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C L Bethea

Publications and source records attributed to C L Bethea.

At least 55 records · Page 3Linked to original sources

Repeated injections of cocaine inhibit the serotonergic regulation of prolactin and renin secretion in rats.

Alterations in serotonergic function following repeated cocaine injections were examined using neuroendocrine responses to a serotonin (5-HT) releaser and 5-HT agonists. Forty-two hours following administration of cocaine (1-15 mg/kg i.p.) twice daily for 7 or 30 days, male Sprague-Dawley rats were injected with the 5-HT releaser p-chloroamphetamine (PCA; 8 mg/kg i.p.) and blood samples were collected 1 h later for radioimmunoassays of plasma prolactin, plasma renin activity (PRA) and plasma renin concentration (PRC). PCA significantly increased secretion of prolactin and renin. These responses were attenuated in rats pretreated with cocaine for 30 days. In rats receiving cocaine for 7 days, the attenuation of PCA-induced secretion of prolactin and renin was less consistently observed. To determine whether these alterations were due to pre- or postsynaptic effects, rats were injected with cocaine (15 mg/kg i.p.) twice daily for 7 days, and the neuroendocrine responses to the direct 5-HT agonists RU 24969 and m-CPP were examined, 42 h after the last cocaine injection. Pretreatment with cocaine potentiated RU 24969-induced stimulation of plasma prolactin concentration. However, cocaine did not alter the ability of m-CPP to increase plasma prolactin concentrations. The stimulation of renin secretion in response to both 5-HT agonists was not altered by cocaine pretreatment. The data suggest that repeated cocaine impairs the function of serotonergic nerve terminals that regulate these endocrine responses. Furthermore, the 5-HT receptors that mediate prolactin secretion may exhibit supersensitivity.

Animals↗

Comparison of neuroendocrine and behavioral effects of ipsapirone, a 5-HT1A agonist, in three stress paradigms: immobilization, forced swim and conditioned fear.

Ipsapirone is an anxiolytic drug and a serotonin1A (5-HT1A) agonist. The aim of the present study was to investigate the effects of low doses of ipsapirone on the hormonal and behavioral response to three stress procedures: immobilization, forced swim and conditioned emotional response (CER). We examined the effect of ipsapirone (0.1, 0.5 or 1.0 mg/kg) on plasma renin concentration (PRC), adrenal corticotropic hormone (ACTH), corticosterone, prolactin and defecation in rats exposed to immobilization, forced swim or CER stress. All three stressors significantly elevated all the hormone levels (P less than 0.01). Immobilization-induced elevations of PRC, and corticosterone were inhibited by the highest doses of ipsapirone (0.5 and 1 mg/kg, i.p.). However, ipsapirone did not modify the immobilization-induced elevations of plasma ACTH, prolactin or defecation. Ipsapirone was relatively ineffective at reducing the endocrine responses to forced swim. Ipsapirone reduced some, but not all of the hormonal responses to CER stress. CER-induced elevations of corticosterone and prolactin were not inhibited by ipsapirone. However, the ACTH response to CER was significantly (P less than 0.01) inhibited by all doses of ipsapirone and the highest dose of ipsapirone attenuated the renin response. In contrast with the hormonal responses, ipsapirone inhibited all of the behavioral responses to CER stress. Ipsapirone inhibited CER-induced freezing behavior and defecation, while dose-dependently reversing the suppressive effect of CER on exploring, grooming and rearing behaviors. In conclusion, there is a dissociation between the influence of ipsapirone on the endocrine and behavioral responses to CER stress. Ipsapirone also has differential effects on the neuroendocrine response to the three stressors studied. Ipsapirone was most effective in attenuating the hormonal responses to CER, followed by immobilization and swim stress. Of the hormones studied, the stimulation of renin secretion after exposure to the three stressors was most sensitive to ipsapirone, while corticosterone and prolactin were the least sensitive to ipsapirone.

Animals↗

Immunocytochemical localization of progestin receptors in monkey hypothalamus: effect of estrogen and progestin.

