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Biomedical subjects

A Steinberger

Publications and source records attributed to A Steinberger.

At least 19 recordsLinked to original sources

Differential effects of gonadotropin-releasing hormone (GnRH) pulse frequency on gonadotropin subunit and GnRH receptor messenger ribonucleic acid levels in vitro.

The hypothalamic hormone, GnRH, is released and transported to the anterior pituitary in a pulsatile manner, where it binds to specific high-affinity receptors and regulates gonadotropin biosynthesis and secretion. The frequency of GnRH pulses changes under various physiological conditions, and varying GnRH pulse frequencies have been shown to regulate differentially the secretion of LH and FSH and the expression of the gonadotropin alpha, LH beta, and FSH beta subunit genes in vivo. We demonstrate differential effects of varying GnRH pulse frequency in vitro in superfused primary monolayer cultures of rat pituitary cells. Cells were treated with 10 nM GnRH pulses for 24 h at a frequency of every 0.5, 1, 2, or 4 h. alpha, LH beta, and FSH beta messenger RNA (mRNA) levels were increased by GnRH at all pulse frequencies alpha and LH beta mRNA levels and LH secretion were stimulated to the greatest extent at a GnRH pulse frequency of every 30 min, whereas FSH beta mRNA levels and FSH secretion were stimulated maximally at a lower GnRH pulse frequency, every 2 h. GnRH receptor (GnRHR) mRNA levels also were increased by GnRH at all pulse frequencies and were stimulated maximally at a GnRH pulse frequency of every 30 min. Similar results were obtained when the dose of each pulse of GnRH was adjusted to maintain a constant total cumulative dose of GnRH over 24 h. These data show that gonadotropin subunit gene expression is regulated differentially by varying GnRH pulse frequencies in vitro, suggesting that the differential effects of varying GnRH pulse frequencies on gonadotropin subunit gene expression occur directly at the level of the pituitary. The pattern of regulation of GnRHR mRNA levels correlated with that of alpha and LH beta but was different from that of FSH beta. This suggests that alpha and LH beta mRNA levels are maximally stimulated when GnRHR levels are relatively high, whereas FSH beta mRNA levels are maximally stimulated at lower levels of GnRHR expression, and that the mechanism for differential regulation of the gonadotropins by varying pulse frequencies of GnRH may involve levels of GnRHR. Furthermore, these data suggest that the mechanisms whereby varying GnRH pulse frequencies stimulate alpha LH beta, and GnRHR gene expression are similar, whereas the stimulation of FSH beta mRNA levels may be different.

Animals↗

Ontogeny of testosterone production from immature mouse testes in vitro.

A dynamic superfusion system was developed to study the ontogeny of testosterone production from immature mouse testes. Testes obtained from 6-day, 12-day and 18-day old mice superfused in vitro. Their basal testosterone productivity were match to their in vivo chronic age. Superfused testes responded to pulsatile stimulation of human chorionic gonadotropin (HCG) for 42 days. Pulsatile HCG stimulation significantly enhanced testosterone production than bolus stimulation. Pulsatile FSH stimulation could significantly increase the testosterone production. Elevation of fluid pressure in culture chamber showed increase testosterone production but it was not significantly different.

Animals↗

Sensitivity of Sertoli and Leydig cells to xenobiotics in in vitro models.

Different chemicals are known to cause testicular damage in the human male and experimental animals. However, the ability to assess the potential and mechanism of action leading to chemically-induced damage in men has been hampered by a lack of good predictive models. Although many of these chemicals were found to impair reproductive capacity in various laboratory animals, only some have caused reproductive damage in men. Mammalian spermatogenesis takes places within the avascular seminiferous tubules of the testis. Specialized tight junctions, which form between adjacent Sertoli cells at the time of puberty, divide the tubular space into the basal and adluminal compartments, and create a "blood-testis" barrier that restricts passage of substances and ions from the circulation. Thus, the completion of meiosis and post-meiotic germ cell differentiation, which take place in the adluminal compartment, are isolated from circulating substances unable to cross the blood-testis barrier. It seems feasible, therefore, that damage to the germ cells induced by testicular toxicants may be mediated through other cells in the testis such as the Sertoli, peritubular, or Leydig cells. A recently developed two-compartment system for culture of testicular cells can simulate, to some degree, the normal physiologic conditions. In principle, Sertoli cells isolated from mammalian testes are cultured on a permeable support (that is millipore filter) between two fluid compartments. They form a highly polarized epithelial layer with characteristic tight junctions that restrict the passage of substances between the two compartments, in analogy to the blood-testis barrier. We believe this system provides an excellent in vitro model for determining the ability of chemicals to: a) alter the permeability of the blood-testis barrier, b) impair the secretory function of Sertoli cells, or c) affect their viability, all of which could indirectly affect the germ cells. We have utilized this system for examining the effects of cadmium chloride (CdCl2) and other toxic substances known to affect the testis. The Leydig cell toxicity was investigated in testicular perfusion system or cultures of isolated Leydig cells.

