Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “testosterone secretion”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,135 records · Page 63Linked to original sources

Role of GnRH in the ontogeny and regulation of the fetal hypothalamo-pituitary-gonadal axis in sheep.

Adult reproductive ability is to a large extent determined by the appropriate development of the reproductive axis during fetal life. Studies have investigated the role of the fetal hypothalamus in the ontogeny and regulation of pituitary gonadal function during fetal development in sheep. Using immunocytochemistry, we examined the ontogeny of gonadotroph development in the pituitary of female sheep fetuses. At day 70 of gestation (term = 145 days), only immunopositive LH beta cells were present. The number and intensity of staining of these LH beta cells had increased by day 100 but had declined again by day 130. Immunopositive alpha-subunit and FSH beta cells appeared at day 100 of gestation and had further increased in number and staining intensity by day 130 of gestation. Treatment of fetuses with the GnRH agonist buserelin resulted in desensitization of the fetal pituitary gonadotrophs, inhibition of pituitary LH beta and FSH beta mRNA expression and a reduction in the number of immunopositive gonadotrophin-containing cells. Pulsatile GnRH treatment resulted in pituitary-gonadal activation and an increase in LH, FSH and testosterone secretion in males. Thus, the synthesis and secretion of the gonadotrophins during fetal development is critically dependent on the secretion of GnRH from the fetal hypothalamus. Inhibition of fetal gonadotrophins by buserelin treatment from day 70 of gestation resulted in a 40% reduction in the size of the fetal testis at birth, and there were no effects on the fetal ovaries. This reduction in testis size was due to a 45% reduction in the number of Sertoli cells. However, when buserelin was given between day 70 and day 110 of gestation, there were no effects on testis size or morphological development of the testis, suggesting that gonadotrophins regulate testicular development during a 'critical window' late in gestation. Taken together, these studies provide convincing evidence that GnRH plays a central role in the ontogeny and regulation of pituitary-gonadal function during fetal life.

Animals↗

Lack of effect of oxytocin given into the aorta abdominalis on corpus luteum function in cattle.

The aim of present study was to infuse moderate doses of oxytocin into the aorta abdominalis at different stages of the oestrous cycle in cattle to investigate its effect on the secretory function of the corpus luteum (CL). Mature heifers (n = 12) were synchronized with a luteolytic dose of Oestrophan. One day before the experiments the animals had cannulae inserted into the aorta abdominalis through the coccygeal artery, with the tip placed cranial to the origin of the ovarian artery. This allowed direct application of the drug into the reproductive tract. In a preliminary experiment (n = 4) we found that 40 IU of oxytocin given for 5 h would be a more suitable dose to enhance the peripheral concentration of this peptide slightly over its physiological pulses. This dose of oxytocin was infused in Experiment 1 (n = 4) once daily for 5 h on days 10, 11 and 12 of the oestrous cycle and in the same way on days 4, 8, 12 and 16 in Experiment 2. In all of these trials oxytocin affected progesterone or testosterone secretion measured in the peripheral blood. Oxytocin given into the aorta abdominalis acts not only on the CL but also on the uterus, oviduct, blood vessels in the reproductive tract etc. Hence the response of CL can be masked by the effect of oxytocin on these tissues. It is, therefore, assumed that oxytocin acts on the bovine CL inside the ovary but not as a systemic hormone.

Animals↗

[Androgen receptor and insensitivity to androgens].