The increase in PRL secretion which follows progesterone (P) administration to estradiol (E)-primed women and monkeys cannot be due to an action of P at the pituitary level because lactotropes do not contain progestin receptors (PR). To further the hypothesis that P increases PRL secretion by an action in the hypothalamus, PR-expressing neurons were studied in free-ranging and steroid-manipulated monkeys using immunocytochemistry with a monoclonal antibody to human PR. Specific PR immunoreactivity is localized in the nucleus of individual hypothalamic neurons. Male and female adult and juvenile macaque hypothalami contain significant populations of PR-positive neurons throughout the anterior and medial basal hypothalamus. Ovariectomy decreases, but does not abolish, the number of neurons expressing PR. PR expression was not altered in the supraoptic nucleus (SON) by ovariectomy. Estrogen treatment for 28 days caused a significant increase in the number of PR-positive neurons in the medial preoptic area, the ventro-medial nucleus, the arcuate nucleus, and the median eminence, but not in the SON. P treatment added to the E treatment from day 14 to day 28 did not alter the number of PR-positive neurons in any area. These data suggest that PR may be constitutively expressed in the magnocellular neurons of the SON and in certain other cells throughout the hypothalamus. E induces PR in a large proportion of neurons in the medial basal hypothalamus and this action is not blocked by subsequent P treatment. The inability of P to down-regulate PR in the hypothalamus differs from the reproductive tract and pituitary. Indeed, this observation is consistent with the fact that PRL secretion remains elevated during chronic P administration.

Aging↗

Immunocytochemical colocalization of hypothalamic progestin receptors and tyrosine hydroxylase in steroid-treated monkeys.

Progesterone (P)-induced PRL secretion in estradiol (E)-primed monkeys is not due to direct pituitary stimulation, because lactotropes do not express progestin receptors (PR). However, the hypothalamus, particularly the tuberoinfundibular dopaminergic system (TIDA), plays a major role in the regulation of PRL secretion. To determine whether hypothalamic dopamine neurons are progestin target cells, the colocalization of PR and tyrosine hydroxylase (TH), a phenotypic marker of dopaminergic neurons, was examined with double immunocytochemistry. Two methods for visualizing the antigens were applied; the first was a dual peroxidase method, and the second was a peroxidase-alkaline phosphatase method. In addition, the question of whether E induces PR in dopamine neurons was explored. Spayed female monkeys were treated with empty Silastic capsules, E-filled capsules for a period of 28 days, or E capsules supplemented with P capsules for the last 14 days of E treatment. Only the E- plus P-treated monkeys exhibited an increase in serum PRL during the P treatment period. Frontal sections at the level of the optic chiasm and arcuate nucleus were examined for the colocalization of TH and PR. After E treatment, hypothalamic PR-positive cells increased in both intensity and number. Neurons expressing both TH and PR were detected in the rostral hypothalamus, lateral to the third ventricle (A11-rostral) and in a discrete subventricular population (A11-subvent). The lateral population continued caudally (A11-caudal). The A11-subvent population exhibited little steroid regulation. Of the remaining A11 TH neurons, approximately 20% exhibited PR in the spayed and E-treated groups. Addition of P doubled the percentage of PR-containing TH neurons in this group. Although very few TH-positive neurons in the ventral arcuate nucleus contained PR (A12-ventral), many double labeled neurons were observed in the dorsal arcuate region (A12-dorsal). Ventral arcuate TIDA neurons were not regulated by steroids, but E plus P increased PR expression in A12-dorsal. Double labeled cells were rarely seen in the zona incerta (A13) or the emerging ventral tegmental area (A10). In summary, P probably does not act directly on ventral arcuate TIDA neurons to stimulate PRL secretion. However, the frequency of PR-positive dopamine neurons in the A11-rostral, A11-caudal, and A12-dorsal groups increased with E and P treatment. Therefore, the contribution of the PR-positive periventricular dopamine neurons to progestin-stimulated PRL secretion may be important.

Animals↗

Fetal and maternal endocrine responses to reduced uteroplacental blood flow.

