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R B Jaffe

Publications and source records attributed to R B Jaffe.

At least 91 records · Page 5Linked to original sources

Localization and regulation of the activin-A dimer in human placental cells.

Subunits of activin and inhibin and their mRNAs are present in human placental and decidual cells. However, evidence for the presence of intact activin dimers in the human placenta and their regulation has been lacking. Using a monoclonal antibody raised against the human activin-A dimer, we examined the cellular localization of immunoreactive activin-A dimer in human placentas of different gestational ages (8-41 weeks). In addition, we determined the effects of culture and various potential regulators on the cellular accumulation of immunoreactive activin-A dimer in trophoblast cells from human first trimester placentas. Activin-A dimer was found in both cyto- and syncytiotrophoblast cells of all gestational ages studied. Immunoreactive activin-A also was detected in placental Hofbauer cells in first and second trimester placentas as well as in cells of the placental membranes. Exposure of these cells to cAMP, GnRH, activin, inhibin, transforming growth factor-beta, dexamethasone, and interleukin-1 did not significantly change the intensity of immunostaining for activin-A dimer. These results together with previous data suggest that placental cells are a source of activin-A and that activin-A may be a paracrine and/or endocrine regulator of feto-maternal interactions during pregnancy.

Activins↗

Endocrine effects and pharmacokinetic characteristics of a potent new gonadotropin-releasing hormone antagonist (Ganirelix) with minimal histamine-releasing properties: studies in postmenopausal women.

A potent and safe GnRH antagonist has been sought unsuccessfully for the last 2 decades. The recently developed GnRH antagonist RS-26306 or Ganirelix ([N-Ac-D-Nal(2)1,D-pClPhe2,D-Pal(3)3,D-hArg(Et2)6,L-++ +hArg(Et2)8,D-Ala10]GnRH ; Syntex Research, Palo Alto, CA), exhibited high antiovulatory potency and low histamine-releasing properties in preclinical studies. Therefore, we determined the extent to which single sc injections of three doses of RS-26306 (1, 3, and 6 mg) decreased serum concentrations of LH and FSH, the free alpha-subunit of LH/FSH/TSH, PRL, and testosterone in five healthy postmenopausal women. We also examined the pharmacokinetic characteristics of RS-26306 by quantifying serum levels of the drug by RIA. RS-26306 rapidly suppressed serum concentrations of LH, FSH, and free alpha-subunit. RS-26306 (6 mg) maximally decreased serum concentrations (mean +/- SEM) of LH, FSH, and free alpha-subunit by 70.1 +/- 3.6%, 42.3 +/- 2.5%, and 74.6 +/- 3.5%, respectively. RS-26306 also decreased serum testosterone, but not serum PRL, concentrations. RS-26306 concentrations reached peak serum levels at 1.2 +/- 0.3, 1.9 +/- 0.4, and 1.8 +/- 0.5 h, respectively, after 1-, 3-, and 6-mg sc injections. The mean serum half-life values based on the terminal portion of the disappearance curves were 22.8 +/- 2.5 and 26.9 +/- 1.0 h, respectively, after 3- and 6-mg s.c. doses. No systemic side-effects were noted after the administration of RS-26306. Our results demonstrate that the GnRH antagonist RS-26306 has favorable pharmacokinetic characteristics and is a potent suppressor of pituitary gonadotropin secretion in postmenopausal women. These attributes and the lack of systemic side-effects make RS-26306 a promising candidate for future clinical applications.

Aged↗

Basic fibroblast growth factor expression is regulated by corticotropin in the human fetal adrenal: a model for adrenal growth regulation.

Human fetal adrenal growth after midgestation is very rapid and appears to be dependent upon pituitary adrenocorticotropin (ACTH) in vivo. We hypothesized that the regulation of fetal adrenal growth by ACTH is mediated by ACTH-stimulated local growth factor production. As we have found basic fibroblast growth factor (bFGF) to be a potent mitogen for human fetal adrenal cells in culture, we conducted studies to determine whether bFGF is synthesized by the human fetal adrenal gland and whether bFGF gene expression in primary cultures of human fetal adrenal cells is regulated by ACTH. Bioassayable bFGF-like activity was detected in extracts of whole human fetal adrenal glands and primary cultures of human fetal adrenal cells. Northern blot analysis of total RNA from whole human fetal adrenal glands revealed a characteristic 7-kilobase bFGF mRNA, indicating that the fetal adrenal bFGF bioactivity was most likely due to local synthesis. Slot blot and ribonuclease protection analysis showed that bFGF mRNA was present in very low amounts in total RNA from primary cultures of unstimulated human fetal adrenal cells but was increased 2- to 3-fold in cells exposed to 10 nM ACTH-(1-24) or 1 mM 8-bromoadenosine 3',5'-cyclic monophosphate for 24 hr. bFGF mRNA was localized to adrenocortical cells and not fibroblasts by in situ hybridization. bFGF mRNA was barely detectable in unstimulated cells, whereas it was markedly increased in cells exposed to either ACTH or 8-bromoadenosine 3',5'-cyclic monophosphate. These data support our hypothesis that the regulation of human fetal adrenal growth by ACTH at midgestation may be mediated by the stimulation of local growth factor production, and we suggest that bFGF may play a major role in this process.