Androgen insensitivity syndromes are suspected in XY subjects with normal testosterone secretion presenting with absent or severely impaired androgen dependent sexual differentiation. Such clinical features suggest an abnormality of the androgen receptor, necessary step in the transmission of the hormonal message. The androgen receptor is a member of the steroid/thyroid nuclear receptors superfamily. It is a soluble protein of 919 amino acids, divided in independent functional domains responsible for the various functions of the receptor:hormone and DNA binding, and transcriptional activation. The highest concentration of androgen receptor is found, in both sexes, in tissues resulting from primary or secondary sexual differentiation. Cloning of the androgen receptor and use of molecular biology techniques have led to a new classification of androgen insensitivity syndromes. In complete forms (complete androgen insensitivity:CAI) the phenotype is feminine. In receptor negative CAI (Rc-: complete loss of hormone binding), molecular abnormalities include rare, partial or complete, deletions of the gene, or, more frequently, single point mutations in the hormone binding domain, leading to a functionally inactive receptor. Identification and characterization of these mutations provide valuable information regarding the functional importance of specific amino acids of the androgen receptor. In receptor positive CAI (RC+: conserved hormone binding capacity), abnormalities have been reported in the DNA binding domain (deletion of a zinc finger, single point mutations), but also in the hormone binding domain, thus distinguishing between the hormone binding activity and the transcriptional activation activity of this domain. Partial insensitivity syndromes are characterized by an ambiguous and extremely variable phenotype.(ABSTRACT TRUNCATED AT 250 WORDS)

Androgens↗

[The pathogenesis of sexual disorders in men with diabetes mellitus].

The examination of 217 males suffering from diabetes mellitus revealed copulative dysfunction in 111 (51.1%) of them. The investigation of sex, gonadotropic hormones, testicular reserves, sexual constitution and sexual formula was carried out in 22-55-year-old males with sexual dysfunction and healthy controls. It was an erectile phase of the sexual cycle that suffered most frequently. Reduced libido was observed in 19% of the patients. All the diabetes examined showed constitutional predisposition to impaired potency. The patients had high serum concentrations of prolactin, lutropin and dihydroepiandrosterone in low testosterone and insignificantly elevated follitropin and estradiol. There was also low gonadal resistance to choriogonin stimulation. These findings and literature data lead to the conclusion that insulin insufficiency entailing hyperglycemia brings about a rise in prolactin and dihydroepiandrosterone levels which may reduce the sensitivity of the receptors and lutropin in the testes and inhibit testosterone secretion. This is confirmed by inactive gonadal response to stimulation of chorionic gonadotropin. Spermatogenic disorders observed in 25% of the patients were associated with sexual affections and local structural changes (hypotrophy) of the testes.

Adult↗

Increased densities and calcifications in the finger bones of children.

A feature of irregular calcifications and increased densities in the metaphyseal region of the fingers of the hand in adolescent children, occurring mostly in males, is described. These changes become evident at puberty and disappear with the closure of the epiphyses. The etiology of this feature does not appear to be related to a specific hormone. It may be the result of an imbalance between those hormones which cause the pubertal spurt, possibly combined with an irregularity of testosterone secretion.

Adolescent↗

Fine-tuning control of testicular functions.

The effect of testicular administration of peptides synthesized in the testis (somatostatin, oxytocin) or peptide antagonists (opioid receptor antagonists naloxone, nalmefene, anti-corticotrop hormone-releasing hormone antiserum, beta-endorphin antiserum), partial denervation of the testis, and combination of local treatment with peptides/peptide antagonists and denervation was studied on testicular steroidogenesis in immature hemicastrated rats. The observations indicate that beta-endorphin, corticotrop hormone-releasing hormone, oxytocin, and somatostatin exert a stimulatory, whereas enkephalin has an inhibitory action on steroidogenesis. Surgical (vasectomy) or pharmacological (local injection of 6-hydroxydoparnine) denervation suppresses testosterone secretion. Following partial denervation of the testis the effect of naloxone or oxytocin on steroidogenesis observed in fully innervated gonad is not present or the effect is paradoxical. These results indicate that steroidogenesis is fine-tuned by local peptide actions, and neural inputs. Data further suggest an interaction between local peptide action and neural control.

Animals↗

The effect of aromatase inhibitor on basal and testosterone-supplemented estradiol secretion by Leydig cells in vitro.