In clinical practice, falling or reduced maternal estrogen levels are commonly regarded as indicators of fetal distress. However, experimental studies in primate animal models demonstrate that changes in maternal estradiol concentrations vary in response to reduced uteroplacental blood flow and are elevated during fetal hypoxemic stress, suggesting an increase in fetal adrenal precursor steroids. We studied the effects of graded reductions in maternal distal aortic blood flow (Qda) on the fetal MCR of dehydroepiandrosterone (D; MCR-D), the fetal production rate of D (PR-D), and changes in maternal and fetal plasma concentrations of D, D sulfate, cortisol, androstenedione, estrone (E1), and estradiol (E2) and in fetal plasma ACTH, PRL, and LH. A continuous i.v. infusion of [7-3H]D was administered to fetuses in five pregnant baboons (Papio anubis) at 155-165 days gestation (term, 184 days) for 270 min. A 50% reduction in mean distal aortic blood flow was imposed after 60 min by means of partial occlusion of the aorta with a snare device, which was released at 180 min. Maternal and fetal blood samples were collected at 10-min intervals from 30-60, 120-180, and 240-270 min. Equilibrium concentrations of [3H]D in fetal plasma were determined, and the MCR-D and PR-D were calculated for each of the three levels of Qda corresponding to the control, occlusion, and release intervals. Concentrations of steroid and peptide hormones in maternal and fetal plasma were determined by RIA, and arterial blood pH, pO2, and pCO2 were measured. Control fetal PR-D (mean +/- SE, 4.4 +/- 2.0 mg/day) rose significantly during aortic occlusion accompanied by fetal hypoxemia (11.8 +/- 3.1 mg/day; P less than 0.05) and remained elevated with release of the aortic constriction (13.8 +/- 2.9 mg/day). Changes in fetal MCR-D were variable and not statistically significant. Among the maternal plasma steroids, only E1 and E2 increased significantly, doubling from control values during aortic occlusion and increasing by another 50% after release (P less than 0.05). There was a significant correlation between fetal PR-D and maternal plasma E2 and E1 concentrations (r2 = 0.76 and 0.71, respectively; P less than 0.01). Fetal hypoxemia was associated with dramatic increases in fetal plasma D, D sulfate, androstenedione, E1, and E2. No significant change occurred in fetal plasma cortisol, which tended to decline throughout the study. We observed a dramatic and sustained increase in fetal plasma ACTH during the period of reduced Qda and for 90 min thereafter, but no change in PRL or LH.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenocorticotropic Hormone↗

Reproductive hormone levels after pituitary allograft in cyclosporin-treated monkeys.

OBJECTIVE: To determine the course of events during the onset of hyperprolactinemic amenorrhea, a nonhuman primate model was sought that did not require suckling or interference with the in situ hypothalamic-pituitary axis. DESIGN: Because removal of the adenohypophysis from hypothalamic influence results in secretion of large quantities of prolactin (PRL) but little of the other adenohypophyseal hormones, we explored the possibility of establishing pituitary allografts in monkeys. Normally cycling female rhesus monkeys were immunosuppressed with a daily regimen of cyclosporin A (CyA; 10 to 15 mg/kg per day) and then subcutaneously grafted with a pituitary from another animal (allograft). Blood samples were obtained daily via saphenous vein puncture during control, only CyA-treatment, and allografted-plus CyA- menstrual cycles. SETTING: Oregon Regional Primate Research Center, Beaverton, Oregon. PARTICIPANTS: Female Macaca mulatta exhibiting regular menstruation. INTERVENTIONS: None. MAIN OUTCOME MEASURES: Prolactin, luteinizing hormone (LH), estradiol (E2), and progesterone (P) levels were determined in harvested serum. RESULTS: Temporary survival of 5 of 11 (45%) allografts was assumed based on elevations in serum PRL. Of the viable grafts, 4 of 5 (80%) resulted in reproductive dysfunction, as first evidenced by delay or loss of the preovulatory rise in E2. When the peak of follicular E2 was delayed, then the LH surge occurred, but it was also delayed. If follicular E2 levels did not peak, then the LH surge was absent as was luteal P production. CONCLUSION: These data suggest that in the etiology of PRL-induced infertility in women, the first event is a suppression of follicular E2 production. In addition, the hypothalamus probably remains responsive to the positive feedback of E2 during early or moderate hyperprolactinemia.

