Jo Y H, Yoon S H, Hahn S J, Rhie D J, Sim S S, Kim M S
Department of Physiology, Catholic University Medical College, Seoul, Korea.
Pancreas. 1994 Jan;9(1):117-22. doi: 10.1097/00006676-199401000-00017.
Effects of medial amygdaloid stimulation on pancreatic exocrine secretion were investigated in anesthetized rats with pyloric ligation. During intraduodenal 0.01 N HCl perfusion, the electrical stimulation of the medial amygdaloid nucleus augmented significantly the HCl-induced pancreatic secretion of water and bicarbonate output. The duodenal acidification significantly increased secretin concentration in plasma. The effects of medial amygdaloid stimulation were also tested in the rats that received a small dose of porcine secretin. Although the amount of secretin infused was not enough to increase the pancreatic exocrine secretion, the stimulation of the medial amygdaloid nucleus significantly increased flow and bicarbonate output. The augmented pancreatic secretory responses to electrical stimulation of the medial amygdaloid nucleus were abolished by bilateral truncal vagotomy. However, the medial amygdaloid stimulation was not effective in stimulating pancreatic secretion in the rats perfused with isotonic saline. From these results, it is suggested that the medial amygdaloid nucleus plays a stimulatory role in pancreatic exocrine secretion via vagus nerves and that a certain level of plasma secretin is needed for the medial amygdaloid stimulation to be effective.
在幽门结扎的麻醉大鼠中研究了杏仁核内侧刺激对胰腺外分泌的影响。在十二指肠内灌注0.01N盐酸期间,杏仁核内侧核的电刺激显著增强了盐酸诱导的胰腺水和碳酸氢盐分泌。十二指肠酸化显著增加了血浆中促胰液素的浓度。在接受小剂量猪促胰液素的大鼠中也测试了杏仁核内侧刺激的效果。尽管注入的促胰液素量不足以增加胰腺外分泌,但杏仁核内侧核的刺激显著增加了流量和碳酸氢盐输出。双侧迷走神经切断术消除了杏仁核内侧核电刺激引起的胰腺分泌反应增强。然而,杏仁核内侧刺激在灌注等渗盐水的大鼠中对刺激胰腺分泌无效。从这些结果表明,杏仁核内侧核通过迷走神经在胰腺外分泌中起刺激作用,并且杏仁核内侧刺激有效需要一定水平的血浆促胰液素。