Adrenal Glands↗

Lymphocytic adenohypophysitis: a pituitary mass lesion occurring in pregnancy. Proposal for medical treatment.

Lymphocytic adenohypophysitis is a nonneoplastic, autoimmune cause of pituitary enlargement and insufficiency. Forty-eight of the 50 reported cases have occurred in women, nearly all in association with pregnancy. Left undiagnosed and untreated, it can progress to pituitary insufficiency and death. Histologic studies show characteristic changes of autoimmune disease with lymphocytic infiltration and destruction of anterior pituitary tissue with fibrotic replacement. Lymphocytic adenohypophysitis is currently diagnosed after other pituitary mass lesions are excluded and has been treated with a combination of neurosurgery and end-organ hormone replacement. However, with improved knowledge of the pathophysiologic characteristics and natural history of the disease and with the ability to make a prospective diagnosis, we believe glucocorticoids may suppress the inflammatory response and protect remaining pituitary tissue. Two previously unreported pregnancy-associated cases are described, including one prospectively diagnosed and treated without neurosurgery during pregnancy. Obstetrician-gynecologists must place lymphocytic adenohypophysitis in the differential diagnosis of pituitary enlargement associated with pregnancy, since treatment is available and the sequelae may be life-threatening.

Adult↗

Regulation of steroid and steroid sulfate production and aromatase activity in cultured human granulosa-luteal cells.

The regulation of the production of steroids and steroid sulfates and the activity of aromatase in human luteinized granulosa cells were investigated. The cells were cultured for 48 h in the presence or absence of hCG and FSH. Basal production of pregnenolone (Pre, 0.3 +/- 0.03 ng/micrograms protein) and progesterone (P, 19.3 +/- 1.7 ng/micrograms protein) were high compared with that of other steroids beyond P in the steroidogenic pathway. The concentration of 17 alpha-hydroxyprogesterone (17-OHP) was lower 0.17 +/- 0.06 ng/micrograms and that of other steroids in the 4-ene and 5-ene pathways and steroid sulfates less than 0.05 ng/micrograms. Both hCG and FSH (100 ng/ml) stimulated the production of Pre and P 3- to 5-fold, but only minimal stimulation of other steroids and steroid sulfates was observed. Aromatase activity of granulosa-luteal cells was measured from the rate of formation of 3H2O from 1 beta-[3H]androstenedione (1 beta[3H]A) after exposing the cells to hCG, FSH or estradiol (E2) for 48 h. Basal aromatase activity was relatively low, but hCG and FSH stimulated aromatase 8- and 4-fold, respectively. The incubation of granulosa-luteal cells with E2 did not affect basal aromatase activity, but E2 augmented FSH-stimulated aromatase 1.4-fold (P less than 0.025). The results suggest that there is low 17 alpha-hydroxylase and steroid sulfokinase activity in human granulosa-luteal cells. Aromatase activity in these cells is regulated by both hCG and FSH, and intra-ovarian estrogens may regulate granulosa cell aromatase activity.

Aromatase↗

Isolation and characterization of three forms of joining peptide from adult human pituitaries: lack of adrenal androgen-stimulating activity.