Animals↗

Steroid action on estrogen and progestin receptors in monkey pituitary cell cultures.

Estradiol (E) treatment of spayed macaques induces progestin receptors (PR) in pituitary gonadotropes, but not lactotropes. In contrast, levels of pituitary estrogen receptors (ER) remain constant in spayed or E-treated monkeys. In monkey pituitary cultures, the number of PR-positive cells varies depending on the donor status, whereas the percentage of ER-positive cells in similar. We sought to determine whether E can directly induce PR in monkey pituitary gonadotropes in culture and to provide further evidence that monkey pituitary ER are constitutively expressed. Dispersed pituitary cells from intact or gonadectomized male and female macaques were cultured on extracellular matrix with and without E, phenol red, high or low insulin, insulin-like growth factor-I, or 5% ovariectomized monkey serum, ER- and PR-positive parenchymal cells were immunohistochemically detected with monoclonal antibodies H222 and D75 (against human ER) and B39 (against human PR). ER levels were also measured with a gradient shift assay incorporating H222. Neither the percentage of ER-positive cells nor the levels of nuclear ER were altered by donor status or by 8 days of culture in phenol red or E. In contrast, cultures from gonad-intact donors exhibited the highest average percentage of PR-positive cells. The lower number of PR-positive cells in cultures from spayed donors did not vary for 8 days on extracellular matrix without phenol red, E, insulin, or serum. E directly increased the percentage of PR-expressing cells in serum-free cultures. Addition of serum also increased the percentage of PR-positive cells. Addition of E to serum-containing cultures further increased the percentage of PR-positive cells. Neither insulin nor insulin-like growth factor-I directly affected the number of PR-positive cells, but a high level of insulin blunted the action of E on PR induction in serum-free culture. We conclude that E treatment has no obvious effect on ER expression in macaque pituitary. However, the induction of pituitary PR by E treatment of spayed monkeys can be accounted for by a direct action of E on PR gene expression in gonadotropes.

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Estrogen action on growth hormone in pituitary cell cultures from adult and juvenile macaques.

Basal growth hormone (GH) levels are higher in female than male primates, and estradiol (E) treatment of gonadectomized primates increases serum GH. To determine if the effect of E is mediated at the level of the somatotroph, we verified the effect of E-treatment on serum GH in spayed macaques, and then examined the effect of E on GH secretion in serum-free monkey pituitary cultures. Daily blood samples were obtained from cynomolgus macaques which were spayed upon detection of menstruation and immediately implanted with either empty (n = 5) or E-filled (n = 5) 2-cm silastic capsules. The average level of GH was significantly higher (P less than 0.003) in the E-treated group than in the control group (6.4 +/- 0.7 vs. 3.7 +/- 0.6 ng/ml). Pituitaries from rhesus monkeys were dispersed and cultured in 48-well plates on extracellular matrix in DME/F12 with insulin, transferrin, selenium. Using pituitary cells from a long-term spayed female, two plates were established with and without phenol red. Each plate was treated with E in a dose-related manner (0.001-10 nM) from days 0-18 (4 wells per dose). There was a significant dose-related increase in medium prolactin (PRL) in both plates, but E had no effect on GH. Therefore, the effect of E on GH in spayed monkeys cannot be accounted for by a direct action on somatotrophs. Additional phenol red-free pituitary cultures were established from four juvenile males, one adult male, two juvenile females, and two adult females and treated with E in a dose-related fashion for 28 days. Neither the adult male, the adult female, nor the juvenile female cultures exhibited an increase in GH with E treatment. Only the four juvenile male pituitary cultures showed a variable increase in GH with maximal responses ranging from 5 to 40% over control. This data suggested that the juvenile male pituitary contained an E-sensitive GH-secreting cell population which is not present in the other pituitary cultures. PRL and GH double-immunocytochemical staining of pituitary cultures from an adult female and a juvenile male revealed a significant population of rounded and possibly double-labeled cells in the juvenile male culture which were infrequently seen in the adult female culture. Speculatively, this population could represent mammosomatotroph stem cells that corelease GH and PRL upon stimulation.