Animals↗

Regulation of rat pituitary gonadotropin-releasing hormone receptor mRNA levels in vivo and in vitro.

The recent isolation of cDNAs encoding the rat pituitary gonadotropin-releasing hormone receptor (GnRHR) allows studies of the regulation of the synthesis of the GnRHR and its relationship to reproductive function. Analyses of the regulation of GnRHR mRNA levels in the rat pituitary in vivo revealed a progressive increase in levels to 2.0 +/- 0.2-fold after ovariectomy (OVX) and 5.2 +/- 1.3-fold after castration (CAST) (21 days post-operative), compared to intact adult female and male controls, respectively. Replacement therapy with 17 beta-estradiol benzoate in 21-day post-OVX female rats resulted in a marked decrease in GnRHR mRNA levels by 7 days, compared to controls. In contrast, therapy with testosterone propionate in 21-day post-CAST male rats resulted in only a modest decrease in GnRHR mRNA levels. Thus, manipulation of the reproductive endocrine system in vivo results in alterations in GnRHR synthesis at the pretranslational level, which parallel known changes in cell surface gonadotropin-releasing hormone (GnRH) binding activities. The treatment of superfused primary monolayer cultures of rat pituitary cells with hourly pulses of GnRH (10 nM, 6 min/h) resulted in a marked increase in GnRHR mRNA levels (12.8 +/- 4.3-fold compared to untreated cells). In contrast, treatment of cultured cells with continuous GnRH caused no change in GnRHR mRNA levels. These in vitro data show homologous regulation of GnRHR gene expression by GnRH, and suggest that the changes in GnRHR gene expression observed in vivo may be attributable at least in part to changes in the pattern of hypothalamic GnRH secretion.

Animals↗

Effect of cadmium chloride on transepithelial electrical resistance of Sertoli cell monolayers in two-compartment cultures--a new model for toxicological investigations of the "blood-testis" barrier in vitro.

The effect of various doses (0.75-24 microM) of cadmium chloride (CdCl2) on the development of intercellular tight junctions by immature rat Sertoli cells (Sc) was investigated in vitro using the two-compartment culture system. The status of tight junctions was monitored by repeated measurements of the transepithelial electrical resistance (TER). For defining the specificity of CdCl2 effects, the TER changes were correlated with Sc secretory activity (immunoactive inhibin), the cell number (DNA content), and viability (MTT test). The effects of CdCl2 depended on the concentration of the toxicant as well as on the onset and duration of exposure (4 and 18 hr on Day 1 or 5 of culture). The observed effects could be divided into four categories: (1) At highest doses employed, the TER values decreased significantly and irreversibly during 13 days of culture, and the decrease was accompanied by a significant and irreversible drop in inhibin secretion, cell viability, and cell number. (2) Within a narrow range of doses, the irreversible, or only partially reversible, decrease of TER was accompanied by a transient decrease, or no change, of the secretory activity and no significant changes in Sc cell number and/or viability. (3) With still lower doses, the TER values rapidly decreased and then returned to control level within 3-4 days. In this group, no changes in either inhibin secretion or cell viability were observed. (4) Exposure to the lowest doses of CdCl2 caused a delayed, but significant increase in TER. This increase was not accompanied by noticeable changes in other parameters evaluated. These data suggest that CdCl2 may selectively compromise, at least in vitro, the development and maintenance of the inter-Sc tight junctions, without affecting the secretory activity or the cell number and viability. However, increasing cumulative doses of CdCl2 (concentration multiplied by the time of exposure) led to decreased inhibition secretion and cell viability and then, finally, to irreversible cell damage and death. We believe that the experimental model and approach reported in this paper should be very useful for investigating the mechanism of action of known or potential testicular toxicants, particularly those suspected to compromise the integrity of the "blood-testis" barrier.