Three structural variants of the joining peptide (JP) fragment of POMC have been purified from human pituitaries. Ion exchange and reverse phase tissue extraction procedures were combined with reverse phase HPLC to achieve complete purification of each form of JP. Fragments resulting from tryptic hydrolysis of each form were characterized by amino acid analysis and fast atom bombardment mass spectrometry. The predominant form of human JP, accounting for about 50% of the total purified, was found to be conjugated to glutathione through the lone cysteine residue at position 9. The other two variants were identified as human JP with a free cysteine residue and human JP dimer and accounted for 35% and 15%, respectively, of the total purified. Recently, human JP-(1-18) has been suggested as having adrenal androgen-stimulating activity. None of the three JP variants or their respective 1-20 amino-terminal fragments resulting from tryptic hydrolysis showed any ability to promote the secretion of dehydroepiandrosterone sulfate by cultured human fetal adrenal cells. Similarly, no potentiation of the stimulatory effects of ACTH-(1-39) was observed. The three variants of human JP as well as JP purified from rat, porcine, and bovine pituitaries were tested for their ability to stimulate androgenic steroids from dispersed fetal rabbit adrenal cells. None showed any significant biological activity either in stimulating steroid secretion or in potentiating the action of ACTH-(1-39).

Adrenal Glands↗

Variable ovarian response to gonadotropin-releasing hormone antagonist-induced gonadotropin deprivation during different phases of the menstrual cycle.

The gonadotropin dependence of ovarian follicular maturation and corpus luteum function can now be examined in women using antagonistic analogs of GnRH. We studied the responses of three groups of women throughout a control cycle and during the administration of a potent GnRH antagonist, detirelix ([N-Ac-D-Nal(2)1,D-pCl-Phe2,D-Trp3,D-hArg(Et2)6,D-Ala10++ +] GnRH, Syntex Research). Detirelix (10 mg, sc) was administered for 3 consecutive days during the midfollicular phase (n = 4), preovulatory phase (n = 4), and early luteal phase (n = 4). The pituitary response to detirelix was similar throughout the three phases of the menstrual cycle. Immunoreactive LH concentrations decreased to 35% (mean +/- SEM) of pretreatment values within 8 h after the initial injection and remained suppressed for 72 h after discontinuance of treatment. Immunoreactive FSH concentrations decreased to 73 +/- 3% of pretreatment levels within 8 h and returned to baseline within 24 h after the third injection. In contrast, the ovarian response to detirelix varied markedly during different phases of the cycle. Midfollicular phase treatment was associated with a decline in estradiol (E2) levels from pretreatment values of 246 +/- 48 to 81 +/- 15 pmol/L within 24 h of the last injection. Vaginal bleeding ensued in three of four women. Follicular recruitment was then reinitiated, and an ovulatory LH surge occurred 18.2 +/- 2.9 days after the last injection. Similarly, treatment during the early luteal phase produced a decline in E2 concentrations from 286 +/- 29 to 70 +/- 7 pmol/L and a decline in progesterone concentrations from 20 +/- 1.6 to 1.9 +/- 0.3 nmol/L within 24 h after the last injection. Luteolysis was associated with menstrual bleeding in all four women. The subsequent ovulatory LH surge occurred 16.5 +/- 1.0 days after discontinuance of treatment. In contrast, treatment during the preovulatory phase resulted in a decline in E2 concentrations from 844 +/- 66 to 429 +/- 132 pmol/L during the first 48 h of treatment. Gonadotropin and E2 concentrations subsequently recovered from suppression, growth of the dominant follicle resumed, and a LH surge occurred 5.8 +/- 1.4 days after the last injection. These data indicate that the GnRH antagonist detirelix produces rapid and consistent suppression of pituitary gonadotropin secretion. The magnitude of suppression and preferential suppression of LH vs. FSH are similar throughout the cycle. In contrast, the ovarian response to gonadotropin deprivation varies during the menstrual cycle.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Inhibition of follicular development by a potent antagonistic analog of gonadotropin-releasing hormone (detirelix).

The ability of a potent long-acting antagonistic analog of GnRH to suppress gonadotropin secretion, disrupt follicular development, and inhibit ovulation was studied in six women with normal menstrual cycles. The GnRH antagonist detirelix ([N-Ac-D-Nal(2)1,D-pCl-Phe2,D-Trp3,D-hArg(Et2)6,D-Ala10++ +] GnRH; Syntex Research) was administered to six women by sc injection on alternate days during a 27-day period. Six additional women underwent blood sampling only, without receiving detirelix. Within 8 h after the initial injection of detirelix, mean (+/- SEM) serum LH and FSH concentrations decreased by 74 +/- 2% and 26 +/- 3%, respectively. Mean immunoreactive FSH levels, however, returned to baseline after the first 72 h despite continued administration of detirelix. Mean estradiol (E2) concentrations decreased from 165 +/- 15 to 70 +/- 11 pmol/L in the first 24 h. During the treatment period follicular development was inhibited, and none of the six volunteers showed evidence of ovulation, as assessed by serum progesterone (P) levels. Maximal suppression of serum LH and E2 was observed approximately 24 h after each injection of detirelix. Compared to the control volunteers, those receiving detirelix had significantly lower mean serum LH (P less than 0.001), E2 (P less than 0.001), and P (P less than 0.001) levels during treatment; mean FSH concentrations, however, were not statistically different in the treatment and control groups. Rapid recovery of pituitary-ovarian function occurred after completion of treatment. In all six volunteers receiving detirelix, a LH surge occurred 10-16 days after the final injection, followed by increased P levels (greater than 32 nmol/L), indicating ovulation and a luteal phase of normal duration (12-14 days). Detirelix injections elicited local skin reactions (erythema and pruritus), but no systemic side-effects were observed. Thus, this long-acting GnRH antagonist can rapidly suppress gonadotropin secretion, inhibit follicular development, and prevent ovulation.