Aging↗

Effect of vasoactive intestinal peptide on monkey prolactin secretion and cyclic AMP in culture: interaction with estradiol and phenol red.

To test the hypothesis that estrogenic compounds may decrease the sensitivity of primate lactotropes to adenylate cyclase-mediated secretagogues, the effect of VIP on prolactin secretion and cAMP levels in serum-free monkey pituitary monolayer cultures was examined in the presence and absence of estradiol (E) and phenol red. In two experimental designs, E treatment was initiated on either the day after dispersion (split plate design) or 10 days after serum-free culture (whole plate design). VIP challenges (5, 50 and 500 nM) were administered for 4 h on days 10 and 20 of culture. There was a significant decrease in the maximal percent stimulation of prolactin by VIP when cultures were treated with E or phenol red. The average percent increase in prolactin at 5, 50 and 500 nM VIP equalled 23, 83 and 156% in the absence of phenol red, but equalled 14, 43 and 112% when E was added to phenol red-free cultures. The percent stimulation by VIP in the presence of phenol red averaged 32, 62 and 97%, but addition of E with phenol red decreased the average stimulation to 26, 45 and 72%, respectively. Basal levels of cAMP were increased by E and phenol red. However, the maximal percent stimulation of cAMP by VIP was decreased in the presence of E and phenol red. In summary, E and phenol red act to decrease the maximal percent stimulation of prolactin secretion by VIP. This effect is reflected by a decrease in the maximal percent stimulation of intracellular cAMP.

Animals↗

Regulation and localization of estrogen and progestin receptors in the pituitary of steroid-treated monkeys.

PRL increases during pregnancy in primates with rising levels of placental estradiol (E) and progesterone (P). However, while E will increase PRL secretion in monkey pituitary cell cultures, P has no effect. We recently localized progestin receptors (PR) to gonadotropes, but not lactotropes, with an immunocytochemical technique to double stain monkey pituitary cell cultures. The following studies were performed to confirm the immunocytochemical localization of PR in intact pituitary tissue and to determine the effect of E and P on the levels of estrogen receptors (ER) and PR in the pituitary. ER and PR levels were determined in the endometrium of the same animals for an internal comparison. Thirteen adult cycling female cynomolgus monkeys were ovariectomized and treated for 28 days with 1) an empty Silastic capsule (Spay), 2) a 2-cm E-filled capsule (E), or 3) a 2-cm E-filled capsule for 14 days plus a 6-cm P-filled capsule implanted for an additional 14 days (E + P). Blood samples were drawn daily for assay of serum E, P, and PRL levels. Serum PRL was not significantly affected by E, but the sequential addition of P significantly increased serum PRL levels over those observed in Spray animals. The anterior pituitary and endometrium were removed for measurement of ER and PR levels by a sucrose gradient shift assay incorporating monoclonal antibodies against ER and PR. Pituitary ER levels did not vary significantly with steroid treatment (158.2 +/- 33.6, 135.5 +/- 24.9, 104.3 +/- 13.4 fmol/mg DNA in Spay, E, and E + P animals, respectively). Pituitary PR levels were undetectable in Spay animals, were induced by E (393.3 +/- 53.4 fmol/mg DNA), and were suppressed to undetectable levels by the addition of P. A portion of the pituitary was frozen for immunocytochemical single staining for ER, PR, PRL, and LH and double staining for PRL + PR and LH + PR. ER staining was observed in many parenchymal cells, but there was no apparent change with steroid treatment. PR staining was absent in the Spay animals; many PR-positive cells were observed in E-treated females, and only a small number of faintly staining cells were detected in the E + P animals. Double staining for PRL + PR and LH + PR revealed PR in gonadotropes, but not lactotropes. In conclusion, PR, but not ER, are regulated by E and P in the monkey pituitary. Importantly, PR is regulated within gonadotropes, but not lactotropes. Therefore, P probably increases PRL secretion through a hypothalamic action.