The effect of increasing concentrations of aromatase inhibitor CGS 16949 A on LH- and testosterone-supplemented estradiol secretion by Leydig cells was studied. Leydig cells were obtained from mice at different ages from 15- to 140-day-old. They were either incubated for 6 hrs with LH and/or testosterone (LH/testosterone-supplemented cultures), or as the control cultures. Aromatase inhibitor was added for further 18h. After 24-h incubation period estradiol secretion was radioimmunologically examined. Leydig cell aromatase activity appeared to depend on the age of the donor mice, being higher in mature than in juvenile animals. Furthermore, the Leydig cells from 30-day-old mice seemed to reveal such an increasing aromatase activity resulting in the higher level of synthetized estradiol. Aromatase inhibitor influenced the Leydig cell functions in a dose-dependent manner (60-70-day-old mice), or independently of the dose used. This supports the hypothesis that Leydig cells from the testes of mature mice are the main site of an active aromatase.

Animals↗

Paint thinner exposure inhibits testosterone synthesis and secretion in a reversible manner in the rat.

Occupational exposure and sniffing of toluene-based organic solvents is an important public health problem. In this study, we have investigated the effects of paint thinner inhalation on testosterone synthesis and secretion in the male rat. A control group inhaled normal air ventilation. The remaining animals were divided into three groups and exposed to paint thinner in a glassy cage for 15 and 30 days (2 h/day). A group of rats was allowed to recover for 15 days after 30 days of exposure. Toluene concentration (the largest constituent in thinner, 66%) was set at 1500 ppm in the inhaled air. At the end, all animals were decapitated and blood samples obtained. Testes and seminal vesicles were removed and weighed out. Serum total testosterone levels were determined by chemiluminescence enzyme immunoassay. Testicular tissue specimens were processed for semi-quantitative evaluation of immunohistochemical testosterone staining and light microscopy. Intensity of immunostaining was evaluated on a scale between 0 (no staining), 1 (minimal), 2 (mild), 3 (moderate) and 4 (strong staining). Serum testosterone levels (ng/ml) were decreased by 15-day (3.31+/-0.61) and 30-day (1.17+/-0.54, p<0.02) thinner exposure compared to the controls (3.91+/-1.03). Another group of rats exposed to thinner for 30 days and then allowed to recover for a period of 15 days had significantly elevated levels of testosterone values (3.77+/-1.1; p<0.05). Immunohistochemical testosterone staining of the cytoplasm of Leydig cells was moderate (3+) and mild (2+) in 15 and 30 days thinner inhalation groups, respectively. Strong staining (4+) was restored following the recovery period. Testicular weight was significantly reduced in all test groups compared to the control values (p<0.01). Diameters of seminiferous tubules were significantly decreased in the solvent exposed groups with enlarged connective tissue. The present findings suggest that paint thinner inhalation inhibits testosterone synthesis and secretion by a direct action on the Leydig cells in a reversible manner.

Acetates↗

The relationship between endogenous testosterone and gonadotrophin secretion.

