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Biomedical subjects

S S Yen

Publications and source records attributed to S S Yen.

At least 19 recordsLinked to original sources

Interruption of endometrial maturation without hormonal changes by an antiprogesterone during the first half of luteal phase of the menstrual cycle: a contraceptive potential.

OBJECTIVE: To examine hormonal and endometrial responses to intermittent low-dose RU486 administration in the luteal phase of the menstrual cycle. DESIGN: Prospective open trial in which subjects serve as their own controls. PATIENTS/PARTICIPANTS: Eight normal cycling women. INTERVENTIONS: RU486 (10 mg, orally) was administered 5 and 8 days after urinary luteinizing hormone (LH) surge of treatment cycle. MAIN OUTCOME MEASURES: Daily serum concentrations of LH, follicle-stimulating hormone, estradiol (E2), and progesterone (P) were determined in control, treatment, and recovery cycles (n = 5) or treatment and recovery cycles (n = 3). Changes in endometrial morphology and immunohistochemical staining for P receptor (PR) and E2 receptor (ER) were determined during control (or recovery) and treatment cycles. RESULTS: Cycle length and hormonal patterns were unaltered after treatment with RU486. As demonstrated by reduced stromal edema and delayed glandular development, endometrial dyssynchrony occurred in all eight treatment cycles. In addition, seven of eight treatment cycle endometria demonstrated a decrease in PR staining without consistent change in ER staining. CONCLUSIONS: Two low doses of RU486 given 72 hours apart during the luteal phase of the cycle disrupted ongoing endometrial maturation without altering the hormonal and time course of the menstrual cycle. This study provides a basis for the development of a novel form of luteal contraception.

Adult

Cellular mechanisms of insulin resistance in polycystic ovarian syndrome.

Insulin resistance is a predominant feature in women with polycystic ovarian syndrome (PCO). The cellular mechanisms for this insulin resistance have not been defined. In this study, major steps in the insulin action cascade, receptor binding, kinase activity, and glucose transport activity were evaluated in isolated adipocytes prepared from PCO subjects (n = 8) without acanthosis nigricans and in a group of age and weight-matched controls [normal cycling (NC) n = 8]. The PCO group was hyperinsulinemic and displayed elevated insulin responses to an iv glucose load. The binding of 125I-insulin to adipocytes was similar in cells from PCO and NC subjects. In PCO, autophosphorylation of the insulin receptor-subunit in the absence of insulin was normal but a significant decrease (30% below control) in maximal insulin stimulated autophosphorylation was observed. However, receptor kinase activity measured against the exogenous substrate poly glu:tyr (4:1) was normal. Cells from PCO subjects transported glucose at the same rate, in both the absence and presence of a maximal insulin concentration, as those from NC subjects. Strikingly, there was a large rightward shift in the insulin dose-response curve for transport stimulation in PCO cells (EC50 = 87 +/- 14 pmol in NC vs. 757 +/- 138 in PCO, P less than 0.0005); 8-fold greater insulin concentrations were required to attain comparable glucose transport rates in cells from PCO against NC. In conclusion, our results suggest that insulin resistance in PCO, as assessed in the adipocyte, is accompanied by normal function of insulin receptors, but involves a novel postreceptor defect in the insulin signal transduction chain between the receptor kinase and glucose transport.

Adipose Tissue

Melatonin: a major regulator of the circadian rhythm of core temperature in humans.

