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胰腺外分泌分泌的中枢和外周神经控制

Central and peripheral neural control of pancreatic exocrine secretion.

作者信息

Niebergall-Roth E, Singer M V

机构信息

Department of Medicine II, University Hospital of Heidelberg at Mannheim, Germany.

出版信息

J Physiol Pharmacol. 2001 Dec;52(4 Pt 1):523-38.

Abstract

Efferent vagal impulses act on the exocrine pancreas via pancreatic ganglia, where the impulses are modulated and modified, and terminate via postganglionic fibers at the acinar cells. Acinar muscarinic receptors of the subtype M1 play an important role for the mediation of the stimulatory vagal influences on pancreatic exocrine secretion. In dogs, a potentiative interaction exists between the two most important mediators of the pancreatic exocrine response to intraduodenal stimuli, efferent vagal impulses and CCK. In contrast to humans and rats, in which all action of CCK on pancreatic enzyme output is vagally mediated, CCK acts in dogs in part as a classical humoral factor independent of the cholinergic system. Although several peptides found in pancreatic nerve cell bodies or fibers can stimulate or inhibit pancreatic exocrine secretion, their physiological importance in the neural control of the exocrine pancreas needs to be further evaluated.

摘要

传出迷走神经冲动通过胰腺神经节作用于胰腺外分泌腺,在神经节处冲动被调节和修饰,然后通过节后纤维在腺泡细胞处终止。M1亚型的腺泡毒蕈碱受体在介导迷走神经对胰腺外分泌的刺激作用中起重要作用。在狗中,胰腺外分泌对十二指肠内刺激反应的两个最重要介质,即传出迷走神经冲动和胆囊收缩素(CCK)之间存在增强性相互作用。与人类和大鼠不同,在人类和大鼠中CCK对胰腺酶分泌的所有作用均由迷走神经介导,而在狗中CCK部分作为独立于胆碱能系统的经典体液因子发挥作用。尽管在胰腺神经细胞体或纤维中发现的几种肽可以刺激或抑制胰腺外分泌,但它们在胰腺外分泌神经控制中的生理重要性仍需进一步评估。

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