Animals↗

Structural characteristics of immature rat Sertoli cells in vivo and in vitro.

The structural properties of pelleted prepubertal Sertoli cells (pre-culture pelleted cells) from 19-day-old rats and of similar cells cultured for 7 days were compared with Sertoli cells from the intact animal (testis tissue from 19- and 26-day-old rats, the in vivo groups). Sertoli cells from freshly isolated pellets and those cultured for 7 days were similar in cell and nuclear volumes to their in vivo counterparts. Cell volumes, organelle volumes, and organelle volume densities of newly isolated Sertoli cells were similar to those of sectioned cells taken from the 19-day-old in vivo group, indicating that the procedure for isolation does not grossly alter Sertoli cells. Mean height of cells cultured for 7 days was significantly lower than that of cells from intact animals at 19 and 26 days of age. In vivo, Sertoli cells of 26-day-old animals displayed increased organelle volumes and organelle surface areas compared with those from 19-day-old animals; volume densities and surface densities remained relatively constant, indicating that in vivo, organelle growth is in proportion to growth of the cell. Most organelle volume and surface densities were not significantly different when 19-day-old in vivo cells and pre-culture pelleted cells were compared. Many organelle volume and surface density values were significantly less in cells grown in culture for 7 days as compared to freshly isolated pelleted cells. After 7 days of culture, most Sertoli cell organelles were significantly less in both volume density and surface density, as compared to the in vivo cell groups (19 or 26 day). This indicates that in vitro the organelles do not develop in proportion to the growth of the cell. After 7 days in culture, the absolute volumes and surface areas of the organelles remained generally unchanged as compared to cells from 19-day-old animals. The data show that Sertoli cells grow in volume in vitro like their in vivo counterparts; however, their subcellular features, although well maintained, do not develop in proportion to the cell. This suggests that short-term cultures are a more ideal system in which to study biochemical responses. Also, cultured prepubertal Sertoli cells are most appropriately used to study prepubertal Sertoli cell function. This is the first study to quantify developmental changes in Sertoli cell structure in vivo as well as to compare them with cellular changes occurring in vitro.

Aging↗

Effects of cyclic AMP and phorbol ester on transepithelial electrical resistance of Sertoli cell monolayers in two-compartment culture.

The effects of dibutyryl cyclic AMP [Bu)2cAMP) and phorbol ester (TPA), in the absence or presence of follicle-stimulating hormone (FSH) and/or testosterone, on the development of tight junctions by immature rat Sertoli cells (Sc) were investigated in vitro using the two-compartment culture system. The tight junction status was evaluated by repeated measurements of transepithelial electrical resistance (TER). Untreated cell monolayers developed stable TER of approximately 120 omega cm2 during 3 days of culture. Continuous presence of FSH (200 ng/ml) from day 1 onward significantly increased the TER up to approximately 300 omega cm2 after a transient (24-36 h) delay. The initial delay was prolonged to 3-4 days by the addition of 1-methyl-3-isobutylxanthine (MIX) (0.2 mM), whereas the subsequent increase of TER was significantly potentiated by the concomitant presence of testosterone (10 microM). Cholera toxin (CHT; 10 ng/ml) and forskolin (FR; 50 microM) mimicked these FSH effects. (Bu)2cAMP, at concentrations which maximally stimulated immunoactive inhibin secretion (100-500 microM), inhibited the initial TER increase and significantly decreased the TER level when added on days 1 and 5 of culture, respectively. In contrast, low concentrations of (Bu)2cAMP (4-20 microM) consistently stimulated the TER development, mimicking the stimulatory phase of FSH action. TPA (100 nM) alone had no effect on TER development, but potentiated the stimulatory effect of testosterone in a manner similar to FSH, CHT, FR or low concentrations of (Bu)2cAMP. These results demonstrate, for the first time, a concentration-dependent, dual effect of exogenous cAMP on the Sc function.(ABSTRACT TRUNCATED AT 250 WORDS)

1-Methyl-3-isobutylxanthine↗

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↗

Regulation of interleukin-2 and interferon-gamma gene expression in renal failure.