The circadian rhythm of core body temperature (BTc), with maxima during the day and minima at night, is normally coupled with the sleep-wake cycle. Pineal melatonin secretion occurs contemporaneously during the nighttime hours and is mediated by the activation of beta-adrenergic receptors during darkness. The hypothesis that nocturnal melatonin secretion may be involved in the regulation of the human circadian BTc rhythm was examined. The temporal relationship between melatonin and the circadian BTc rhythm was characterized in 12 young women, normally entrained to the light-dark cycle. Melatonin levels were manipulated through the administration of exogenous melatonin (2.5 mg, orally) during the daytime (n = 6) or suppression of endogenous nocturnal melatonin secretion by the beta-adrenergic antagonist atenolol (100 mg; n = 6) in double blind placebo-controlled experiments conducted during 2 consecutive days. Serum melatonin levels and BTc were monitored at 20- and 10-min intervals, respectively. In a nightshift worker the temporal relationship between the circadian rhythm of melatonin and BTc was investigated before and after entrainment to a reversed wake-sleep cycle. Our data show that in normally entrained subjects, the time course and amplitude of nocturnal melatonin secretion were temporally coupled with the decline of BTc (r = 0.97; P less than 0.00001). The same occurred in the nightshift worker, both during the dissociation and after entrainment to the reversed sleep-wake cycle. Compared with placebo, administration of melatonin significantly reduced daytime BTc (P less than 0.01), and the suppression of melatonin (by atenolol) attenuated the nocturnal decline of BTc (P less than 0.01). Cosinor analysis showed that the amplitude of the circadian BTc rhythm was reduced by about 40% in response to both daytime melatonin administration (P less than 0.05) and nocturnal melatonin suppression (P less than 0.02). In conclusion, circadian rhythms of melatonin and BTc are inversely coupled. The demonstrated hypothermic properties of melatonin are accountable for the generation of at least 40% of the amplitude of the circadian BTc rhythm. Manipulation of melatonin levels might be clinically useful to resynchronize the BTc rhythm under conditions of BTc rhythm desynchronization.

Adult

Hypothalamic-pituitary-thyroidal function in eumenorrheic and amenorrheic athletes.

The impact of chronic high volume athletic training on thyroid hormone economy has not been defined. We investigated the status of the hypothalamic-pituitary-thyroid axis (H-P-T) in women athletes with regular menstrual cycles (CA) and with amenorrhea (AA). Their data were compared with each other and with those derived from cyclic sedentary women (CS) matched for a variety of confounding factors including the intensity of exercise, caloric intake, and body weight. Alterations of the H-P-T axis were observed in women athletes compared to CS. While serum levels of T4, T3, free T4, free T3 and rT3 were substantially reduced (P less than 0.01) in AA, only serum T4 levels were significantly decreased in CA. Further, remarkable differences were found between CA and AA in that serum levels of free T4 (P less than 0.01), free T3 (P less than 0.01), and rT3 (P less than 0.05) were significantly lower in AA than in CA. Thyroid binding globulin and sex-hormone binding globulin concentrations were within their normal ranges for all groups of subjects. Both 24-h mean TSH levels and the circadian rhythm of TSH secretion were also comparable. However, the TSH response to TRH stimulation was blunted (P less than 0.01) in AA when compared to CA, but not to CS. Whereas the underlying mechanism(s) to account for the "global" reduction of circulating thyroid hormone in the face of normal TSH levels in AA is presently unknown, these observations provide information of clinical significance: 1) chronic high volume athletic training in women athletes with menstrual cyclicity is accompanied by an isolated T4 reduction; 2) an impaired H-P-T axis occurs selectively in athletic women in whom chronic high volume athletic training is associated with compromised hypothalamic-pituitary-ovarian function and amenorrhea.

Adult

A circadian rhythm of serum follicle-stimulating hormone in women.

While a nocturnal decline in serum LH levels in the early follicular phase of the menstrual cycle has been well established, a diurnal variation in serum FSH levels in women has not been demonstrated. We addressed this issue by determining serum LH and FSH levels at 15-min intervals for 24 h in the early follicular phase (EFP; n = 16) and late follicular phase (LFP; n = 10) of the menstrual cycle and in postmenopausal women (PMW; n = 10). Serum estradiol was simultaneously measured at hourly intervals. As expected, EFP, but not LFP and PMW, women had a 15% nocturnal decline (P less than 0.01) in transverse mean LH levels compared to values in the daytime hours. In contrast, nocturnal FSH transverse mean values were significantly lower than daytime values in all groups studied, demonstrating an 18% decline in EFP (P less than 0.001), a 17% decline in LFP (P less than 0.00001), and a 4.3% decline in PMW (P less than 0.01). Cosinor analysis revealed a circadian rhythm for FSH, with acrophases in the afternoon and nadirs at night in all three groups. The circadian amplitudes were 1.43 +/- 0.22, 1.02 +/- 0.16, and 8.42 +/- 1.31 IU/L for EFP, LFP, and PMW, respectively. The EFP nocturnal decline in LH did not conform to a cosine rhythm. A diurnal variation in estradiol was not present in any of the groups of women. These data constitute the first demonstration of a robust circadian rhythm of serum FSH in women. The comparable timing of the acrophase in all groups of subjects and its presence in the postmenopausal years suggest a central, rather than peripheral, feedback mechanism(s) for the circadian rhythmicity. This observation provides strong evidence for a dissociation in the hypothalamic regulation of pituitary LH and FSH secretion in women. The circadian peak and nadir of circulating FSH may prove to be determining for appropriate follicular development.

