Literature DB >> 33532

Nervous control of pancreatic exocrine secretion in pigs.

J J Holst, O B Schaffalitzky de Muckadell, J Fahrenkrug.   

Abstract

The pancreatic secretion of fluid, bicarbonate and protein in response to electrical stimulation of the vagus and splanchnic nerves, to exogenous and endogenous secretin and to various pharmacological agents was studied in anesthetized young pigs (21 kg). Vagal stimulation increased flow, bicarbonate output and protein output in a frequency dependent manner; the half maximal effective frequency was 2--4 Hz and the maximal effective frequency 12 Hz. The secretory response to vagal stimulation was potentiated by physiological elevations of the arterial concentration of secretin brought about by injection of secretin or by acidification of the duodenal bulb. Simultaneous stimulation of the splanchnic nerves strongly inhibited the response to vagal stimulation; splanchnic nerve stimulation alone had no demonstrable effect. The flow and bicarbonate response to vagal stimulation was unaffected by atropine, but abolished by hexamethonium. Protein output was strongly inhibited by both agents. The response to intraarterial infusion of acetylcholine resembled that elicited by vagal stimulation but it was smaller and it was completely abolished by atropine and unaffected by hexamethonium. Alpha- and beta-adrenergic blockade stimulated rather than inhibited the secretory response to vagal stimulation. The portal vein plasma concentration of secretin was not affected by vagal stimulation. The results indicate that the protein response, and the flow and bicarbonate response to vagal stimulation are not brought about by the same mechanism. An increased release of secretin is not involved. Peptidergic (VIP-containing) nerves may contribute.

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Year:  1979        PMID: 33532     DOI: 10.1111/j.1748-1716.1979.tb06312.x

Source DB:  PubMed          Journal:  Acta Physiol Scand        ISSN: 0001-6772


  15 in total

Review 1.  Does the sympathetic nervous system regulate the exocrine pancreas?

Authors:  D F Magee
Journal:  Int J Pancreatol       Date:  1989-09

2.  [Effect of pancreatic innervation on exocrine secretory performance of the pancreas].

Authors:  H Köhler; R Nustede; M Barthel; A Schafmayer; H J Peiper
Journal:  Langenbecks Arch Chir       Date:  1992

3.  Clonidine therapy for pancreatitis.

Authors:  Fuad Lechin; Bertha van der Dijs; Gerardo Hernandez-Adrian
Journal:  Dig Dis Sci       Date:  2008-03-05       Impact factor: 3.199

4.  Neuropeptide Y (NPY) and vasoactive intestinal polypeptide (VIP), but not galanin, are autonomic cotransmitters in the porcine pancreas.

Authors:  T Messell; B E Dunning; S Sheikh; J J Holst
Journal:  Int J Pancreatol       Date:  1991-10

Review 5.  Designing a bioelectronic treatment for Type 1 diabetes: targeted parasympathetic modulation of insulin secretion.

Authors:  Elliott W Dirr; Morgan E Urdaneta; Yogi Patel; Richard D Johnson; Martha Campbell-Thompson; Kevin J Otto
Journal:  Bioelectron Med (Lond)       Date:  2020-07-28

Review 6.  Radioimmunoassay of secretin. A critical review and current status.

Authors:  T M Chang; W Y Chey
Journal:  Dig Dis Sci       Date:  1980-07       Impact factor: 3.199

7.  Vasoactive intestinal polypeptide-like immunoreactivity in nerves of the pancreatic islet of the teleost fish, Gillichthys mirabilis.

Authors:  S Van Noorden; G J Patent
Journal:  Cell Tissue Res       Date:  1980       Impact factor: 5.249

8.  Occurrence, distribution and nature of neuropeptide Y in the rat pancreas.

Authors:  F Carlei; J M Allen; A E Bishop; S R Bloom; J M Polak
Journal:  Experientia       Date:  1985-12-15

9.  Enhancement by atropine of the pancreatic exocrine secretions evoked by vagal stimulation in the pithed rat.

Authors:  J Barrett; J J McDougall; J D Morrison
Journal:  J Physiol       Date:  1993-09       Impact factor: 5.182

10.  The location of VIP in the pancreas of man and rat.

Authors:  A E Bishop; J M Polak; I C Green; M G Bryant; S R Bloom
Journal:  Diabetologia       Date:  1980-01       Impact factor: 10.122

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