Animals↗

Effect of selective serotonin (5-HT) agonists and 5-HT2 antagonist on prolactin secretion.

The present study was undertaken to determine the involvement of serotonergic 5-HT1 and 5-HT2 receptor subtypes in stimulation of the secretion of prolactin. Several 5-HT agonists were administered, in a dose-response fashion, to conscious rats and the effect on the levels of prolactin in plasma was measured. The 5-HT1A + 5-HT1B agonist RU 24969 (5-methoxy-3[1,2,3,6-tetrahydropyridin-4-yl]-1H-indole succinate) and the 5-HT1 + 5-HT2 agonist MK-212 (6-chloro-2-[1-piperazinyl]pirazine) increased levels of prolactin in plasma in a dose-dependent manner. In contrast, the selective 5-HT1A agonists 8-OH-DPAT (8-hydroxy-2-[di-n-propylamino]tetralin) and ipsapirone (2-[4-[4-(2-pyrimidinyl)-1-piperazinyl]butyl]-1,2-benzisothiazol-3 -(2H) one-1,1-dioxidehydrochloride) did not increase levels of prolactin in plasma at any dose. The 5-HT-releasing drug, fenfluramine, also increased the concentration of prolactin in plasma. Pretreatment with the selective 5-HT2 antagonist, LY53857 (6-methyl-1-[1-methylethyl]ergoline-8-carboxylic acid, 2-hydroxy-1-methyl propyl ester (Z)-2-butenedioate [1:1]), did not significantly diminish an increase in levels of prolactin in plasma, induced by injection of fenfluramine. The antagonist LY53857 inhibited, but did not block the MK-212- and RU 24969-induced increase in the levels of prolactin in plasma. By deduction, these data suggest that 5-HT1B receptors, or as yet undefined 5-HT receptor subtypes may be involved in the stimulation of the secretion of prolactin by endogenously released 5-HT, and that 5-HT2 receptors may play a minor role in the serotonergic regulation of the secretion of prolactin.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Neuronal cell bodies in the hypothalamic paraventricular nucleus mediate stress-induced renin and corticosterone secretion.

The present studies were undertaken to determine the involvement of neurons in the hypothalamic paraventricular nucleus (PVN) in stress-induced renin secretion. The stressor was a 10-min conditioned emotional response (CER) paradigm. Bilateral electrolytic lesions in the PVN prevented the stress-induced increase in plasma renin activity (PRA), and plasma renin concentration (PRC). Stress-induced corticosterone secretion was also blocked, supporting the histological verification and suggesting that the lesion included corticosterone-releasing factor neurons in the PVN. Stress-induced renin secretion appears to be restricted to the PVN, as electrolytic lesions in the nucleus reuniens, dorsal and caudal to the PVN, did not prevent the stress-induced increase in either PRA or PRC. The next step was to determine whether cell bodies in the PVN or fibers of passage through the PVN mediate the stress-induced increase of these hormones. For this purpose, bilateral stereotaxic injections of the cell-selective neurotoxin ibotenic acid (10 micrograms/microliter; 0.3 microliters per side) were performed 14 days prior to the stress procedure. Histological evaluation of the tissue revealed cell death and lysis in the PVN. Ibotenic acid injection into the PVN prevented the effect of stress on PRA, PRC and corticosterone levels. None of the lesions prevented the stress-induced rise in plasma prolactin concentration. These results suggest that neurons in the PVN play an important role in mediating stress-induced increases in renin and corticosterone but not prolactin secretion.

Animals↗

Estrogen and progestin receptor immunocytochemistry in lactotropes versus gonadotropes of monkey pituitary cell cultures.