Adult

Effect of human corticotropin-releasing hormone on gonadotropin secretion in cycling and postmenopausal women.

OBJECTIVE: To test the hypothesis that corticotropin-releasing hormone (CRH) is linked to stress-associated reproductive dysfunction in the human by determining if the administration of human corticotropin-releasing hormone (hCRH) results in an inhibition of gonadotropin secretion. DESIGN: Twenty-four-hour prospective study with frequent (every 10 minutes) blood sampling. SETTING: University Clinical Research Center. INTERVENTIONS: Sequential 8-hour infusions of normal saline, hCRH (1 to 5 micrograms/kg per hour), and hCRH plus naloxone (2 mg/h). SUBJECTS: Four normal cycling women and four postmenopausal women. MAIN OUTCOME MEASURES: Plasma luteinizing hormone (LH), follicle-stimulating hormone (FSH), prolactin (PRL), and adrenal and ovarian steroids. RESULTS: In response to hCRH, a prompt and sustained rise in cortisol (F) was noted in both normal cycling women and postmenopausal women. No inhibition of LH or FSH was noted during either the hCRH or hCRH plus naloxone infusion in either group of women. Unexpectedly, elevations in the mean LH peak amplitude and the transverse mean LH concentration were noted in the postmenopausal women during the infusion of hCRH as compared with saline. The infusion of hCRH had no apparent effect on concentrations of PRL, FSH, and gonadal and adrenal steroids (except for F). CONCLUSIONS: Under these conditions, intravenously administered hCRH has no inhibitory effect on gonadotropin secretion in either premenopausal or postmenopausal women. The mechanism by which stress exerts its deleterious effect on reproductive function in the human remains unknown.

Adult

Treatment of premenstrual syndrome with fluoxetine: a double-blind, placebo-controlled, crossover study.

OBJECTIVE: Although its etiology is unknown, it has been hypothesized that premenstrual syndrome (PMS) is linked to a deficiency of central serotoninergic activity. In the present study, we evaluated the effect of fluoxetine, a specific serotonin uptake inhibitor, on PMS symptoms. METHODS: Following extensive screening, including several psychological inventories, eight women with severe persistent PMS participated in a 6-month double-blind, placebo-controlled, crossover study which included three months each of daily fluoxetine 20 mg or placebo, administered in a randomized order. Symptoms were evaluated using the Calendar of Premenstrual Experiences and other psychometric measures. RESULTS: Compared with placebo, treatment with fluoxetine was associated with an improvement in PMS symptoms as judged by highly significant decreases in behavioral (P less than .005), physical (P less than .05), and total (P less than .005) Calendar of Premenstrual Experiences scores; Beck Depression Inventory scores (P less than .005); Profile of Mood States subscales scores including depression (P less than .005), tension (P less than .005), and anger (P less than .01); and State-Trait Anxiety Inventory scores. The use of fluoxetine was associated with a greater mean reduction in behavioral (75%) than in physical scores (40%), with a mean decrease in total Calendar of Premenstrual Experiences scores of 62%, which rendered these scores similar to follicular phase values. Thus, the luteal phase symptomatology of PMS was effectively abolished. At this dose, no significant side effects or complications were noted during treatment. CONCLUSION: Fluoxetine appears to be a highly effective, well-tolerated treatment for the psychological and physical symptoms accompanying severe PMS.

Adult

Comparison of intermittent and continuous use of a gonadotropin-releasing hormone antagonist (Nal-Glu) in in vitro fertilization cycles: a preliminary report.