OBJECTIVE: The secretion of luteinizing hormone (LH), follicle stimulating hormone (FSH) and testosterone in the adult male was studied by means of 48-hour profiles. The aim of the study was to examine the effects of the endogenous circadian variation in serum testosterone concentration on LH pulsatility, and to determine the temporal relationships between FSH and LH, and between LH and testosterone by cross-correlation, and the pulse frequency of these hormones by spectral analysis, as revealed by extended sampling periods. DESIGN: Hormone profiles were obtained by 20-minute sampling over 48 hours. SUBJECTS: Six healthy adult males, aged between 21 and 23 years. MEASUREMENTS: LH and FSH were measured using an immunoradiometric assay and testosterone with a solid-phase radioimmunoassay. RESULTS: The profiles showed pulsatile secretion of all three hormones, and a circadian rhythm with levels highest between 0200 and 0600 h. Cross-correlation analysis: There was a significant relationship between LH and FSH (r = 0.5; P = 0.001) at 0 minutes (i.e. no time lag). A pulse of testosterone followed on average 60 minutes after a pulse of LH (r = 0.26; P = 0.001). Fourier transformation: Spectral analysis showed the dominant period for LH and FSH pulsatility to be 200 minutes. The dominant period for testosterone pulsatility was 400 minutes. The effect of endogenous variations in serum testosterone concentrations: The LH profiles were divided into periods when the serum testosterone concentration was high or low, and Fourier transformation carried out on these shorter periods. These transforms showed that the dominant period during high serum testosterone concentration was 180 minutes, and during low serum testosterone was 120 minutes (P < or = 0.025). CONCLUSIONS: FSH and LH are co-secreted, and a pulse of testosterone follows a pulse of LH by 60 minutes. The physiological changes in serum testosterone concentration that occur during the day result in changes in the pulse frequency of LH. Testosterone concentrations thus have rapidly acting feedback activity at hypothalamic level.

Adult↗

Influence of testosterone on protein/peptide secretion as characterized by the formation of granular vesicles in rat and mouse pinealocytes. An in vitro study.

In the present study, using an in vitro system, the effect of testosterone on protein/peptide secretion in mouse and rat pinealocytes as characterized by the formation of granular vesicles (GV) has been studied. In both species testosterone induces a significant increase in the number of GV. This effect, however, is observed only when the pineals are cultured in a noradrenaline-free medium. These results clearly demonstrate that testosterone, at least under these in vitro conditions, is involved in the regulation of protein/peptide secretion, and point to the importance of pineal proteic/peptidic "hormones" in pineal endocrinology.

Animals↗

Primary culture of prepubertal human testicular cells isolated from testes collected at necropsy.

The aim of the present work was to develop a method for maintaining prepubertal human testicular cells in culture. Seven pairs of testes of boys who died of causes unrelated to endocrine or metabolic diseases were obtained at necropsy. Histology of the testes was normal. Testes were digested with collagenase and dispersed cells were seeded in multi-well dishes in the presence of 5% bovine fetal serum. After the first day, cells were cultured for five days in serum-free medium in the presence or absence of 918 pmol/l insulin. At the end of culture, microscopic examination showed healthy looking cells with characteristics compatible with pre-Sertoli cells; peritubular cells were identified by immunocytochemistry. In the presence of insulin, cells were able to secrete either testosterone or estradiol into the medium, as well as to reveal aromatase activity. In order to study the effect of the time elapsed between death and beginning of cultures, steroidogenic activity was related to this post mortem time. It was found that, in the presence of insulin, cells obtained from testes with less than 24 h of post mortem time secreted testosterone (64 +/- 7.2 pmol/10(6) cells.24 h, mean +/- SD) while cells obtained from testes with more than 24 h of post mortem time did not secrete testosterone. With long post mortem times, aromatase activity under insulin increased from non-detectable to 35 pmol/10(6) cells.24 h. Time course studies showed that cells with capacity to secrete testosterone increase this secretion gradually up to day 10 of culture, while those with detectable aromatase activity showed increments in this activity during the first week of culture.(ABSTRACT TRUNCATED AT 250 WORDS)

Aromatase↗

Testosterone reduces neuronal secretion of Alzheimer's beta-amyloid peptides.

