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Cellular mechanism of the voltage-dependent change in slow potentials generated in circular smooth muscle of the guinea-pig gastric corpus

机译:豚鼠胃体圆形平滑肌中慢电位的电压依赖性变化的细胞机制

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摘要

The cellular mechanism of the voltage-dependent properties of slow potentials were investigated in single bundles of circular smooth muscle isolated from the gastric corpus of guinea-pig using conventional microelectrode recordings. Hyperpolarization of the membrane by current injection decreased the frequency and increased the amplitude of slow potentials linearly. At potentials negative of −80 mV, slow potential generation was abolished and a periodic generation of clustered unitary potentials was evident. Application of cyclopiazonic acid (CPA, 20 μm) or thapsigargin (1 μm; inhibitors of Ca2+-ATPase), carbonyl cyanide m-chlorophenyl hydrazone (CCCP, 0.1 μm; mitochondrial protonophore) or 2-aminoethoxydiphenyl borate (2-APB, 20 μm; inhibitor of IP3 receptor-mediated Ca2+ release) depolarized the membrane and reduced or inhibited the amplitude and frequency of slow potentials: repolarization of the membrane to the resting level by current injection resulted in a recovery of the amplitude of slow potentials in the presence of CPA or CCCP, but not 2-APB. The slow potentials abolished by thapsigargin did not recover upon membrane repolarization. The altered frequency of slow potentials by 2-APB, CPA or CCCP was not reversed by membrane repolarization to control potentials. Depolarization of the membrane by about 10 mV with high-potassium solution also reduced the amplitude and increased the frequency of slow potentials in a manner restored by repolarization to control potentials upon current injection, suggesting that membrane depolarization did not affect the voltage dependency of pacemaker activity. The results indicate that in corpus circular muscles the voltage dependency of the frequency and amplitude of slow potentials requires a functional Ca2+ store and mitochondria.
机译:使用常规微电极记录,从豚鼠的胃体中分离出单束圆形平滑肌,研究慢电位的电压依赖性特性的细胞机制。通过电流注入使膜超极化会降低频率并线性增加慢电位的幅度。在-80 mV的负电势下,缓慢的电势产生被废除,并且明显出现了聚集的of势的周期性产生。施用环吡嗪酸(CPA,20μm)或毒胡萝卜素(1μm; Ca2 + -ATPase抑制剂),羰基氰化物间氯苯基(CCCP,0.1μm;线粒体质子体)或2-氨基乙氧基二苯基硼酸盐(2-APB,20μm ; IP3受体介导的Ca2 +释放抑制剂)使膜去极化并降低或抑制慢电位的振幅和频率:通过电流注入使膜重新极化至静止水平,导致在存在以下情况时慢电位的振幅得以恢复。 CPA或CCCP,但不是2-APB。毒胡萝卜素消除的慢电位在膜复极化时没有恢复。膜复极化以控制电位不能逆转2-APB,CPA或CCCP改变慢电位的频率。用高钾溶液使膜去极化约10 mV,也会降低振幅并增加慢电位的频率,通过电流注入后通过控制电极的电位来恢复极化的方式,这表明膜去极化不会影响起搏器活动的电压依赖性。结果表明,在体圆形肌肉中,慢电位的频率和幅度的电压依赖性需要功能性的Ca2 +存储和线粒体。

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  • 作者单位
  • 年度 2008
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  • 正文语种 en
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  • 入库时间 2022-08-20 20:37:08

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