The agonistic effect of the gonadotropin-releasing hormone agonist often necessitates an extended period of treatment, resulting in a longer treatment cycle and increased cost. We have evaluated the intermittent use of a gonadotropin-releasing hormone antagonist, Nal-Glu, and have designed a new, simplified protocol for its use in in vitro fertilization. Seven women who had previously undergone treatment with leuprolide acetate and human menopausal gonadotropins were treated with Nal-Glu. Leuprolide acetate, 1 mg/day subcutaneously, was administered in the midluteal phase until down regulation was achieved (estradiol less than 30 pg/ml). Human menopausal gonadotropins, three to four ampules per day intramuscularly, was administered in conjunction with 500 micrograms subcutaneous leuprolide acetate. In the treatment cycles Nal-Glu (50 micrograms/kg/day) was administered intramuscularly on cycle day 1 or 2 for 3 days to achieve down regulation. Human menopausal gonadotropins, three to four ampules intramuscularly, was then administered daily without the antagonist. Nal-Glu was resumed when the follicles reached 14 to 16 mm and was continued until the day of human chorionic gonadotropin administration. Compared with leuprolide acetate-human menopausal gonadotropins cycles, the days required for down-regulation with Nal-Glu were significantly shortened (20.6 +/- 4.1 vs 1.6 +/- 0.3 days, p less than 0.001), as was total cycle length (31.3 +/- 5.8 vs 11.0 +/- 1.0 days, p less than 0.01). The mean number of days of treatment with human menopausal gonadotropins, the mean number of ampules of human menopausal gonadotropins, peak estradiol levels, the number of oocytes, and the percent of oocytes fertilized were not statistically different. No luteinizing hormone surges were detected with Nal-Glu in serum or urine. Nal-Glu was well tolerated, and five pregnancies have resulted. We conclude that intermittent administration of Nal-Glu is highly effective in achieving down-regulation and blocking spontaneous luteinizing hormone surges. Compared with leuprolide acetate-human menopausal gonadotropins cycles, an equally high oocyte and embryo yield may be anticipated. This new protocol substantially decreases cycle length and increases patient convenience.

Adult

The gonadotropin-releasing hormone antagonist (Nal-Glu) acutely blocks the luteinizing hormone surge but allows for resumption of folliculogenesis in normal women.

The gonadotropin-releasing hormone antagonist offers several advantages over the use of the agonist and allows several physiologic questions to be addressed. In this study, we evaluated the ability of Nal-Glu to acutely inhibit the luteinizing hormone surge and prevent ovulation. We also assessed whether recovery of the follicle would be possible after several days of gonadotropin deprivation and estradiol decrement. Eight normal ovulatory women were randomized to control or Nal-Glu-treated cycles (50 micrograms/kg intramuscularly) for 3 to 4 days. Monitoring was carried out with daily vaginal ultrasonographic scans and serum estradiol levels and twice-daily serum luteinizing and follicle-stimulating hormone levels. Nal-Glu acutely inhibited the luteinizing hormone surge and ovulation, even when administered as late as the onset of the luteinizing hormone surge. Evidence was provided that spontaneous follicular rescue recurred in eight of 10 cycles after 3 to 4 days of Nal-Glu administration. Although an estradiol to follicular size dissociation occurred with Nal-Glu, subsequent ovulation occurred in 5.1 +/- 0.6 days after the last Nal-Glu dose. The decrement in estradiol after Nal-Glu administration correlated negatively with the days required for subsequent ovulation to occur (r = 0.77, p less than 0.05). The subsequent luteal phase also was normal in terms of length and progesterone levels. These data confirm the potency and efficacy of Nal-Glu in acutely inhibiting gonadotropins and extends our knowledge on the physiologic characteristics of the dominant follicle.

Adult

Endocrine responses to long-term administration of the antiprogesterone RU486 in patients with pelvic endometriosis.

OBJECTIVE: To examine endocrine and clinical responses to long-term administration of RU486 in patients with endometriosis. DESIGN: Prospective open trial. SETTING: Faculty practice of the authors. PATIENTS, PARTICIPANTS: Six normally cycling women with endometriosis were recruited. INTERVENTIONS: Subjects received RU486 100 mg/d for 3 months. MAIN OUTCOME MEASURE(S): Hormonal changes during RU486 were compared with control data obtained in the preceding cycle during the early follicular phase. Clinical responses were determined by patient assessment and second-look laparoscopy. RESULTS: All women became amenorrheic, and daily urinary levels of ovarian steroid metabolites remained acyclic. Mean luteinizing hormone (LH) (P less than 0.02) and LH pulse amplitude (P less than 0.05) were increased without changes in LH pulse frequency. An antiglucocorticoid effect was demonstrated by an increase in serum cortisol (P less than 0.01) and adrenocorticotropic hormone (P less than 0.05) levels. Treatment resulted in an improvement in pelvic pain in all subjects without significant change in the extent of disease as evaluated by follow-up laparoscopy. CONCLUSIONS: Daily administration of RU486 results in acyclic ovarian function and improvement in the subjective painful symptoms of endometriosis.