Adult↗

Inhibition of endogenous catecholamine synthesis augments early follicular phase luteinizing hormone secretion.

The physiological role of catecholamines, particularly dopamine and norepinephrine, in the regulation of gonadotropin secretion in humans is unclear. We administered the tyrosine hydroxylase inhibitor alpha-methyl-p-tyrosine (AMPT, 500 mg at 800 and 1000 h) to five women in the early follicular phase of the menstrual cycle and compared LH secretion patterns to those in five untreated controls. Commencing at 800 h, blood was drawn every 15 min for LH and PRL measurements until 1600 h. AMPT elevated PRL concentrations (mean +/- SEM) from a baseline of 14.72 +/- 2.51 micrograms/L to a peak of 102.2 +/- 24 micrograms/L. LH concentrations [21.97 +/- 0.56 (AMPT) vs. 13.51 +/- 0.16 IU/L (control), P less than 0.0001], LH area under the curve [11014 +/- 1815 (AMPT) vs. 7009 +/- 404 IU.min/L (control), P = 0.05] and LH pulse amplitude [9.99 +/- 2.38 (AMPT) vs. 4.03 +/- 0.61 IU/L (control), P = 0.04] were all greater in the group in which catecholamine synthesis was inhibited. There was no difference in pulse frequency between the groups (7.4 +/- 0.51 vs. 6.6 +/- 0.24 pulses/8 h, P greater than 0.05). We conclude 1) inhibition of endogenous catecholamine synthesis augments LH levels in the early follicular phase, and 2) increased LH secretion during catecholamine synthesis inhibition is due, at least in part, to increased LH pulse amplitude but not increased LH pulse frequency.

Catecholamines↗

Localization and secretion of inhibin/activin subunits in the human and subhuman primate fetal gonads.

Little is known about the ability of the fetal primate gonads to produce inhibin/activin. We investigated the presence of the alpha-, beta A-, and beta B-subunits of inhibin/activin in fetal human (16-23 weeks gestational age) and rhesus monkey (days 150-157 of gestation; term = 165 days) testes and ovaries by immunocytochemistry. The regulation of alpha-inhibin secretion by gonadotropins was studied in fetal testicular cultures. In the human fetal testis, alpha-subunit immunostaining was found in interstitial and intratubular cells, while beta A- and beta B-subunit immunostaining occurred in clusters of Leydig cells that were clearly demarcated from groups of Leydig cells that were immunonegative. In the late gestational monkey testis, the alpha-subunit was localized in tubular cells, and the beta B-subunit was present in the tubules and interstitium. Testicular cells from midgestation human testes secreted detectable immunoreactive alpha-inhibin in response to FSH and hCG stimulation; alpha-inhibin levels were significantly higher after hCG than FSH. In contrast, levels of alpha-inhibin secreted by rhesus monkey testicular cells were significantly increased by FSH, but not hCG. In the ovary, only weak beta B-subunit immunoreactivity was detected in granulosa cells of a few primary follicles from midgestational human fetal ovaries. In contrast, all three subunits were found in granulosa cells of numerous primary and secondary follicles in the late gestation rhesus monkey ovary. In light of recent evidence that inhibins/activins have actions on gonadal differentiation and growth modulation in vitro, as well as endocrine effects on the fetal pituitary, we propose that these proteins may have intragonadal and endocrine roles in human and subhuman intrauterine gonadal development.

Activins↗

Radiographic manifestations of congenital anomalies of the aortic arch.