Regulated expression of interleukin-2 (IL-2) and interferon-gamma (IFN-gamma) genes, induced in cultured peripheral blood mononuclear cells from patients with end-stage renal disease on hemodialysis (HD; N = 13) or peritoneal dialysis (PD; N = 13), was compared to that of 32 normal donors. Culture conditions were chosen that measure the transient, phytohemagglutinin-induced expression of IL-2 and IFN-gamma messenger RNA (mRNA), as well the intactness of post-transcriptional and suppressor T cell-dependent mechanisms that control this expression. The latter was achieved by analyzing the superinduction of IL-2 and IFN-gamma mRNA occurring upon culture with cycloheximide or after low-dose gamma-irradiation, respectively. HD subjects showed a complete loss of inducibility of the IL-2 gene, concomitant with decreased inducibility of IFN-gamma mRNA. In PD subjects, by contrast, expression of IL-2 mRNA was as vigorous as in normal donors, while IFN-gamma mRNA was even more strongly inducible. This difference in gene inducibility is caused by a lack of T cell function in HD subjects. The defect in IL-2 gene expression in HD subjects, occurring most likely at transcription, may underly their impaired immune function.

Adult↗

Regulation of transepithelial electrical resistance in two-compartment Sertoli cell cultures: in vitro model of the blood-testis barrier.

The effects of FSH, testosterone (T), and incubation temperature on the development of inter-Sertoli cell (Sc) tight junctions were investigated in vitro by using repetitive measurements of transepithelial electrical resistance (TER). Control cultures developed stable TER of 100-145 omega cm2 during the initial 3-4 days of incubation at either 33 or 36.5 C, suggesting the formation of simple but continuous tight junctions. The presence of FSH (200 ng/ml) at 33 C delayed the onset of TER development by 3-5 days. The addition of FSH at the time of stable TER (day 5) resulted in a rapid (24 h) decrease of TER to 35-40 omega cm2, which returned to the control level during the subsequent 5-7 days. T alone (0.001-10 microM) caused an early and dose-dependent increase in TER to 165-240 omega cm2. In mono-layers incubated at 36.5 C, the continuous presence of FSH resulted in a dose-dependent increase in TER, which stabilized at 260-380 omega cm2 after 4-6 days. At this temperature, the addition of FSH on day 5 caused a rapid drop of TER similar to that observed at 33 C. This drop could not be prevented by antiproteases (aprotinin, epsilon-aminocaproic acid, or 10% fetal bovine serum) and was followed by an increase in TER up to 260-300-omega cm2. The Sc monolayers developed FSH-induced TER of 230-280 omega cm2 at 33 C, but only after several days of culture at 36.5 C. The effects of T at 36.5 and 33 C were similar, but the maximal TER values were significantly higher (290-380 omega cm2) at 36.5 C. The concomitant presence of T and FSH at 36.5 C resulted in the highest TER levels (580-1200 omega cm2) within 4-6 days, suggesting the synergistic effect of the two hormones on TER development. Dihydrotestosterone was more effective than T when used together with FSH, whereas estradiol had no effect. The different patterns of TER did not result from differences in Sc number or metabolic activity and probably reflected developmental and/or maturational changes in the inter-Sc tight junctions. It is concluded that FSH, T, and temperature play a role in the development of high TER by Sc monolayers (formation of tight junctions) in vitro. FSH and T appear to regulate TER via separate pathways and to cooperate by a yet unknown synergistic mechanism.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Profound primary hypothyroidism.

Profound primary hypothyroidism is described, presenting as a pituitary tumor in a 46-year-old male with hyperprolactinemia and hypogonadotropic hypogonadism. Replacement therapy with thyroxine reversed all of the patient's abnormalities.

Diagnosis, Differential↗

Kinetics of inhibin secretion in static and superfused Sertoli cell cultures in response to follicle-stimulating hormone.