Adolescent

Circulating levels of inhibin in pregnant women at term: simultaneous disappearance with oestradiol and progesterone after delivery.

Circulating levels of immunoreactive inhibin (ir-inhibin) and its disappearance after delivery of the placenta were determined in seven pregnant women at term. Serum oestradiol (E2) and progesterone (P4) levels were measured simultaneously and served as comparisons. Fetal contributions of ir-inhibin were assessed by determining concentrations in the umbilical artery (UA) and vein (UV). Relative changes in circulating levels of ir-inhibin, E2, and P4 were compared to levels found in nonpregnant women during the early follicular phase (EFP) and mid-luteal phase (MLP) of the normal menstrual cycle. In pregnant women, ir-inhibin levels at delivery were 15- and 3-fold higher than EFP and MLP values respectively. The disappearance of all three hormones after removal of the placenta followed a bi-exponential curve with an initial, rapid component and a second, slower component. There was a highly significant positive correlation between the disappearance curves of all three placental hormones (r = 0.97, P less than 0.0001). Concentrations of ir-inhibin in the cord blood were about half that in maternal serum and without significant difference between levels in UA and UV.

Adolescent

Acceleration of luteinizing hormone pulse frequency in functional hypothalamic amenorrhea by dopaminergic blockade.

A constellation of neuroendocrine secretory aberrations, including reduced LH pulse frequency and PRL concentrations, has been documented in women with functional hypothalamic amenorrhea (FHA). As pituitary function was preserved, these aberrations were attributed to an alteration in hypothalamic neuromodulation. To investigate the participation of the dopaminergic system in the genesis of the reduced LH pulse frequency and suppressed PRL levels in FHA, we studied six women with FHA and six cyclic women in the early follicular phase by obtaining blood samples at 15-min intervals for 48 h during sequential 24-h infusions of saline and a dopamine receptor blocker, metoclopramide (MCP). A hypothalamic vs. pituitary site of action was inferred from the pulsatility characteristics. MCP consistently elicited an increase in the LH pulse frequency in the women with FHA [7.3 +/- 1.2 (+/- SE) to 10.5 +/- 1.3 pulses/24 h; P less than 0.005]. In contrast, the eumenorrheic women did not show a significant change in LH pulse frequency in response to MCP (15.2 +/- 1.0 to 14.3 +/- 0.9 pulses/24 h). While the PRL concentrations were significantly lower in the FHA group during the infusion of saline (P less than 0.001) and MCP (P less than 0.005), the relative increases in PRL during MCP were similar in both groups. The acceleration of LH pulse frequency by blockade of dopamine receptors implies that there is increased hypothalamic dopaminergic inhibition of GnRH pulse frequency in women with FHA.

Adult

Sublingual administration of testosterone-hydroxypropyl-beta-cyclodextrin inclusion complex simulates episodic androgen release in hypogonadal men.

In search of a more physiological testosterone (T) replacement therapy for hypogonadal states, we evaluated an inclusion complex of T with 2-hydroxypropyl-beta-cyclodextrin (HPBCD). HPBCD enhances T solubility and absorption, but HPBCD is not absorbed. Five hypogonadal men (mean age, 32.4 +/- 2.3 yr) with serum T levels below the normal range were treated in two separate experimental phases with either a 2.5- or 5.0-mg tablet of sublingual (SL) T-HPBCD three times daily for 7 days. Acute pharmacodynamic changes were monitored at baseline and 10, 20, and 40 min and 1, 1.5, 2, 3, 4, and 8 h after administration of the first dose. At the 5-mg dose, a maximal concentration (Cmax) of T (85.4 +/- 11.0 nmol/L) was achieved in 20 min (63 +/- 24-fold increase), followed by a rapid decline to below the normal range (less than 12 nmol/L) at 2 h, with an estimated half-life of decline of 1.87 +/- 0.19 h. The dihydrotestosterone (DHT) Cmax (4.1 +/- 0.5 nmol/L) occurred at 32 +/- 5 min (8.9 +/- 1.3-fold increase) and declined to below the normal range (less than 1.2 nmol/L) after 3 h. The integrated 8 h value for the ratio of T/DHT was 10.0 +/- 1.1, which fell within the normal range. The increment in androstenedione paralleled that in T, and the Cmax (6.8 +/- 0.9 nmol/L) was reached in 24 +/- 4 min (2.3 +/- 0.6-fold increase). Compared to baseline, the Cmax was significantly greater for T (P less than 0.005), DHT (P less than 0.0005), and androstenedione (P less than 0.005). Both estradiol (E2) and estrone (E1) remained in the normal range (less than 200 pmol/L), although the Cmax for E1 was significantly greater than baseline (P less than 0.05). Serum LH levels were suppressed (19.0 +/- 2.6%) at 2 h (P less than 0.05), without a significant change in FSH. During 7 days of treatment, there was no cumulative increase in basal T, DHT, and E2 levels or further decline in LH or FSH levels. There was no change in sex hormone-binding globulin levels. Similar results were observed with the 2.5-mg dose, suggesting that the capacity of SL absorption may be limited to a certain dose of T-HPBCD. The fluctuations in T after SL administration of T-HPBCD resemble endogenous episodic secretion. We conclude that T, complexed with HPBCD, is rapidly absorbed by the SL route and quickly metabolized without sustained elevations of DHT or E2.