This article discusses congenital anomalies of the aortic arch. Many malformations of a left, right, or double aortic arch produce tracheal, bronchial, and esophageal compression and can be recognized on chest radiographs or esophagrams and confirmed by angiography, computed tomography, or magnetic resonance imaging. Other congenital lesions of the aortic arch are characterized by aortic obstruction and include supravalvular aortic stenosis, aortic arch interruption or atresia, and coarctation.

Aorta, Thoracic↗

Neuromodulatory regulation of gonadotropin-releasing hormone pulsatile discharge in women.

The pulsatile release of gonadotropin-releasing hormone and the consequent secretion of gonadotropins are regulated by a complex interplay of steroids, neuropeptides, catecholamines, and environmental factors. Estrogen and progesterone influence the amplitude and frequency of luteinizing hormone pulsatile secretion. These effects lead to both a diurnal variation in pulse frequency, with a lower frequency at night, and variation during the menstrual cycle, with a lower frequency and increased amplitude during the luteal phase. Opioid peptides inhibit the pulsatile discharge of gonadotropin-releasing hormone and luteinizing hormone. The opioid antagonist, naloxone, causes an increase in luteinizing hormone secretion, particularly during the luteal phase. The administration of opioid receptor agonists, such as beta-endorphin, results in a decline in serum luteinizing hormone during the early follicular phase. Corticotropin-releasing factor, which is increased during stress, inhibits pulsatile luteinizing hormone secretion, and this effect can be blocked by the simultaneous administration of naloxone. These observations suggest that corticotropin-releasing factor exerts its effects on luteinizing hormone through an opioidergic intermediary. Endogenous catecholamines such as dopamine inhibit pulsatile luteinizing hormone release; however, the mechanism involved is not clear.

Adult↗

Maintenance of cell proliferation and steroidogenesis in cultured human fetal adrenal cells chronically exposed to adrenocorticotropic hormone: rationalization of in vitro and in vivo findings.

Previous studies indicated that acute exposure of adrenal cells to adrenocorticotropic hormone (ACTH) markedly stimulates steroidogenic capacity in vitro but also inhibits cell proliferation. However, in vivo, ACTH is known to stimulate adrenal cell growth. To address this discrepancy, we determined the effect of long-term (9-11 days) continuous or intermittent exposure to ACTH on human fetal adrenal cell proliferation and steroidogenesis. Adrenal glands from fetuses 18-22 wk gestation were studied. Fetal zone cells were plated either on plastic or on an extracellular matrix (ECM) in the presence and absence of basic fibroblast growth factor (bFGF) (0.5 ng/ml) and 1 or 10 nM ACTH. As determined by cell counting, bFGF stimulated cell proliferation during 9 days in culture. In the presence of bFGF, the average doubling time decreased from 44 to 30 h on plastic and from 37 to 26 h on ECM. Under these conditions, ACTH did not inhibit cell proliferation. Proliferation of fetal adrenal corticosteroid-producing cells in the ACTH-treated cultures also was assessed by histochemical staining for 3 beta-hydroxysteroid dehydrogenase (3 beta HSD). The number of positive cells increased more than 4-fold between Days 5 and 9 in culture. Continuous treatment with 1 nM ACTH increased dehydroepiandrosterone sulfate (DHAS) production 5- to 10-fold during the first 5 days in culture. Thereafter, the stimulated hormone production decreased over time, although there was still a difference of almost 100-fold between the control and ACTH-treated cultures at the end of 9 days.(ABSTRACT TRUNCATED AT 250 WORDS)

3-Hydroxysteroid Dehydrogenases↗

Metallic foreign bodies in the stomach: fluoroscopic removal with a magnetic orogastric tube.

Thirty-six patients with 37 cases of metallic foreign bodies in the stomach were referred for fluoroscopic removal with a magnet coupled to an orogastric tube. Removal was successful in 34 of the cases. No complications occurred. No patient required hospital admission, endoscopic or surgical intervention, or general anesthesia. Fluoroscopic removal of metallic foreign bodies in the stomach with an orogastric magnet is an alternative to endoscopic or surgical removal.

Child, Preschool↗

Development and regulation of growth and differentiated function in human and subhuman primate fetal gonads.

