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首页> 外文期刊>The Journal of Physiology >How does beta-adrenergic stimulation increase the heart rate? The role of intracellular Ca2+ release in amphibian pacemaker cells.
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How does beta-adrenergic stimulation increase the heart rate? The role of intracellular Ca2+ release in amphibian pacemaker cells.

机译:β-肾上腺素能刺激如何增加心率?细胞内Ca2 +释放在两栖起搏器细胞中的作用。

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1. The mechanism by which sympathetic transmitters increase the firing rate of pacemaker cells was explored in isolated cells from the sinus venosus of the cane toad Bufo marinus. Intracellular calcium concentration ([Ca2+]i) was measured with indo-1 and membrane potential and currents were recorded with the nystatin perforated-patch technique. 2. Adrenaline or isoprenaline (2 microM) increased the transient rise in [Ca2+]i and increased the firing rate; these effects were blocked by propranolol (2 microM). 3. To determine whether the changes in [Ca2+]i might influence the firing rate we studied agents which affect either the loading or the release of Ca2+ from the sarcoplasmic reticulum (SR). Rapid application of caffeine (10 mM) to spontaneously firing cells caused a large Ca2+ release from the SR and the cells were then quiescent for 24 s. In the presence of beta-adrenergic stimulation the caffeine-induced [Ca2+]i was 14 % larger but the period of quiescence after application was reduced to 12 s. 4. Ryanodine, at either low (1 microM) or high (> 10 microM) concentration, stopped firing. However, when the SR store content of Ca2+ was tested with caffeine, at low ryanodine concentration the SR Ca2+ store was empty whereas at the high concentration the SR store was still loaded with Ca2+. beta-Adrenergic stimulation was not able to restore firing at the low concentration of ryanodine but did restore firing at the high ryanodine concentration. 5. An SR Ca2+ pump blocker, 2, 5-di(tert-butyl)-1,4-hydroquinone (TBQ) which depletes the SR store of Ca2+, also rapidly and reversibly stopped spontaneous firing. 6. The relation between the amplitude of the [Ca2+]i transient and firing rate established in the presence of ryanodine was similar when firing was restored by beta-stimulation. 7. In both spontaneously firing and voltage-clamped cells, depleting the SR store with either ryanodine or TBQ suggested that about half of the Ca2+ which contributes to the calcium transient is released from the SR. 8. These results show that the amplitude of the [Ca2+]i transient is an important factor in the firing rate of toad pacemaker cells and consequently agents which modify SR Ca2+ release influence firing rate. The effects of beta-stimulation on firing rate seem to be largely mediated by changes in amplitude of the [Ca2+]i transient.
机译:1.在从蟾蜍蟾蜍海鼻窦静脉分离出的细胞中,探索了交感神经递质提高起搏器细胞放电速率的机制。用indo-1测量细胞内钙浓度([Ca2 +] i),并用制霉菌素穿孔膜技术记录膜电位和电流。 2.肾上腺素或异丙肾上腺素(2 microM)增加[Ca2 +] i的瞬时升高并提高放电速率;这些作用被普萘洛尔(2 microM)阻断。 3.为了确定[Ca2 +] i的变化是否会影响发射速率,我们研究了影响肌浆网(SR)负载或释放Ca2 +的物质。快速将咖啡因(10 mM)应用于自发激发细胞会导致SR释放大量Ca2 +,然后使细胞静止24 s。在存在β-肾上腺素刺激的情况下,咖啡因诱导的[Ca2 +] i增大14%,但施用后的静止期减少至12 s。 4.在低浓度(1 microM)或高浓度(> 10 microM)的Ryanodine均停止发射。但是,当用咖啡因测试Ca2 +的SR储藏量时,在低的雷诺碱浓度下,SR Ca2 +储藏室为空,而在高浓度下,SR储藏室中仍充满Ca2 +。 β-肾上腺素能刺激不能在低浓度的雷诺丁下恢复燃烧,但确实可以在高浓度的雷诺丁下恢复燃烧。 5. SR Ca2 +泵阻滞剂2,5-二叔丁基-1,4-氢醌(TBQ)耗尽了Ca2 +的SR储存,也迅速可逆地停止了自燃。 6.当通过β-刺激恢复射击时,在存在莱ano碱的​​情况下,[Ca2 +] i瞬变幅度与激发速率之间的关系相似。 7.在自发放电和电压钳制的电池中,用雷诺丁或TBQ消耗SR贮藏表明,约有一半的Ca2 +会从SR中释放出来,这有助于钙的瞬变。 8.这些结果表明,[Ca2 +] i瞬变的幅度是蟾蜍起搏器细胞放电速率的重要因素,因此,修饰SR Ca2 +释放的试剂会影响放电速率。 β刺激对放电率的影响似乎主要是由[Ca2 +] i瞬变幅度的变化介导的。

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