Dopamine Creates a Physical Barrier to Inhibit Prolactin Release in Mammotrophs of Estradiol-Primed Male Rats
- 1 January 1983
- journal article
- research article
- Published by S. Karger AG in Neuroendocrinology
- Vol. 36 (3) , 242-248
- https://doi.org/10.1159/000123462
Abstract
After finding that ergocristine and somatostatin can cause extensive changes in mammotroph ultrastructure within 2 min of administration, we chose dopamine, the putative physiological prolactin-inhibiting factor, to correlate ultrastructural changes to inhibition of prolactin release. In order to choose a dose of dopamine for this study we tested the effects of 2 doses of dopamine (10 and 1,000 µg/kg) on inhibition of prolactin release. The higher dose of dopamine (1,000 µg/kg) completely inhibited prolactin release immediately (in less than 2 min) and maintained complete blockage for a period of 14 min. For the ultrastructural study we injected dopamine (1,000 µg/kg) in the right atrium of conscious free-moving rats through indwelling cannulae, and killed the rats by decapitation 2 min after dopamine administration. The following changes in mammotrophs were observed after the dopamine treatment:(1) increased numbers of secretory granules, (2) peripheral relocation of rough endoplasmic reticulum, and (3) increased numbers of ‘intracellular bodies’ (putative prolactin granule disposal system) associated with secretory granules. Because these rapid ultrastructural changes have been observed after treatment with three different compounds (dopamine, somatostatin and ergocristine), we do not believe that they are the unique effect of any one compound but the common denominator of the three compounds, i.e., inhibition of prolactin secretion being closely linked to the ultrastructural changes. We thus propose that the extensive ultrastructural changes that occurred in such a short period of time following dopamine administration are the mechanism of inhibition of prolactin release.Keywords
This publication has 11 references indexed in Scilit:
- Adenohypophysis Has an Inherent Property for Pulsatile Prolactin SecretionNeuroendocrinology, 1981
- Physiological Evidence for the Existence of Prolactin Releasing Factor: Stress-Induced Prolactin Secretion Is not Linked to Dopaminergic ReceptorsNeuroendocrinology, 1980
- Comparative Studies of Prolactin Secretion in Estradiol-Primed and Normal Male Rats Induced by Ether Stress, Pimozide and TRHNeuroendocrinology, 1980
- Unsuppressed Prolactin Secretion in the Male Rat is PulsatileNeuroendocrinology, 1979
- Estradiol Generates Pulses of Prolactin Secretion in Castrated Male RatsNeuroendocrinology, 1979
- The Effect of Exposure to Ether on Prolactin Secretion and the Half-Life of Endogenous Prolactin in Normal and Castrated Male RatsNeuroendocrinology, 1978
- Disappearance Rate of Exogenous Prolactin from Serum of Female RatsEndocrinology, 1967
- LYSOSOME FUNCTION IN THE REGULATION OF THE SECRETORY PROCESS IN CELLS OF THE ANTERIOR PITUITARY GLANDThe Journal of cell biology, 1966
- In vitro inhibition of pituitary prolactin synthesis and release by hypothalamic extractAmerican Journal of Physiology-Legacy Content, 1963
- LUTEOTROPHIC FUNCTION OF AUTOGRAFTS OF THE RAT HYPOPHYSIS1Endocrinology, 1954