Alzheimer's disease (AD) is characterized by the age-related deposition of beta-amyloid (Abeta) 40/42 peptide aggregates in vulnerable brain regions. Multiple levels of evidence implicate a central role for Abeta in the pathophysiology of AD. Abeta peptides are generated by the regulated cleavage of an approximately 700-aa Abeta precursor protein (betaAPP). Full-length betaAPP can undergo proteolytic cleavage either within the Abeta domain to generate secreted sbetaAPPalpha or at the N- and C-terminal domain(s) of Abeta to generate amyloidogenic Abeta peptides. Several epidemiological studies have reported that estrogen replacement therapy protects against the development of AD in postmenopausal women. We previously reported that treating cultured neurons with 17beta-estradiol reduced the secretion of Abeta40/42 peptides, suggesting that estrogen replacement therapy may protect women against the development of AD by regulating betaAPP metabolism. Increasing evidence indicates that testosterone, especially bioavailable testosterone, decreases with age in older men and in postmenopausal women. We report here that treatment with testosterone increases the secretion of the nonamyloidogenic APP fragment, sbetaAPPalpha, and decreases the secretion of Abeta peptides from N2a cells and rat primary cerebrocortical neurons. These results raise the possibility that testosterone supplementation in elderly men may be protective in the treatment of AD.

Alzheimer Disease↗

Disruption of the joint synchrony of luteinizing hormone, testosterone, and androstenedione secretion in adolescents with polycystic ovarian syndrome.

The present study explores the postulate that the polycystic ovarian syndrome (PCOS) is marked by failure of physiological feedforward and feedback signaling between pituitary LH and ovarian androgens. To this end, we appraised the 3-fold simultaneous overnight release of LH (assayed by high precision immunofluorometry), testosterone (RIA), and androstenedione (RIA) in 12 an- or oligoovulatory adolescents with PCOS (mean +/- SEM age, 16.4 +/- 0.47 yr) and 10 eumenorrheic girls (age, 16.5 +/- 0.45 yr). Gynecological (postmenarchal) ages (years) were also comparable at 4.8 +/- 0.39 (PCOS) and 4.0 +/- 3.6 (control; P = NS). Body mass index and fasting serum insulin and estradiol concentrations were indistinguishable in the two study cohorts. Mean overnight serum concentrations of LH (assayed by both immunofluorometry and Leydig cell bioassay), testosterone, androstenedione, and 17alpha-hydroxyprogesterone were each elevated significantly in patients with PCOS (all P </= 0.027). The bivariate cross-approximate entropy (cross-ApEn) statistic was used as a sensitive barometer of altered within-axis feedback. This scale-invariant metric is designed to quantitate the joint synchrony of putatively linked (neurohormone) time series in a lag-independent pattern-sensitive manner. Here, we applied cross-ApEn to the coupled release of LH and testosterone, LH and androstenedione, and testosterone and androstenedione. Statistical comparisons of the two adolescent study cohorts unveiled consistently elevated cross-ApEn in patients with PCOS, denoting disruption of the pairwise synchrony of LH and testosterone (P = 0.0055), LH and androstenedione (P = 0.0076), and testosterone and androstenedione (P = 0.014) secretion. As an analytically distinct technique to monitor coordinate hormone release, we also applied cross-correlation analysis with variable lag. This appraisal revealed that adolescents with PCOS further exhibit 1) loss of rapid feedforward coupling between LH and testosterone output, 2) erosion of the time-lagged positive linkages between LH and androstenedione secretion, and 3) attenuation of the coordinate relationship between testosterone and androstenedione release. In summary, based on complementary, but independent, statistical tools, the present two-variable analyses unmask vivid deterioration of the joint synchrony of LH-testosterone, LH-androstenedione, and testosterone-androstenedione secretion in adolescents with PCOS. The multiplicity of the bihormonal coupling defects points to impaired feedforward and feedback signaling interfaces among the hypothalamus, pituitary gland, and ovary. Disruption of interandrogen synchrony also identifies pathophysiological dissociation of testosterone and androstenedione cosecretion. Whether presumptive failure of integrative hypothalamo-pituitary-gonadal control emerges prepubertally in girls at risk for PCOS or persists in adults with PCOS is not known.

Adolescent↗

Effect of a potent gonadotropin releasing hormone antagonist on pulsatile testosterone and gonadotropin secretion in the male nonhuman primate.

