Abstract
The purpose of this study was to determine if increased concentrations of pancreatic islet norepinephrine, dopamine, or serotonin after insulin secretion. Golden hamsters received intraperitoneal injections of the norepinephrine precursor DL-threo-dihydroxyphenylserine, the dopamine precursor L-3,4-dihydroxyphenylalanine, or the serotonin precursor 5-hydroxytryptophan with and without pretreatment of the hamsters with the monoamine oxidase inhibitor tranylcypromine. Administration of the monoamine precursors to animals pretreated with tranylcypromine resulted in a mean increase in plasma glucose of 192% and a mean decrease in plasma insulin of 58%. Using a collagenase isolation technique, islets from control and treated animals were evaluated for monoamine content and insulin secretory capacity. The monoamine concentrations in control islets, in mumol/kg wet weight, were: norepinephrine 42 +/- 8; dopamine 8 +/- 2; and serotonin 26 +/- 9. Administration of the appropriate precursor to control hamsters resulted in a 1.9-fold (norepinephrine), 6-fold (dopamine), and 22-fold (serotonin) increase in monoamines. There was no alteration in the glucose (16.3 mmol/l)-stimulated in vitro insulin secretion from islets obtained from these hamsters. Administration of the precursors to hamsters pretreated with tranylcypromine resulted in a 3.5-fold (norepinephrine), 22-fold (dopamine), and 59-fold (serotonin) increase in monoamines. Glucose-stimulated in vitro insulin secretion from islets obtained from these hamstes was completely blocked. This study suggest that high concentrations of norepinephrine, dopamine, and serotonin in the pancreatic islets can decrease glucose-stimulated insulin secretion.
MeSH Terms
5-Hydroxytryptophan/pharmacology
Animals
Blood Glucose/metabolism
Cricetinae
Dopamine/metabolism
Droxidopa/pharmacology
Insulin/metabolism
Insulin Secretion
Islets of Langerhans/metabolism
Levodopa/pharmacology
Mesocricetus
Norepinephrine/metabolism
Serotonin/metabolism
Tranylcypromine/pharmacology
Chemicals
Blood Glucose
Insulin
Serotonin
Tranylcypromine
Levodopa
5-Hydroxytryptophan
Droxidopa
Dopamine
Norepinephrine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Zern R T
Bird J L
Feldman J M
References (24)
24 references, click to expand
-
The occurrence of biogenic monoamines in the mammalian endocrine pancreas.
Acta Physiol Scand Suppl. 1968;314:1-60
PMID: 4973243
-
The significance of 5-hydroxytryptamine for insulin secretion in the mouse.
Horm Metab Res. 1971 Sep;3(5):305-9
PMID: 4944450
-
Endocrine function and glucose metabolism in patients with Parkinson's disease and their alternation by L-Dopa.
J Clin Endocrinol Metab. 1971 Nov;33(5):829-37
PMID: 5125386
-
Differential changes in the 5-hydroxytryptamine and insulin content of guinea-pig B-cells.
Endocrinology. 1975 Oct;97(4):937-47
PMID: 127702
-
Pancreatic biogenic amines and insulin secretion in health and disease.
Fed Proc. 1973 Jul;32(7):1797-802
PMID: 4198098
-
A SENSITIVE AND SPECIFIC ASSAY FOR THE ESTIMATION OF MONOAMINE OXIDASE.
Biochem Pharmacol. 1963 Dec;12:1439-41
PMID: 14096433
-
Species variation in pancreatic islet monoamine uptake and action.
Diabetes. 1977 Apr;26(4):257-61
PMID: 321287
-
Deprenyl in Parkinson's disease.
Lancet. 1977 Oct 15;2(8042):791-5
PMID: 71602
-
The photometric microdetermination of blood glucose with glucose oxidase.
J Lab Clin Med. 1958 Mar;51(3):448-60
PMID: 13514258
-
Catechol- and indolamines in some endocrine cell systems. An autoradiographical, histochemical and radioimmunological study.
Acta Physiol Scand Suppl. 1971;360:1-122
PMID: 4933514
-
Relation of oxygen and temperature in the preservation of tissues by refrigeration.
Proc Soc Exp Biol Med. 1949 Jun;71(2):196-200
PMID: 18134009
-
A sensitive radioenzymatic assay for norepinephrine in tissues and plasma.
Life Sci. 1975 Feb 1;16(3):375-84
PMID: 1128155
-
Effect of pharmacological agents and fasting on pancreatic islet norepinephrine in the golden hamster.
Diabetologia. 1979 Sep;17(3):169-74
PMID: 389724
-
Catecholamines in fetal and newborn rat brain.
J Neurochem. 1973 Jul;21(1):61-7
PMID: 4146461
-
Immunoassay of insulin with insulin-antibody precipitate.
Biochem J. 1963 Jul;88:137-46
PMID: 13952078
-
Characteristics of the dopaminergic and noradrenergic systems of the pancreatic islets.
Diabetes. 1979 Mar;28(3):185-9
PMID: 376376
-
Quantitative relationship of catecholamine content and histofluorescence in brain of rats.
Brain Res. 1974 Nov 15;80(2):229-35
PMID: 4424761
-
Insulin secretion in response to glycemic stimulus: relation of delayed initial release to carbohydrate intolerance in mild diabetes mellitus.
J Clin Invest. 1967 Mar;46(3):323-35
PMID: 6023769
-
Effects of serotonin and its antagonists on the first phase of insulin release in normal and hypersomatotropic rats.
Horm Metab Res. 1978 Nov;10(6):500-5
PMID: 744569
-
A specific and sensitive enzymatic-isotopic microassay for serotonin in tissues.
J Pharmacol Exp Ther. 1973 Sep;186(3):508-15
PMID: 4728332
-
Pancreatic islets: a tissue rich in serotonin.
Diabetes. 1980 Apr;29(4):304-8
PMID: 6987120
-
Protein measurement with the Folin phenol reagent.
J Biol Chem. 1951 Nov;193(1):265-75
PMID: 14907713
-
Preparation of islets of Langerhans from rabbits and hamsters by the collagenase digestion technique.
Acta Diabetol Lat. 1975 May-Aug;12(3-4):208-18
PMID: 178131
-
Serotonin shifts the phase of the circadian rhythm from the Aplysia eye.
Science. 1978 Dec 1;202(4371):977-9
PMID: 309655