It is generally accepted that inhibin secretion in the testis is regulated by FSH; however, the kinetics of inhibin secretion have not been well defined in vivo and in vitro. We investigated the kinetics of inhibin secretion in response to FSH stimulation in static and superfused Sertoli cell cultures. Sertoli cells from 18-day-old rats were cultured in chemically defined medium for 3 days and were then stimulated for different time periods with FSH (0.1 microgram/ml). In static cultures, media were changed every 2, 4, or 8 h, and the superfusion was carried out at a steady rate of 3 ml/h. Inhibin in the culture media was measured by RIA, using antiserum against synthetic replicate [30Tyr]inhibin alpha-chain-(1-30) and, in some experiments, also by bioassay. The dynamics of inhibin secretion were similar in static and superfused Sertoli cell cultures. A significant increase (p less than 0.01) of inhibin secretion was noted after 5-6 h of FSH exposure. After 8-12 h of continuous FSH presence, the secretion of inhibin reached a maximal level, 5-10-fold higher than basal secretion (no FSH). In the continuous presence of FSH, inhibin secretion remained stable at the high level for up to 54 h. FSH removal caused a delayed (8-h) decrease (p less than 0.01) of inhibin secretion, with return to control basal values after approximately 30 h. When FSH was removed 4 h after its addition, inhibin secretion again increased 5-10-fold between 4 and 12 h, then returned to basal values within 30 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Action kinetics of inhibin in superfused pituitary cells depend on gonadotropin-releasing hormone treatment.

We examined the effects of partly purified inhibin from porcine follicular fluid on FSH and LH release in superfused rat pituitary cell cultures exposed to different GnRH stimuli. Pituitary cells from immature male rats were cultured in chemically defined medium. After 4 days of static culture in the absence of inhibin preparation and GnRH, the cell monolayers were superfused for approximately 10 h at a constant speed (0.15 or 0.25 ml/min) with medium with or without inhibin preparation (1 micrograms/ml). During the superfusion, some cultures were stimulated with GnRH (10 nM) continuously or intermittently (1 min/0.5 h or 6 min/1 h). In the basal condition (no GnRH), inhibin suppressed FSH release after 5 h of exposure (P less than 0.01), whereas LH secretion was not affected. In cultures treated with GnRH pulses (of either frequency), the inhibitory effects on the GnRH-stimulated FSH and LH release were statistically significant (P less than 0.01) after 2 h of exposure, became more pronounced in the next several hours, then remained stable until the end of the experiment. In cultures exposed to GnRH continuously, the suppressing effects of inhibin preparation became significant (P less than 0.01) after 3 h of exposure and were maximal at 4 h (52% and 61% of control values for FSH and LH, respectively). Later, the suppressing effect became less pronounce due to the decreasing rate of gonadotropin secretion in control (no inhibin) cultures exposed continuously to GnRH. The magnitude of FSH and LH suppression after 9 h of exposure to the inhibin preparation was statistically different (P less than 0.05) for different GnRH treatments and was more pronounced with GnRH pulses (24-27% and 54-57% of control values for FSH and LH, respectively) than with cultures exposed to GnRH continuously (77% and 89% of control values for FSH and LH, respectively) or in the absence of GnRH (50% and 92% of control values for FSH and LH, respectively). We conclude that both the kinetics and magnitude of action of the inhibin preparation on FSH and LH release can differ significantly depending on the presence or absence of GnRH as well as on the mode of GnRH stimulation. Of particular importance is the observation that suppressive effects of inhibin preparation decline in cultures that have been desensitized to GnRH after prolonged continuous GnRH exposures. These differences stress the role of GnRH-inhibin interactions in the regulation of gonadotropin secretion and emphasize the importance of the mode of GnRH stimulation in studies concerning inhibin action on pituitary cells in vitro.

Animals↗

Vectorial secretion of inhibin by immature rat Sertoli cells in vitro: reexamination of previous results.