2-Hydroxypropyl-beta-cyclodextrin

Amplification of pulsatile LH secretion by exogenous melatonin in women.

The effect of melatonin on pulsatile LH secretion was investigated in early follicular phase women (days 2-5). During two consecutive days, at 0800 hrs., subjects received placebo or oral melatonin in a random double-blind fashion. Two doses of melatonin were used; 100 mg single dose (N = 6) or 2.5 mg in three divided doses (N = 5), (1 mg at 0800 hrs., 0.75 mg at 1000 and 1200 hrs.). Blood samples were collected every 10 minutes, between 0900-1700 hrs. Compared with placebo, melatonin administration augmented LH pulse amplitude (p less than 0.01) without changing LH pulse frequency. The integrated LH secretion was significantly increased (p less than 0.01) after melatonin, independent of doses administered. Serum FSH and ovarian steroids were not altered. It is concluded that exogenous melatonin enhances LH pulse amplitude in women, without modifying FSH and ovarian steroid levels.

Adult

Follicular arrest during the midfollicular phase of the menstrual cycle: a gonadotropin-releasing hormone antagonist imposed follicular-follicular transition.

The functional dependency of the dominant follicle on pulsatile gonadotropin inputs was evaluated by using a GnRH antagonist as a probe. Hormonal dynamics, particularly the relationship of FSH, estradiol, and inhibin, during and after the withdrawal of GnRH receptor blockade achieved by treatment with Nal-Glu GnRH antagonist (50 micrograms/kg, im) for 3 days in the midfollicular phase of the cycle (days 7-9) were ascertained. Daily blood samples were obtained for LH, FSH, estradiol (E2), progesterone, and immunoreactive inhibin (i-INH) measurements by RIA during 2 consecutive (control and treatment) cycles in 12 women. In 5 women, LH pulsatility was assessed by 10-min blood sampling for 12 h before, during, and after Nal-Glu treatment. The administration of Nal-Glu prolonged both follicular phase (14.0 +/- 0.5 vs. 19.7 +/- 0.8 days; P less than 0.0001) and total cycle length (28.1 +/- 0.5 vs. 34.1 +/- 1.2 days; P less than 0.0001). Gonadotropin suppression (50-60%) was achieved, as reflected by a marked decrease in mean LH levels (14.3 +/- 1.9 to 5.4 +/- 0.5; P less than 0.01) and LH pulse amplitude (5.5 +/- 0.7 to 2.4 +/- 0.3 IU/L; P less than 0.01) in response to Nal-Glu antagonist. The number of LH pulses was reduced (36%), but pulses remained discernible. Concentrations of FSH (10.8 +/- 1.4 to 5.9 +/- 0.4 IU/L; P less than 0.05), E2 (322.7 +/- 71.9 to 84.8 +/- 7.7 pmol/L; P less than 0.01) and i-INH (284.0 +/- 25.9 to 164.4 +/- 7.5 U/L; P less than 0.01) decreased concomitantly. Within 24-48 h of the last injection of Nal-Glu, all hormones had returned to pretreatment levels. This was followed by normal functional expression of follicular growth and maturation, as reflected by an increase in E2 and i-INH levels, timely ovulation, and normal luteal function. These findings indicate that an approximately 50% decline in gonadotropin support to the dominant follicle leads to functional arrest, but not demise, of the developing follicle(s) without triggering new folliculogenesis. The follicular apparatus retained its ability to reinitiate its original functionality once appropriate gonadotropin inputs were reinstated.

