首页> 美国卫生研究院文献>The Journal of Physiology >Pancreatic secretion evoked by cholecystokinin and non-cholecystokinin-dependent duodenal stimuli via vagal afferent fibres in the rat.
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Pancreatic secretion evoked by cholecystokinin and non-cholecystokinin-dependent duodenal stimuli via vagal afferent fibres in the rat.

机译:胆囊收缩素和非胆囊收缩素依赖性十二指肠刺激经由迷走神经传入纤维诱发的胰腺分泌。

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摘要

1. We have recently demonstrated that cholecystokinin (CCK) at physiological levels stimulates pancreatic enzyme secretion via gastroduodenal mucosal vagal afferent fibres in the rat. The present study was designed to investigate if non-CCK-mediated pancreatic stimuli which activate duodenal receptors also utilize similar vagal afferent pathways. 2. Intraduodenal administration of maltose (300 mM), hypertonic saline (500 mosmol l-1) and mucosal light stroking in anaesthetized rats evoked 70, 57 and 200% increases, respectively, in pancreatic protein secretion with no changes in plasma CCK concentration. Administration of the CCK receptor antagonist L364,718 did not affect pancreatic secretion evoked by these luminal stimuli. 3. Administration of atropine, acute vagotomy and duodenal mucosal application of capsaicin each completely abolished the pancreatic response to these stimuli. 4. Infusion of a subthreshold dose of the octapeptide of CCK (15 pmol (kg body wt)-1 h-1) potentiated the pancreatic response to duodenal infusion of maltose (300 mM) and hypertonic saline (500 mosmol l-1). 5. In conscious rats, perivagal application of capsaicin abolished the pancreatic response evoked by physiological doses of CCK and intraduodenal administration of maltose or hypertonic saline, confirming the physiological relevance of the observations in anaesthetized rats. 6. These results suggest that like CCK, non-CCK-mediated luminal stimuli evoke pancreatic enzyme secretion via stimulation of a vagal afferent pathway originating from the duodenal mucosa.
机译:1.我们最近证明,生理水平的胆囊收缩素(CCK)可通过大鼠胃十二指肠粘膜迷走神经传入纤维刺激胰腺酶分泌。本研究旨在研究激活十二指肠受体的非CCK介导的胰腺刺激是否也利用类似的迷走神经传入途径。 2.在麻醉的大鼠中,十二指肠内给予麦芽糖(300 mM),高渗盐水(500 mosmol l-1)和粘膜轻抚,分别引起胰腺蛋白分泌增加70%,57%和200%,血浆CCK浓度不变。施用CCK受体拮抗剂L364,718不影响这些管腔刺激引起的胰腺分泌。 3.阿托品的施用,急性迷走神经切断术和辣椒素的十二指肠粘膜施用均完全消除了对这些刺激的胰腺反应。 4.输注亚阈值剂量的CCK八肽(15 pmol(kg体重)-1 h-1)增强了对十二指肠输注麦芽糖(300 mM)和高渗盐水(500 mosmol -1)的胰腺反应。 5.在清醒的大鼠中,辣椒素的经皮应用消除了生理剂量的CCK和十二指肠内麦芽糖或高渗盐水引起的胰腺反应,从而证实了麻醉大鼠的观察结果具有生理意义。 6.这些结果表明,与CCK一样,非CCK介导的腔内刺激也通过刺激源自十二指肠粘膜的迷走神经传入途径而引起胰腺酶的分泌。

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