A potent gonadotropin releasing hormone (GnRH) antagonist [Ac-delta 3Pro1, pFDPhe2, DTrp3,6]-GnRH was given to adult male monkeys to determine the acute effect on pulsatile testosterone and gonadotropin secretion. Blood was drawn at 30 min intervals over 54 h without anesthesia using a mobile vest and tether assembly to support an indwelling catheter. After a 6 h control period, 0.1, 1.0, 2.0, 4.0 mg GnRH antagonist/kg bw in 1 ml corn oil sc, was given to intact adult male monkeys. The highest dose of GnRH antagonist decreased circulating testosterone within 6 h and for approximately 24-36 h duration. These data demonstrate that this GnRH antagonist can reduce serum testosterone both acutely and for intervals greater than 24 h and that the effective dose in intact animals is several-fold (up to 20 times) greater than in castrate animals.

Animals↗

Human prepubertal testicular cells in culture: steroidogenic capacity, paracrine and hormone control.

The neonatal human Leydig cell undergoes a transient period of activation during the first months of life. The biological significance of this activation is unknown. Furthermore, little is known about the hormonal regulation of this biological process, even though it coincides with an elevation of LH levels in serum. In order to study the function of human prepubertal testicular culture cells, obtained during the neonatal period, a method for maintaining primary culture cells (isolated from testes collected at necropsy) in culture was developed. Within 24 h after death, testes were collected from 1-36-month-old subjects. Subjects were divided into two age groups, based on the presence or absence of fetal Leydig cells: 1-7-month-old infants (group 1) and 12-36-month-old children (group 2). Testes were digested with collagenase, and cells were seeded in multi-well dishes. Cells were grown in serum-free conditioned media supplemented with 5 mg/l vitamin C, 0.2 IU/l vitamin E and 10% fetal bovine serum for 2 days. Cells were then grown for an additional 4 days in serum-free media in the presence or absence of hLH (40 IU/l), hCG (135 IU/l), rh FSH (1.5 IU/l), rhGH (0.12 IU/l) or insulin (0.9 mumol/l). Concentrations of steroids in media were determined by RIA on day 6 of culture. In basal conditions cells of group 1 (n = 11) secreted more testosterone, androstendione, 17-hydroxyprogesterone, progesterone and dehydroepiandrosterone (mean +/- SE: 6.76 +/- 1.86, 7.37 +/- 1.82, 61.9 +/- 1.86, 5.75 +/- 1.74 and 8.51 +/- 3.23 pmol/10(6) cells/24 h, respectively) than cells of group 2 (n = 5) (2.95 +/- 1.15, 1.50 +/- 2.75, 1.44 +/- 2.75, 0.78 +/- 1.74 and 3.23 +/- 1.32, respectively). Under hLH stimulation, cells of group 1 increased testosterone, androstendione and 17-hydroxyprogesterone secretions (to 38.2 +/- 0.89, 13.5 +/- 1.17 and 51.7 +/- 3.23), while progesterone secretion remained unchanged (2.82 +/- 1.20). Cell response to rhFSH and rhGH was similar to that of hLH. On the other hand, medium collected from cultures of cells isolated from a Sertoli cell tumor was able to stimulate testosterone secretion in subcultures of control testicular cells in a way similar to that of hCG. In conclusion, (1) these prepubertal human testicular cells can be maintained in primary culture for several days keeping their in vivo steroidogenic potential; (2) cells isolated from young infants can respond to hLH in culture; (3) response to rhFSH is probably mediated by a paracrine factor; (4) response to rhGH is observed in the absence of gonadotropins.(ABSTRACT TRUNCATED AT 400 WORDS)

Age Factors↗

[Simultaneous increase in the aromatization of testosterone into estrogens and secretion of inhibin by Sertoli cells in culture].

