首页> 美国卫生研究院文献>The Journal of Physiology >Substance P inhibits activation of calcium-dependent potassium conductances in guinea-pig myenteric neurones.
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Substance P inhibits activation of calcium-dependent potassium conductances in guinea-pig myenteric neurones.

机译:P物质抑制豚鼠肌间神经元中钙依赖性钾电导的激活。

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摘要

1. Intracellular recordings were made from myenteric AH neurones of the guinea-pig ileum in vitro. Some experiments were done with a single-electrode voltage clamp to measure membrane currents. 2. Substance P (SP) applied by superfusion (10 nM-300 nM), pressure ejection (100 nM-10 microM, 760 mmHg, for 10-20 ms) or ionophoresis (1 mM, 100 nA, for 0.2 s) caused a membrane depolarization and an inward current, associated with a decrease in potassium conductance. 3. The SP-induced depolarization was abolished within 15 min by superfusion with calcium-free/high-magnesium (10 mM) solution or solutions containing cobalt, manganese or nickel at 1-3 mM. The response persisted even after 40-60 min of superfusion with calcium-freeormal-magnesium (1.2 mM) solution. In all these solutions, synaptic potentials were abolished within 5 min. 4. SP inhibited a slowly developing outward current and an outward tail current during and after a long depolarizing command pulse (2-10 s), and an outward after-current following single or multiple brief depolarizing command pulses (10-50 ms). These outward currents were suppressed in calcium-free/high-magnesium solution. 5. SP depressed both a calcium-dependent slow after-hyperpolarization following the action potential and an outward after-current preceded by a brief depolarizing command. Both the SP-induced depolarization and the SP-induced inward current were augmented when the peptide was pressure-ejected during the recovery phase of the slow after-hyperpolarization and during that of the slow outward after-current, but both of them were inhibited or almost abolished when SP was applied immediately after spike initiation or a brief depolarizing command. 6. The SP-induced response was depressed by barium (1-2 mM). The SP response was not inhibited by tetraethylammonium at low concentrations (5-10 mM), but was depressed at high concentration (20 mM). 7. Superfusion (1-10 nM) or pressure application of a calcium ionophore, A23187, inhibited or even reversed the SP depolarization and the SP-induced inward current. 8. These results indicate that SP inhibits activation of a calcium-dependent potassium conductance which contributes to both the slow after-hyperpolarization and the resting membrane potential. SP may affect the process by which calcium activates this potassium conductance.
机译:1.从豚鼠回肠的肌间叶AH神经元进行细胞内记录。一些实验是使用单电极电压钳来测量膜电流。 2.引起的P(SP)物质是通过超负荷(10 nM-300 nM),压力喷射(100 nM-10 microM,760 mmHg,持续10-20 ms)或离子载体(1 mM,100 nA,持续0.2 s)引起的膜去极化和内向电流,与钾电导降低有关。 3.通过与无钙/高镁(10 mM)溶液或1-3 mM含钴,锰或镍的溶液重熔,在15分钟内消除SP引起的去极化。即使在与无钙/正常镁(1.2 mM)溶液灌注40-60分钟后,反应仍然持续。在所有这些解决方案中,突触电位在5分钟内消失。 4. SP在长的去极化指令脉冲(2-10 s)期间和之后以及在单个或多个短暂的去极化指令脉冲(10-50 ms)之后和之后抑制了缓慢发展的向外电流和向外尾电流。在无钙/高镁溶液中抑制了这些向外的电流。 5. SP抑制了动作电位后的钙依赖性慢速超极化,以及短暂的去极化指令之前的向外的后电流。当在慢速超极化后的恢复阶段和慢速向外极化后的恢复阶段压力喷射肽时,SP诱导的去极化和SP诱导的内向电流均增加,但它们均被抑制或抑制。在尖峰启动或短暂的去极化命令之后立即应用SP时,几乎废除了。 6.钡(1-2mM)抑制了SP诱导的反应。低浓度(5-10 mM)的四乙铵不会抑制SP反应,而高浓度(20 mM)则可抑制SP反应。 7.钙离子载体A23187的超融合(1-10 nM)或压力施加抑制或什至逆转了SP去极化和SP诱导的内向电流。 8.这些结果表明,SP抑制了钙依赖性钾电导的激活,而钙电导的钾电导既促进了超极化后的缓慢,又具有静息的膜电位。 SP可能会影响钙激活该钾电导的过程。

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