Adult

Marked augmentation of nocturnal melatonin secretion in amenorrheic athletes, but not in cycling athletes: unaltered by opioidergic or dopaminergic blockade.

Exercise of sufficient intensity during daylight hours has been demonstrated to result in an acute elevation of circulating melatonin levels. The possibility that repeated elevations of daytime melatonin secretion may result in alterations of the nocturnal maxima of the circadian rhythm in highly trained athletic women with and without amenorrhea was investigated. Twenty-four-hour melatonin profiles in matched cyclic sedentary (CS; n = 10) women, cyclic athletic (CA; n = 10) women, and amenorrheic athletic (AA; n = 8) women were compared. The roles of endogenous opioids and dopamine as potential modulators of melatonin secretion were also evaluated by comparing the melatonin profiles during sequential 24-h infusions of saline, followed by either naloxone or metoclopramide (both at 30 micrograms/kg.h). Elevated (P less than 0.05) mean daytime (1000-1700 h) melatonin levels were observed in both groups of athletic women compared to sedentary women. In contrast, nocturnal melatonin levels in sedentary and athletic cycling women were indistinguishable, while amenorrheic athletic women displayed a marked increase in nocturnal peak amplitude (P less than 0.001 vs. CS and CA) and a 2-h delay in offset (P less than 0.001 vs. CS and CA), which yielded a 2-fold amplification of the integrated nocturnal melatonin secretion (P less than 0.001 vs. CS and CA). The onset of the nocturnal rise did not differ among the three groups. Opioidergic and dopaminergic blockade with naloxone and metoclopramide at the doses used did not alter any parameter of melatonin secretion in any of the three groups of women. In conclusion, athleticism in women is associated with an elevation of daytime melatonin levels independent of menstrual status. AA women, but not CA women, display a 2-fold amplification of nocturnal melatonin secretion with a 2-h delay of offset, which does not seem to be linked to athleticism per se. The significance and neuroendocrine basis for the expanded melatonin secretion in athletic amenorrheic women remains to be elucidated.

2-Methyl-4-chlorophenoxyacetic Acid

Altered waveform of plasma nocturnal melatonin secretion in premenstrual depression.

The nocturnal secretion of plasma melatonin was determined under dim to dark conditions in eight patients with prospectively confirmed premenstrual syndrome and in eight age- and menstrual cycle phase-matched normal control subjects. Plasma samples for melatonin were collected every 30 minutes from 6 PM to 9 AM during the early follicular, late follicular, midluteal and late luteal phases of the menstrual cycle. Compared with normal controls, patients with premenstrual syndrome had an earlier (phase-advanced) offset of melatonin secretion, which contributed to a shorter secretion duration and a decreased area under the curve. No statistically significant differences were found between women with premenstrual syndrome and normal controls for melatonin onset or peak concentration, or for estradiol or progesterone levels. The data demonstrate that women with premenstrual syndrome have chronobiological abnormalities of melatonin secretion. The fact that these patients respond to treatments that affect circadian physiology, such as sleep deprivation and phototherapy, suggests that circadian abnormalities may contribute to the pathogenesis of premenstrual syndrome.

Adult

Endogenous sex hormone levels in older adult men with diabetes mellitus.

In a Southern California population-based cohort of 985 men aged 40-79 years in 1972-1974, 110 men with diabetes had significantly lower mean levels of endogenous plasma testosterone and sex hormone-binding globulin than did 875 nondiabetic men. Mean androstenedione, estrone, and estradiol levels did not differ significantly by diabetic status. The testosterone and sex hormone-binding globulin differences were reduced but not eliminated after adjustment for age and body mass index (weight (kg)/height (m)2). Twenty-one percent of diabetic men compared with 13% of nondiabetic men had testosterone levels below a categorically defined normal level of 3,500 pg/ml. Testosterone was inversely related to degree of glycemia in the whole cohort. Throughout the whole range of plasma glucose, there was a stepwise decrease in mean testosterone levels per categorical increase in fasting plasma glucose, apparent in both diabetics and nondiabetics. The clinical and physiologic implications of the reduced testosterone levels in diabetic men merit further investigation.

Adult