Vogalis F, Sanders K M
Department of Physiology, University of Nevada School of Medicine, Reno 89557.
Am J Physiol. 1990 Jul;259(1 Pt 1):G125-33. doi: 10.1152/ajpgi.1990.259.1.G125.
Studies were performed to characterize the intrinsic innervation of the circular muscle layer of the canine pylorus. Cross-sectional strips of muscle were studied with intracellular recording techniques, and junction potentials were elicited with transmural nerve stimulation. Neurally mediated responses were recorded from cells at several points through the thickness of the circular layer. Excitatory junction potentials (EJPs) increased and inhibitory junction potentials (IJPs) decreased in amplitude with distance from the myenteric border of the circular muscle. Atropine blocked EJPs throughout the circular layer, demonstrating that excitatory inputs are primarily cholinergic. The gradient in IJP amplitude persisted after blockade of EJPs. Three components of IJPs were identified: 1) a fast, apamin-sensitive component that reached a peak and decayed within approximately 1 s; 2) a slower, apamin-insensitive component that reached a peak within 800 ms but decayed slowly over 5 s; and 3) a very slow component that reached a maximum in 7-10 s. Junctional potentials affected the pattern of myogenic electrical activity. Transmural stimulation could evoke premature slow waves in the myenteric portion of the circular layer but when excitatory inputs were blocked, IJPs greatly reduced the amplitude of slow waves. EJPs elicited action potentials in submucosal portion of circular muscles, and IJPs hyperpolarized these cells. The influence of intrinsic nerves on contractile patterns of pyloric muscles was also characterized. These data demonstrate that a neuromuscular apparatus exists within the gastroduodenal junction for 1) local regulation of slow waves and 2) independent control of the myenteric and submucosal regions of the circular layer.
开展了多项研究以描述犬幽门环形肌层的内在神经支配特征。采用细胞内记录技术对肌肉横断面切片进行研究,通过透壁神经刺激诱发接头电位。在环形层不同深度的细胞记录神经介导的反应。兴奋性接头电位(EJPs)和抑制性接头电位(IJPs)的幅度随距环形肌肌间边界的距离增加而分别增大和减小。阿托品阻断了整个环形层的EJPs,表明兴奋性输入主要是胆碱能的。在EJPs被阻断后,IJP幅度的梯度仍然存在。确定了IJPs的三个成分:1)一个快速的、对蜂毒明肽敏感的成分,在约1秒内达到峰值并衰减;2)一个较慢的、对蜂毒明肽不敏感的成分,在800毫秒内达到峰值,但在5秒内缓慢衰减;3)一个非常缓慢的成分,在7 - 10秒内达到最大值。接头电位影响肌源性电活动模式。透壁刺激可在环形层肌间部分诱发提前出现的慢波,但当兴奋性输入被阻断时,IJPs会大幅降低慢波的幅度。EJPs在环形肌黏膜下部分诱发动作电位,而IJPs使这些细胞超极化。还描述了内在神经对幽门肌收缩模式的影响。这些数据表明,在胃十二指肠交界处存在一种神经肌肉装置,用于1)局部调节慢波和2)独立控制环形层的肌间和黏膜下区域。