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Voltage-dependent calcium entry underlies propagation of slow waves in canine gastric antrum

机译:电压依赖性钙进入是慢波在犬胃窦中传播的基础

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摘要

Electrical slow waves in gastrointestinal (GI) muscles are generated by interstitial cells of Cajal (ICC), and these events actively propagate through networks of ICC within the walls of GI organs. The mechanism by which spontaneously active pacemaker sites throughout ICC networks are entrained to produce orderly propagation of slow waves is unresolved. A three-chambered partition bath was used to test the effects of agents that affect metabolism, membrane potential and voltage-dependent Ca2+ entry on slow wave propagation in canine antral smooth muscle strips. Slow waves evoked by electrical field stimulation actively propagated from end to end of antral muscle strips with a constant latency between two points of recording. When the central chamber of the bath was perfused with low-temperature solutions, mitochondrial inhibitors, reduced extracellular Ca2+ or blockers of voltage-dependent Ca2+ channels, active propagation failed. Depolarization or hyperpolarization of the tissue within the central chamber also blocked propagation. Blockade of propagation by reduced extracellular Ca2+ and inhibitors of dihydropyridine-resistant Ca2+ channels suggests that voltage-dependent Ca2+ entry may be the ‘entrainment factor’ that facilitates active propagation of slow waves in the gastric antrum.
机译:胃肠(GI)肌肉中的电慢波由Cajal(ICC)的间质细胞产生,这些事件通过GI器官壁内的ICC网络主动传播。还没有解决整个ICC网络中自发活动的起搏器部位被带走以产生有序的慢波传播的机制。使用三腔分隔浴来测试影响代谢,膜电位和电压依赖性Ca 2 + 进入的试剂对犬肛门平滑肌条中慢波传播的影响。电场刺激引起的慢波在两个记录点之间以恒定的等待时间从肛门肌条的一端到另一端主动传播。当在浴缸的中央腔室中灌注低温溶液,线粒体抑制剂,减少的细胞外Ca 2 + 或电压依赖性Ca 2 + 通道的阻滞剂时,会主动繁殖失败了中央腔室内组织的去极化或超极化也阻止了传播。减少的细胞外Ca 2 + 和二氢吡啶抗性Ca 2 + 通道的抑制剂可阻止繁殖,这表明电压依赖性Ca 2 + 进入可能是促进慢波在胃窦中主动传播的“夹带因子”。

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