 pulse, applied during the resting phase of the action potential, induced [Ca(2+)](i) transients that had an earlier onset at the anodal-facing end, suggesting that [Ca(2+)](i) gradients (nabla[Ca(2+)](i)) develop during the rising phase of the [Ca(2+)](i) transients. With the assumption that the peak change in [Ca(2+)](i) is 980 nM, nabla[Ca(2+)](i) was estimated to be approximately 3.4 nM/microm in the anodal half of the cell for a nominal 10 V/cm field and negligible in the cathodal half. The S2 pulse that was applied during the plateau of the action potential also perturbed the [Ca(2+)](i) transients and produced [Ca(2+)](i) gradients directed from the center to either end of the cell. Mean nabla[Ca(2+)](i) in the anodal half of the cell (approximately 4.2 nM/microm) was found to be statistically higher than in the cathodal half (approximately 2.8 nM/microm).
机译:尽管已经在均匀极化的细胞膜中很好地研究了心脏细胞中的细胞内钙([Ca(2 +)](i))瞬变现象,但尚未研究如何在电场刺激期间当细胞膜非均匀极化时改变这些瞬变现象。在这项研究中,我们表征了均匀场刺激对孤立的豚鼠心脏细胞中[Ca(2 +)](i)瞬变的影响。酶法分离单个豚鼠细胞,使其装载[Ca(2 +)](i)荧光指示剂fluo-3,并用S1或S1-S2(S1-S2 = 50 ms)脉冲沿其纵轴刺激。使用多位点定位系统,同时沿细胞长度从多达12个位置同时记录了荧光信号。在动作电位的静息阶段施加的S1脉冲诱导了[Ca(2 +)](i)瞬变,该瞬变在面向阳极的一端出现得较早,表明[Ca(2 +)](i)梯度(nabla [Ca(2 +)](i))在[Ca(2 +)](i)瞬变的上升阶段发展。假设[Ca(2 +)](i)的峰变化为980 nM,估计在电池的阳极半部中,nabla [Ca(2 +)](i)约为3.4 nM /μm。标称场强为10 V / cm,在阴极半部可以忽略不计。在动作电位的平稳期施加的S2脉冲也扰乱了[Ca(2 +)](i)瞬变,并产生了从细胞中心指向两端的[Ca(2 +)](i)梯度。发现电池阳极半部中的平均nabla [Ca(2 +)](i)(约4.2 nM /μm)在统计学上高于阴极半部(约2.8 nM /μm)。

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