The distribution of estrogen receptors (ER), progesterone receptors (PR), PRL, and gonadotropins in different cell types of the monkey pituitary was examined by immunocytochemical (ICC) labeling of pituitary cell cultures. Dispersed monkey pituitary cells were cultured on extracellular matrix and in serum-free medium for 6-14 days. Individual cultures were singly stained for ER, PR, PRL, LH, and FSH or double labeled for PR and one of the protein hormones. ICC reaction product localizes over the nuclei of cells that are positive for the steroid receptors, whereas reaction product localizes over the cytoplasm of cells that are positive for the protein hormones. Sixty-one percent of the parenchymal cells were positive for PRL, while 1-3% were positive for LH or FSH. Sixty-two percent of the parenchymal cells were ER positive. ER staining was localized over the nuclei of two morphologically distinct cell types. One cell type is smaller and more prevalent than the second cell type. Based on single staining for each of the protein hormones, we propose that the smaller cells are lactotropes, and the larger cells are gonadotropes. PR-positive cells averaged 7.7% of the parenchymal cells. Double ICC staining for PR and the protein hormones demonstrated that PR localize in the nuclei of gonadotropes, but not lactotropes, of monkey pituitary cell cultures. The absence of PR in lactotropes is consistent with our observation that progesterone has no direct effect on PRL secretion in monkey pituitary cell cultures. In contrast, the presence of PR in gonadotropes suggests that progesterone may act directly at the pituitary to modulate gonadotropin secretion in the primate. In conclusion, ER are present in both lactotropes and gonadotropes. PR are present in gonadotropes, but not lactotropes, of the primate pituitary.

Animals↗

The effect of relaxin infusion on prolactin and growth hormone secretion in monkeys.

To test the hypothesis that relaxin may affect pituitary hormone secretion, synthetic human relaxin was infused into cycling and pregnant rhesus monkeys. Doses ranging from 0.154-1540 ng/kg.min were calculated to achieve circulating relaxin concentrations of 1 pM to 10 nM. Low (0.154 and 1.54 ng/kg.min), intermediate (15.4 and 154 ng/kg.min), and high (1540 ng/kg.min) doses of relaxin were infused for 15 min each hour into ovulating monkeys at the midluteal phase of the menstrual cycle in two separate experiments. Serum GH and PRL were measured by RIA, and serum relaxin was determined by enzyme-linked immunosorbent assay. Relaxin was undetectable in peripheral plasma during the control saline infusion and during infusion of the lowest dose of relaxin. Serum relaxin levels reached 0.011, 0.119, 0.965, and 13.0 nM with 1.54, 15.4, 154, and 1540 ng/kg.min, respectively. Serum GH was significantly elevated over basal levels upon infusion of relaxin from 1.54-1540 ng/kg.min; however, a plateau was observed with the intermediate doses, and a decrease in the magnitude of the response was observed at the highest dose. Serum PRL increased over basal levels with 15.4 and 154 ng/kg.min, but there was no difference in the magnitude of the increase between these doses. PRL levels during infusion of the highest dose of relaxin were similar to control levels. These data suggest that relaxin can stimulate secretion of GH and PRL in cycling monkeys within a defined dose range, but that a decrease in pituitary responsiveness occurs at higher doses. One high dose of relaxin (2600 ng/kg.min) was infused for 1 h into the maternal and then the fetal circulations of chronically catheterized and tethered pregnant monkeys between 120-140 days gestation. Upon infusion of relaxin into the maternal circulation, there was a significant elevation of PRL in the mother but not the fetus. Upon infusion of relaxin into the fetus, there was no consistent change in PRL secretion in either the mother or the fetus. In conclusion, relaxin may have a heretofore undescribed role in pituitary physiology during the menstrual cycle and in pregnancy.

Animals↗

Neuroendocrine evidence for denervation supersensitivity of serotonin receptors: effects of the 5-HT agonist RU 24969 on corticotropin, corticosterone, prolactin and renin secretion.

