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首页> 外文期刊>American Journal of Physiology >Regional differences in cholinergic regulation of potassium current in feline esophageal circular smooth muscle.
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Regional differences in cholinergic regulation of potassium current in feline esophageal circular smooth muscle.

机译:胆碱能调节猫食管圆形平滑肌钾电流的区域差异。

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Potassium channels are important contributors to membrane excitability in smooth muscles. There are regional differences in resting membrane potential and K(+)-channel density along the length of the feline circular smooth muscle esophagus. The aim of this study was to assess responses of K(+)-channel currents to cholinergic (ACh) stimulation along the length of the feline circular smooth muscle esophageal body. Perforated patch-clamp technique assessed K(+)-channel responses to ACh stimulation in isolated smooth muscle cells from the circular muscle layer of the esophageal body at 2 (distal)- and 4-cm (proximal) sites above the lower esophageal sphincter. Western immunoblots assessed ion channel and receptor expression. ACh stimulation produced a transient increase in outward current followed by inhibition of spontaneous transient outward currents. These ACh-induced currents were abolished by blockers of large-conductance Ca(2+)-dependent K(+) channels (BK(Ca)). Distal cells demonstrated a greater peak current density in outward current than cells from the proximal region and a longer-lasting outward current increase. These responses were abolished by atropine and the specific M(3) receptor antagonist 4-DAMP but not the M(1) receptor antagonist pirenzipine or the M(2) receptor antagonist methoctramine. BK(Ca) expression along the smooth muscle esophagus was similar, but M(3) receptor expression was greater in the distal region. Therefore, ACh can differentially activate a potassium channel (BK(Ca)) current along the smooth muscle esophagus. This activation probably occurs through release of intracellular calcium via an M(3) pathway and has the potential to modulate the timing and amplitude of peristaltic contraction along the esophagus.
机译:钾通道是平滑肌膜兴奋性的重要因素。沿猫圆形平滑肌食管的长度,静息膜电位和K(+)通道密度存在区域差异。这项研究的目的是评估沿猫圆形平滑肌食管的长度对胆碱能(ACh)刺激的K(+)通道电流的响应。穿孔膜片钳技术评估了食管下括约肌上方2(远)和4-cm(近端)部位食管体环形肌层中分离出的平滑肌细胞对ACh刺激的K(+)通道反应。 Western免疫印迹评估了离子通道和受体表达。 ACh刺激产生向外电流的瞬时增加,随后抑制自发瞬时向外电流。这些ACh诱导的电流被大电导Ca(2+)依赖的K(+)通道(BK(Ca))的阻滞剂废除了。远端细胞显示出比来自近端区域的细胞更大的峰值电流密度,并且持续时间更长。这些反应被阿托品和特定的M(3)受体拮抗剂4-DAMP废除,但未废除M(1)受体拮抗剂匹伦西汀或M(2)受体拮抗剂甲辛明。沿平滑肌食管的BK(Ca)表达相似,但M(3)受体表达在远端区域更大。因此,ACh可以沿平滑肌食道差异激活钾离子通道(BK(Ca))。这种激活可能是通过M(3)途径释放细胞内钙而发生的,并且有可能调节沿食道的蠕动收缩的时间和幅度。

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