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The role of luminal Ca2+ in the generation of Ca2+ waves in rat ventricular myocytes.

机译:腔内Ca2 +在大鼠心室肌细胞中产生Ca2 +波的作用。

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1. We used confocal Ca2+ imaging and fluo-3 to investigate the transition of localized Ca2+ releases induced by focal caffeine stimulation into propagating Ca2+ waves in isolated rat ventricular myocytes. 2. Self-sustaining Ca2+ waves could be initiated when the cellular Ca2+ load was increased by elevating the extracellular [Ca2+] ([Ca2+]o) and they could also be initiated at normal Ca2+ loads when the sensitivity of the release sites to cytosolic Ca2+ was enhanced by low doses of caffeine. When we prevented the accumulation of extra Ca2+ in the luminal compartment of the sarcoplasmic reticulum (SR) with thapsigargin, focal caffeine pulses failed to trigger self-sustaining Ca2+ waves on elevation of [Ca2+]o. Inhibition of SR Ca2+ uptake by thapsigargin in cells already preloaded with Ca2+ above normal levels did not prevent local Ca2+ elevations from triggering propagating waves. Moreover, wave velocity increased by 20 %. Tetracaine (0.75 mM) caused transient complete inhibition of both local and propagating Ca2+ signals, followed by full recovery of the responses due to increased SR Ca2+ accumulation. 3. Computer simulations using a numerical model with spatially distinct Ca2+ release sites suggested that increased amounts of releasable Ca2+ might not be sufficient to generate self-sustaining Ca2+ waves under conditions of Ca2+ overload unless the threshold of release site Ca2+ activation was set at relatively low levels (< 1.5 microM). 4. We conclude that the potentiation of SR Ca2+ release channels by luminal Ca2+ is an important factor in Ca2+ wave generation. Wave propagation does not require the translocation of Ca2+ from the spreading wave front into the SR. Instead, it relies on luminal Ca2+ sensitizing Ca2+ release channels to cytosolic Ca2+.
机译:1.我们使用共聚焦Ca2 +成像和fluo-3研究了局部咖啡因刺激诱导的局部Ca2 +释放向离体大鼠心室肌细胞中传播的Ca2 +波的转变。 2.当通过升高细胞外[Ca2 +]([Ca2 +] o)来增加细胞的Ca2 +负荷时,可以引发自持Ca2 +波;当释放部位对胞质Ca2 +的敏感性较高时,也可以在正常的Ca2 +负荷下引发自持Ca2 +波。低剂量的咖啡因可增强维生素E。当我们用thapsigargin阻止肌浆网(SR)的腔室中多余的Ca2 +积累时,咖啡因脉冲在[Ca2 +] o升高时未能触发自我维持的Ca2 +波。 thapsigargin对已经预加载了高于正常水平的Ca2 +的细胞抑制SR Ca2 +的吸收并不能阻止局部Ca2 +升高触发传播波。此外,波速增加了20%。 Tetracaine(0.75 mM)引起对局部和传播的Ca2 +信号的瞬时完全抑制,随后由于SR Ca2 +积累的增加而完全恢复了响应。 3.使用具有空间上不同的Ca2 +释放位点的数值模型进行的计算机模拟表明,除非Ca2 +激活的阈值设置得较低,否则增加的可释放Ca2 +量可能不足以在Ca2 +超载的情况下产生自持的Ca2 +波。水平(<1.5 microM)。 4.我们得出结论,腔内Ca2 +对SR Ca2 +释放通道的增强作用是Ca2 +产生波的重要因素。波浪传播不需要Ca2 +从扩展波阵面转移到SR中。取而代之的是,它依赖于腔内Ca2 +使Ca2 +释放通道对胞质Ca2 +敏感。

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