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Ionic basis for the regulation of spontaneous excitation in detrusor smooth muscle cells of the guinea-pig urinary bladder

机译:调节豚鼠膀胱逼尿肌平滑肌细胞自发兴奋的离子基础

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class="enumerated" style="list-style-type:decimal">The regulatory mechanisms of spontaneous excitation in detrusor smooth muscles of the guinea-pig urinary bladder were investigated using intracellular microelectrode and muscle tension recording techniques.Detrusor smooth muscle cells exhibited nifedipine-sensitive spontaneous action potentials. Their frequency was highly sensitive to membrane polarization and was reduced by lowering the temperature. Lowering the temperature also reduced the frequency of spontaneous contractions and increased their amplitude.Charybdotoxin (50 nM) and iberiotoxin (0.1 μM) increased the amplitude and duration of action potentials, and abolished after hyperpolarizations (AHPs). Both agents also increased the amplitude and duration of spontaneous contractions, and reduced their frequency. Apamin (0.1 μM) did not change the shape of action potentials but often converted individual action potentials into bursts. It also increased the amplitude and duration of spontaneous contractions, and reduced their frequency. 4-aminopyrideine (4-AP, 1 mM) increased the frequency of action potentials without affecting their shape, and increased the amplitude and frequency of spontaneous contractions.Cyclopiazonic acid (CPA, 10 μM) and ryanodine (50 μM) increased the amplitude of action potentials, and suppressed AHPs. Both agents also increased the amplitude and duration of spontaneous contractions, and reduced their frequency. 1,2-(Bis (2-aminophenoxy) ethane-N,N,N′, N′-tetraacetic acid tetrakis (acetoxymethyl ester) (50 μM) dramatically increased the amplitude and duration of the action potential, and abolished AHPs.Spontaneous action potentials in detrusor smooth muscles cells result from the opening of L-type Ca2+ channels, and their frequency is regulated by voltage-dependent mechanisms and by some metabolic process. Both the activation of large conductance Ca2+-activated K+ (BK) channels and Ca2+-mediated inactivation of the Ca2+ channels are involved in the repolarizing phase of action potentials. The Ca2+ influx through L-type Ca2+ channels triggers calcium-induced calcium release via ryanodine receptors and activates BK channels to generate AHPs. Both small conductance Ca2+-activated K+ channels and voltage-sensitive K+ channels may contribute to the resting membrane potential and regulate the frequency of action potentials. The regulatory mechanisms of action potentials are closely related to the regulation of spontaneous contractions.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 利用细胞内微电极和肌肉张力记录技术研究了豚鼠膀胱逼尿肌自发兴奋的调节机制。 逼尿肌平滑肌细胞表现出硝苯地平敏感的自发动作电位。它们的频率对膜极化高度敏感,并且通过降低温度而降低。降低温度还减少了自发性收缩的频率并增加了其收缩幅度。 Charybdotoxin(50 nM)和iberiotoxin(0.1μM)增加了动作电位的幅度和持续时间,并在超极化(AHPs)后被取消。两种药物还增加了自发性收缩的幅度和持续时间,并降低了其频率。 appamin(0.1μM)不会改变动作电位的形状,但通常会将单个动作电位转换为爆发。它还增加了自发性收缩的幅度和持续时间,并降低了自发性收缩的频率。 4-氨基吡啶胺(4-AP,1 mM)在不影响其形状的情况下增加了动作电位的频率,并增加了自发性收缩的幅度和频率。 环甜嗪酸(CPA,10μM)和ryanodine( 50μM)会增加动作电位的幅度,并抑制AHP。两种药物还增加了自发性收缩的幅度和持续时间,并降低了其频率。 1,2-(双(2-氨基苯氧基)乙烷-N,N,N',N'-四乙酸四(乙酰氧基甲基酯)(50μM)显着增加了动作电位的幅度和持续时间,并废除了AHP。 / li> 逼尿肌平滑肌细胞的自发动作电位是由L型Ca 2 + 通道的开放引起的,其频率受电压依赖性机制和某些代谢过程的调节。大电导Ca 2 + 激活的K + (BK)通道的激活和Ca 2 + 介导的Ca 2 + 通道参与动作电位的复极阶段,通过L型Ca 2 + 通道的Ca 2 + 入流触发钙诱导的钙通过ryanodine受体释放并激活BK通道以生成AHP,小电导Ca 2 + 激活的K + 通道和电压敏感的K + 通道可能有助于静息膜电位调整动作电位的频率。动作电位的调节机制与自然收缩的调节密切相关。

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