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非肾上腺素能交感神经对基础胰腺激素分泌的影响。

Nonadrenergic sympathetic neural influences on basal pancreatic hormone secretion.

作者信息

Dunning B E, Ahrén B, Veith R C, Taborsky G J

机构信息

Division of Endocrinology and Metabolism, Veterans Administration Medical Center, Seattle, Washington.

出版信息

Am J Physiol. 1988 Dec;255(6 Pt 1):E785-92. doi: 10.1152/ajpendo.1988.255.6.E785.

Abstract

Evidence for peptidergic innervation of the islets of Langerhans is increasing, yet the role of neuropeptides in mediating neurally induced changes of islet function is not clear. To determine if nonadrenergic transmitters make an important contribution to sympathetic neural effects on basal pancreatic hormone secretion, we examined the effect of local sympathetic nerve stimulation (SNS) on the output of immunoreactive insulin (IRI), immunoreactive glucagon (IRG), and somatostatin (SLI) from the duodenal lobe of the pancreas in situ in halothane-anesthetized dogs, under conditions where the actions of the classical transmitter norepinephrine (NE) should be blocked by propranolol (PROP) and yohimbine (YO). In the absence of adrenergic antagonists, SNS rapidly reduced the output of IRI (delta = -1.34 +/- 0.91 mU/min) and SLI (delta = -600 +/- 350 fmol/min) and stimulated that of IRG (delta = +1.39 +/- 0.57 ng/min). In the presence of PROP and YO, SNS induced similar changes of hormone secretion: delta IRI, -1.30 +/- 0.53 mU/min; delta SLI, -480 +/- 180 fmol/min; delta IRG = +1.89 +/- 0.63 ng/min. Because PROP and YO abolished the pancreatic effects of high dose infusions of NE (1 microgram.kg-1.min-1 iv), we suggest that the antagonists produced sufficient, combined adrenergic blockade at the level of the islet, and we conclude that a nonadrenergic neurotransmitter or modulator plays a major role in mediating sympathetic neural effects on basal islet hormone secretion.

摘要

胰岛肽能神经支配的证据越来越多,但神经肽在介导神经诱导的胰岛功能变化中的作用尚不清楚。为了确定非肾上腺素能递质是否对交感神经对基础胰腺激素分泌的影响起重要作用,我们在氟烷麻醉的犬原位胰腺十二指肠叶中,研究了局部交感神经刺激(SNS)对免疫反应性胰岛素(IRI)、免疫反应性胰高血糖素(IRG)和生长抑素(SLI)分泌的影响,此时经典递质去甲肾上腺素(NE)的作用应被普萘洛尔(PROP)和育亨宾(YO)阻断。在没有肾上腺素能拮抗剂的情况下,SNS迅速降低了IRI的分泌量(δ=-1.34±0.91 mU/min)和SLI的分泌量(δ=-600±350 fmol/min),并刺激了IRG的分泌量(δ=+1.39±0.57 ng/min)。在存在PROP和YO的情况下,SNS诱导了类似的激素分泌变化:δIRI,-1.30±0.53 mU/min;δSLI,-480±180 fmol/min;δIRG = +1.89±0.63 ng/min。由于PROP和YO消除了高剂量静脉输注NE(1μg·kg-1·min-1)对胰腺的影响,我们认为拮抗剂在胰岛水平产生了足够的联合肾上腺素能阻断作用,并且我们得出结论,一种非肾上腺素能神经递质或调节剂在介导交感神经对基础胰岛激素分泌的影响中起主要作用。

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