The vectorial secretion of immunoactive and bioactive inhibin by immature rat Sertoli cells (Sc) cultured in a two-compartment system was investigated using various culture supports. When Sc were cultured on Millipore-HA filters (used in all previous studies on vectorial secretion of inhibin), both immuno- and bioactive inhibin were found almost exclusively in the apical compartment, suggesting predominantly apical secretion of the glycoprotein. However, the cell-free Millipore-HA filters completely blocked the passage of Sc-conditioned medium (SCCM) inhibin, even after pretreatment with BSA and SCCM to saturate the protein-binding sites. On the other hand, polycarbonate Nucleopore filters or Millicell-CM membranes, both exhibiting extremely low protein-binding capacity, did not significantly block the passage of SCCM inhibin. When Sc were cultured on Nucleopore filters, the immunoactive inhibin was detected in both culture compartments; the basal compartment/apical compartment (BC/AC) ratio was about 1.5 (range, 1.2-1.9). The maximal effective dose of FSH or (Bu)2cAMP caused a 6- to 9-fold increase in the total (BC plus AC) secretion of immunoactive inhibin, but only a 60% increase in the secretion of bioactive inhibin, as evaluated by RIA and pituitary cell bioassay, respectively. The latter phenomenon was not accompanied by any significant change in the basal/apical distribution of either bioactive nor immunoactive inhibin. The presence of testosterone alone (10(-6) M) did not affect either total immunoactive inhibin secretion or its BC/AC ratio. The effects of the concomitant presence of FSH and testosterone did not differ significantly from those of FSH alone. Similarly to testosterone, the lack of any significant effect was observed for 17 beta-estradiol, dihydrotestosterone, androstenediol, and androstenedione regardless of the presence or absence of FSH. The striking dissimilarity of BC/AC ratios of inhibin noted in cultures maintained on Millipore-HA and Nucleopore filters was not due to differences in permeability barrier or Sc functional polarity. When cultured on either support, Sc monolayers developed comparable permeability barriers, as evaluated by measuring the passage of [3H]inulin and development of electrical resistance. The maximal electrical resistance (130-150 omega cm2) developed after 6-8 days of culture on either support. Also, total transferrin secretion and transferrin BC/AC ratio were similar on both supports, suggesting comparable cell numbers and functional polarities. These findings demonstrate that immature Sc in vitro secrete inhibin bidirectionally (BC/AC ratio, approximately 1.5); the polarity of secretion is unaffected by either FSH or various naturally occurring steroids, including testosterone.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Influence of germ cells on Sertoli cell secretory activity in direct and indirect co-culture with Sertoli cells from rats of different ages.

We examined the effect of direct and indirect Sertoli-germ cell co-culture on androgen binding protein (ABP) and transferrin (TRF) secretion by Sertoli cells (Sc) from 10-, 18-, and 26-day-old rats. Addition of germ cells (Gc), mainly (greater than 80%) pachytene spermatocytes, directly to Sc monolayers enhanced basal and follicle-stimulating hormone (FSH) + testosterone-stimulated ABP and TRF secretion at all three ages. When the Gc were co-cultured indirectly with Sc (separated by a Nucleopore filter), only 50% of the direct stimulatory effect was found at 18- and 26-day-old groups, whereas no difference between direct and indirect co-culture was noted with Sc from 10-day-old rats. With 18- and 26-day-old rat Sc, the Gc effect on ABP and TRF secretion declined after 6 days of Sc culture, reaching the level of Sc-only cultures after 10 days, whereas the direct effect was maintained throughout the entire culture period. With Sc from 10-day-old animals, both direct and indirect effect of Gc decreased after 6 days but the levels of ABP and TRF secretion remained above those of Sc-only cultures. The viability and number of Gc in indirect co-cultures were maintained significantly higher than in Gc-only control cultures. The direct and indirect Gc effect was completely reversed 48 h after the Gc were removed from Sc cultures of 18- and 26-day-old rats, whereas in Sc cultures from 10-day-old rats 40% of the stimulatory effect remained after 48 h of Gc removal. We conclude that Gc can influence Sc secretory activity through both direct contact and some released factor(s). These two pathways may have different relevance at different ages during sexual maturation.

Aging↗

Similar effects of inhibin and cycloheximide on gonadotropin release in superfused pituitary cell cultures.

The actions of two inhibin preparations and cycloheximide on gonadotropin release were investigated in superfused pituitary cell cultures. Pituitary cells isolated from 18-day-old male rats were grown in Matrigel-coated superfusion chambers in chemically defined medium. After stationary culture for 4 days, the cell monolayers were superfused at a constant speed (0.25 ml/min) and were intermittently stimulated (6 min/h) with 10 nM gonadotropin-releasing hormone (GnRH). Groups of cultures were exposed to the test substances for varying time periods during stationary culture and/or during superfusion. Inhibitory effects of both inhibin preparations on the secretion of follicle-stimulating hormone (FSH) and luteinizing hormone (LH) in response to GnRH pulses were observed after 2 h of exposure and became maximal after about 6 h. Basal secretion of FSH between GnRH pulses was also suppressed, whereas the basal interpulse secretion of LH was not changed. When exposure to inhibin was discontinued, the secretion of both FSH and LH progressively increased and returned to control values by approximately 6 h. Cycloheximide (500 ng/ml) affected gonadotropin release with dynamics similar to those observed for the inhibin preparation. These data support the hypothesis that inhibition of gonadotropin synthesis may be an important step in the molecular mechanism of action by which inhibin regulates gonadotropin release.

Animals↗