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B L Carroll

Publications and source records attributed to B L Carroll.

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Neuropeptide Y Y2 receptors in hypothalamic neuroendocrine areas are up-regulated by estradiol and decreased by progesterone cotreatment in the ovariectomized rat.

Central neuropeptide Y (NPY) systems are known to stimulate, via the Y1 subtype of NPY receptor, the release of LHRH that leads to surges of LH. Levels of NPY receptors in relation to the above modulation have not been assessed. This study, therefore, examined profiles of NPY receptors in ovariectomized (Ovx) rats and in Ovx rat treated with estradiol (E2) with or without cotreatment with progesterone (P4). [125I]Human PYY containing proline in position 34 [(Pro 34 )hPYY] was used as the Y1 receptor ligand, and [125 I]human peptide YY-(3-36) [hPYY-(3-36)] was used as the Y2 site ligand. Treatment with E2 over 3 days increased Y2 binding in the preoptic hypothalamus and the medial basal hypothalamus, whereas no changes were found in the lateral anterior hypothalamus or the piriform cortex. Administration of P4 (1.5 mg/animal) on the third day of E2 treatment reduced Y2 binding in both the preoptic hypothalamus and the medial basal hypothalamus to or below the density found in Ovx controls. The Y1 receptor levels and the affinity of either Y1 or Y2 binding did not change appreciably with any of the treatments. No significant changes in the binding of wheat germ agglutinin were found at the time of the largest reduction in Y2 receptor numbers by P4, indicating the absence of a major membrane receptor reduction in response to the progestin. The down-regulation of Y2 sites by P4 preceded and accompanied the surge of serum LH induced by the progestin in E2-treated animals. A short term P4 treatment thus appears to reduce the Y2 tone in hypothalamic areas involved in LHRH secretion. This reduction might reinforce Y1 drives known to stimulate the output of LHRH, and thus contribute to LH release.

Analysis of Variance↗

Neuropeptide-Y enhances luteinizing hormone (LH)-releasing hormone-induced LH release and elevations in cytosolic Ca2+ in rat anterior pituitary cells: evidence for involvement of extracellular Ca2+ influx through voltage-sensitive channels.

The present studies were designed to investigate the mechanism by which neuropeptide-Y (NPY) augments the effect of LHRH to stimulate the release of LH from cultured rat anterior pituitary cells. Anterior pituitary cells from ovariectomized rats were enzymatically dispersed, cultured for 3 days, and then exposed to various secretagogues during 3-h incubations. As reported by this laboratory previously, NPY alone (100 nM) did not affect LH release, but significantly enhanced the LH response to 1 nM LHRH. This facilitatory action of NPY was mimicked by the dihydropyridine Ca2+ channel agonist Bay K 8644 (1 microM), and the enhancement of LHRH-induced LH release by either NPY or Bay K 8644 was prevented by the dihydropyridine antagonist nitrendipine (1 microM). Nitrendipine alone reduced the response to LHRH by approximately 25%, but did not affect basal LH release. In contrast, NPY failed to amplify the release of PRL in response to TRH, another Ca2(+)-mobilizing hormone. To test whether NPY also enhances the increase in cytosolic Ca2+ induced by LHRH, anterior pituitary cells were acutely dispersed into single cell suspensions, loaded with the fluorescent Ca2+ probe Indo-1 AM, and analyzed with a UV laser in an EPICS-753 flow cytometer at a rate of 500 cells/sec for 200 sec. The ratio of intracellular fluorescence resulting from Ca2+ bound to the Indo-1 to the fluorescence from Indo-1 alone (Indo-1 ratio), which is an index of the concentration of free cytosolic Ca2+, was determined for each cell. Approximately 7% of anterior pituitary cells responded to LHRH (1 or 10 nM) with significant increases in Indo-1 ratios, indicative of an increase in the concentration of free cytosolic Ca2+. EGTA (2.5 mM) reduced the basal Indo-1 ratios and attenuated, but did not abolish, the initial increase in response to LHRH, consistent with the initial extracellular Ca2+ influx-independent phase of the response to LHRH. NPY alone (100 nM) did not affect the Indo-1 ratios in anterior pituitary cells, but pretreatment with the peptide for 10 min before the scans significantly augmented the Indo-1 ratio response to 10 nM LHRH. This effect of NPY was also blocked by EGTA. Taken together, these biochemical and pharmacological studies suggest that NPY enhances the release of LH stimulated by LHRH by increasing extracellular Ca2+ entry, possibly by selectively affecting that component of the response involving dihydropyridine-sensitive L-type voltage-sensitive Ca2+ channels during the initial stages of the cellular response to LHRH.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Quinolinic acid stimulates luteinizing hormone secretion through a serotonin-dependent mechanism.

Previous results from this laboratory suggest that the tryptophan metabolite, quinolinic acid (QUIN), stimulates luteinizing hormone (LH) secretion in female rats, most likely through actions on NMDA-preferring excitatory amino acid receptors. The present experiments examined whether QUIN alters LH secretion through actions requiring intact catecholaminergic or serotonergic mechanisms. Each study examined the effects of intracisternal (i.c.) injections of 25 microliter acidic saline or saline containing QUIN (500 nmol) or the synthetic analogue, N-methyl-DL-aspartate (NMA, 500 nmol), into ovariectomized, estradiol benzoate-primed rats after pharmacologic disruption of monoaminergic neurotransmission. In each experiment, animals were decapitated 5 min after QUIN or NMA administration. Experiment 1 examined whether reduction in brain serotonin (5-HT) or of norepinephrine (NE) and epinephrine (E) alters the QUIN- or NMA-induced stimulation of LH secretion. Rats were pretreated with the dopamine-beta-hydroxylase inhibitor, FLA-63 (40 mg/kg 2 h prior). A second experiment examined the effects of the 5-HT antagonist, methysergide, on QUIN or NMA stimulation of LH secretion. Methysergide (15 mg/kg) was administered 30 min prior to experimentation. Experiment 3 examined whether selective destruction of raphe serotonergic neurons with the indoleamine neurotoxin, 5,7 dihydroxytryptamine (5,7 DHT), alters QUIN's stimulatory effects. In each study, serum LH concentrations were determined by radioimmunoassay. Hypothalamic catecholamine and 5-HT concentrations were measured by radioenzymatic assay and liquid chromatography with electrochemical detection, respectively. Depletion of brain 5-HT with PCPA significantly reduced the stimulation of LH secretion by QUIN, but not by NMA.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