We have attempted to summarize the research on primate fetal gonadal development that has occurred over the past three decades. Many similarities exist between fetal gonadal development in human and subhuman primates; therefore, comparisons and analogies between these species can be made. Fetal gonadal development is a complex process dependent on timely maturation and differentiation of several cell types with different functions. Adequate development is important for normal sexual development and intact adult fertility potential as well as for intrauterine priming of neural centers in the central nervous system. While the fetal primate testis is active in steroidogenesis, the fetal ovary seems to be quiescent throughout most of gestation, although some ovarian steroidogenic enzymes have been demonstrated. Growth and development of both gonads are controlled during late gestation at least in part by pituitary hormones, while earlier in gestation other yet undefined regulators (placental, intragonadal) likely also are active. The main goal of this review was to demonstrate that gonadal growth and differentiation, both in males and females, is regulated by endocrine factors as well as by intragonadal, autocrine/paracrine agents. Although many parts of the puzzle are still missing it is probable that, similar to fetal development of other endocrine tissues and to events in postnatal gonads, these local regulators have important functions. Currently, primate fetal gonadal research is lacking in at least two key aspects: 1) the definition of paracrine and autocrine nonsteroidal factors that are involved in the regulation of gonadal growth and differentiation in vitro; and 2) in vivo studies in subhuman primates that might better help to clarify the biological roles of the multiple extra- and intragonadal hormones and their complex interactions. To date, the regulation of gonadal steroidogenesis has been investigated more thoroughly than the regulation of gonadal growth. Most of our knowledge stems from observations of gonadal development in anencephalics or subhuman primates after pituitary ablation. Because of the constraints of small organ size and limitation of material, studies of fetal primate gonadal development have been limited. Given such limitations, new molecular biological techniques, including polymerase chain reaction and in situ hybridization, may provide the means of addressing these questions. Further, because of these limitations, sensitive cell separation techniques need to be developed to achieve enriched primary gonadal cell cultures from individual gonads.

Animals↗

Human fetal adrenal definitive and fetal zone metabolism of pregnenolone and corticosterone: alternate biosynthetic pathways and absence of detectable aldosterone synthesis.

In the rhesus monkey and ovine fetus in utero, aldosterone concentrations do not rise in response to surgical stress, ACTH, or angiotensin-II, all of which are secretagogues for this mineralocorticoid in the adult. To assess the mechanism of this phenomenon in the human fetus, metabolism of pregnenolone and corticosterone by second trimester human fetal adrenal definitive zone and fetal zone tissue was studied. After incubation of fresh tissue with trace amounts of [3H]pregnenolone or [3H]corticosterone, the products of metabolism were separated using high performance liquid chromatography and quantified. The delta 5-3 beta-hydroxysteroids 17-hydroxypregnenolone and dehydroepiandrosterone and their sulfates comprised 85-90% of metabolized pregnenolone. In the fetal zone, cortisol was the predominant secreted delta 4-3-ketosteroid, accounting for 6-8% of the metabolized pregnenolone. In the definitive zone, progesterone and corticosterone were the predominant secreted delta 4-3-ketosteroids, each accounting for about 2% of the metabolized pregnenolone. 11-Dehydrocorticosterone and sulfates were the only metabolites detected after incubation of fetal adrenal tissue with corticosterone. 11-Dehydrocorticosterone accounted for more than 80% of the metabolized corticosterone in the definitive zone and 50% in the fetal zone. Incubations with secretagogues or antioxidants (10 nmol/L ACTH, 10 nmol/L angiotensin-II, 21 mmol/L potassium, 100 mmol/L dimethylsulfoxide, 5 mumol/L metyrapone, or 100 mumol/L butylated hydroxyanisole) did not change the pattern or extent of precursor metabolism. No aldosterone, 18-hydroxycorticosterone, or 18-hydroxydeoxycorticosterone was detected in baseline or stimulated incubations of human fetal tissue. In contrast, adult human zona glomerulosa metabolized corticosterone to aldosterone, 18-hydroxycorticosterone, and 11-dehydrocorticosterone under similar conditions.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Glands↗

Recombinant human activin-A promotes proliferation of human luteinized preovulatory granulosa cells in vitro.

Ovarian granulosa cells synthesize and secrete activin, a member of the transforming growth factor-beta (TGF-beta) peptide family, during the follicular phase of the menstrual cycle. We examined the growth-promoting activity of human recombinant activin-A on human luteinized preovulatory granulosa cells obtained from women undergoing in vitro fertilization. Activin-A induced proliferation of granulosa cells on day 5 of culture in a dose-dependent manner. Maximal effects were seen at concentrations greater than or equal to 100 ng/mL with an ED50 of 15 ng/mL. We suggest that activin-A is able to modulate growth of ovarian granulosa cells.

Activins↗