17 beta oestradiol and inhibin production by Sertoli cells has been investigated in vitro. In basal conditions, 17 beta-oestradiol secretion is weak whereas inhibin production is undetectable on days 7 and 9 of culture. Addition of PMSG (FSH-like gonadotrophin) and testosterone to the culture medium induces a simultaneous increase in 17 beta-oestradiol and inhibin production. PMSG alone has no effect neither on inhibin nor on 17 beta-oestradiol secretion. Testosterone alone significantly increases 17 beta-oestradiol and inhibin production. Human chorionic gonadotrophin (LH-like gonadotrophin) does not modify inhibin secretion. Dihydrotestosterone stimulates inhibin production without affecting oestrogens secretion. Thus, stimulation of aromatization of testosterone into 17 beta-oestradiol is associated with an increase of inhibin production, but this effect seems to be due to a direct action of androgens.

Animals↗

Effects of recombinant human inhibin and testosterone on gonadotropin secretion and subunit mRNA in superfused male rat pituitary cell cultures stimulated with pulsatile gonadotropin-releasing hormone.

Effects of recombinant human inhibin (rh inhibin) and testosterone on follicle-stimulating hormone (FSH) and luteinizing hormone (LH) secretion and mRNA levels of gonadotropin subunits were investigated in superfused male rat pituitary cell cultures. During superfusion, the cells were stimulated with gonadotropin-releasing hormone (GnRH) pulses (10 nM, 6 min/h) and exposed to rh inhibin (2 ng/ml) and/or testosterone (10 nM) for up to 20 h. The concentrations of FSH and LH were measured in effluent media by radioimmunoassay (RIA), and subunit mRNAs were determined by Northern blot hybridizations using rat FSH beta, LH beta and alpha genomic and cDNA probes. Rh inhibin suppressed the secretion of FSH (30-40% of control) and the secretion of LH to 50-60% of control, but inhibited only FSH beta mRNA (to non-detectable levels). Testosterone alone suppressed the release of LH to 50% of control, whereas FSH release was increased to 130-160% (P less than 0.05) of control. This increase was due to higher interpulse values without significant changes in the pulse amplitude. Also FSH beta mRNA level was increased (1.5-fold, P less than 0.05) but only after 17-20 h of treatment. On the other hand, testosterone had no effect on LH beta and alpha subunit mRNA levels. Testosterone in combination with rh inhibin showed an inhibitory effect on LH beta mRNA; however, the pattern of LH release was not significantly different from that observed with rh inhibin or testosterone alone. Combined effects of testosterone and rh inhibin on FSH secretion and FSH beta mRNA were similar to those observed with rh inhibin alone.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Influence of the degree of stimulation of the pituitary by gonadotropin-releasing hormone on the action of inhibin and testosterone to suppress the secretion of the gonadotropins in rams.

This experiment determined if the degree of stimulation of the pituitary gland by GnRH affects the suppressive actions of inhibin and testosterone on gonadotropin secretion in rams. Two groups (n = 5) of castrated adult rams underwent hypothalamopituitary disconnection and were given two i.v. injections of vehicle or 0.64 microg/kg of recombinant human inhibin A (rh-inhibin) 6 h apart when treated with i.m. injections of oil and testosterone propionate every 12 h for at least 7 days. Each treatment was administered when the rams were infused i.v. with 125 ng of GnRH every 4 h (i.e., slow-pulse frequency) and 125 ng of GnRH every hour (i.e., fast-pulse frequency). The FSH concentrations and LH pulse amplitude were lower and the LH concentrations higher during the fast GnRH pulse frequency. The GnRH pulse frequency did not influence the ability of rh-inhibin and testosterone to suppress FSH secretion. Testosterone did not affect LH secretion. Following rh-inhibin treatment, LH pulse amplitude decreased at the slow, but not at the fast, GnRH pulse frequency, and LH concentrations decreased at both GnRH pulse frequencies. We conclude that the degree of stimulation of the pituitary by GnRH does not influence the ability of inhibin or testosterone to suppress FSH secretion in rams. Inhibin may be capable of suppressing LH secretion under conditions of low GnRH.

Animals↗