Serotonergic stimulation can increase the secretion of several hormones through the involvement of different serotonin (5-HT) receptor subtypes. RU 24969, a 5-HT agonist with highest affinity at 5-HT1A and 5-HT1B receptors, increased plasma renin activity (PRA) and plasma renin concentration (PRC) as well as plasma corticosterone and prolactin concentrations in a dose-dependent manner. Inasmuch as 5-HT2 receptors mediate the serotonergic stimulation of renin secretion, we examined the ability of two selective 5-HT2 antagonists, ritanserin and LY53857, to inhibit the neuroendocrine effects of RU 24969. To determine whether the 5-HT receptors which are involved in the stimulation of these hormones are pre- or postsynaptic, RU 24969 was also injected to rats whose brain serotonergic neurons were chemically destroyed by i.c.v. injection of 5,7-dihydroxytryptamine. Both ritanserin and LY53857 blocked the effect of RU 24969 on PRA and PRC, but did not inhibit the RU 24969-induced elevation in plasma corticosterone concentrations. Ritanserin did not inhibit the effect of RU 24969 on prolactin levels, but LY53857 produced a partial inhibition of the RU 24969-induced elevation of prolactin concentrations. In rats with chemical lesions of serotonergic neurons the dose-response curves of RU 24969 for PRA and PRC as well as corticotropin, corticosterone and prolactin shifted to the left, suggesting functional up-regulation of postsynaptic 5-HT receptors.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone↗

PC12 cell aggregation and dopamine production on EHS-derived extracellular matrix.

PC12 cells on plastic grow as a single-layered lawn of cells which synthesize, store and secrete dopamine. In contrast, PC12 cells cultured on Englebreth-Holm-Swarm (EHS) tumor-derived extracellular matrix grow into multicellular aggregates. Matrix dissolution and cell migration appear to follow aggregate formation. PC12 cell plating efficiency is decreased on EHS-matrix but the doubling time of cells on EHS-matrix is comparable to plastic. Dopamine secretion and cellular content determined with a radioenzymatic assay as well as dopamine synthesis determined with cation-exchange chromatography are similar on a per cell basis in cultures of PC12 cells on plastic and EHS-matrix.

Animals↗

The effect of simultaneous versus sequential estradiol and progesterone treatments on prolactin production in monkey pituitary cell cultures.

Dispersed monkey pituitary cells were cultured in serum-free medium and on extracellular matrix for 30 days. After 10-14 days with only insulin, transferrin, and selenium (ITS), the addition of estradiol (E) significantly increased PRL secretion compared to that in vehicle-treated controls. Simultaneous addition of E plus progesterone (P) increased PRL secretion similarly to E alone. PRL secretion in cultures treated with E plus P after 10 days induction by E was also similar to that in cultures maintained continuously in E. PRL secretion declined in wells switched from E to P and in wells switched from E back to vehicle, relative to that in wells maintained continuously in E. Estrogen receptors (ER) were detected in whole pituitary tissue and in serum-free pituitary cultures with a monoclonal antiestrogen receptor antibody (H222) in a sucrose density gradient shift assay. Immunocytochemical staining for ER with the same antibody also showed positive cell nuclei in serum-free pituitary cultures. In summary, ER are maintained in monkey pituitary cells during tissue culture, and PRL production can be further increased by E treatment after long term serum-free culture. Neither simultaneous nor sequential E plus P treatment alters PRL secretion compared to E alone.

Animals↗

A comparison of acute stress paradigms: hormonal responses and hypothalamic serotonin.

The effects of stress on plasma renin activity (PRA), plasma prolactin and corticosterone levels, and hypothalamic 5-HT and 5-HIAA concentrations were investigated using a 3 and 12 min conditioned fear (CER) paradigm; 20 min immobilization; 20 min exposure to shallow or deep cold water; 2, 12 and 22 min of intermittent footshock with or without 20 min recovery; and, a 3 min CER with 0, 10, 30 and 60 min recovery. PRA was increased by all the stressors, except shallow cold water, reaching a maximum after 12 min and returning to control values within 10-20 min post-stress. Prolactin levels also were increased by all the stressors, except shallow and deep cold water. Prolactin levels were maximal after 12 min and returned to baseline within 20-60 min post-stress, depending on the stressor. Corticosterone levels were elevated by all the stressors, but not as rapidly as PRA or prolactin, reaching a maximum after about 20 min and returning to baseline concentrations within 30-60 min post-stress. None of the stressors produced significant changes in hypothalamic 5-HT and 5-HIAA concentrations.

Animals↗