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U Lang

Publications and source records attributed to U Lang.

At least 109 records · Page 6Linked to original sources

Diurnal rhythm of melatonin action on sexual maturation of male rats.

Immature male Wistar rats with a 12:12 h light-dark cycle received daily s.c. melatonin injections of 100 micrograms from 20 to 40 days of age. Melatonin administration during the late photophase (9 h after the onset of light) or during the late scotophase (9 h after the onset of darkness) caused reduced weights of testes and seminal vesicles, lowered plasma levels of testosterone, LH and FSH, and decreased number of pituitary GnRH receptors, a series of observations which reflects delayed sexual maturation at 40 days. In contrast, no effect was observed when melatonin was injected during the early photophase of scotophase (5 h after the onset of light or darkness, respectively). In order to better investigate the night hours, melatonin action was studied in rats that were born and raised with a shifted 12:12 h light-dark cycle. When the light phase was shifted by 5 and 17 h 1 week before the animals were born, sensitivity to melatonin action was unchanged. The responsiveness of the neuroendocrine-reproductive axis to exogenous melatonin was then studied throughout the day-night cycle. The inhibitory influence of melatonin increased gradually during the late photophase and reached a peak just before the onset of darkness. No effect was observed during the first 7 h of the dark phase; however, melatonin injected 9 h after the onset of darkness again had an inhibitory influence equivalent to about 50% of that observed in the late photophase , whereas administration 2 h later remained without effect. These results demonstrate that the time of administration of melatonin within the day-night cycle is critical for melatonin action.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Daily afternoon administration of melatonin does not irreversibly inhibit sexual maturation in the male rat.

Previous studies from our laboratory demonstrated that daily afternoon melatonin injections from 20-40 days of age inhibited sexual development of young male rats, whereas in adult animals, similar injections had no effect. The present study was designed to determine more precisely the critical age period during which melatonin exerts its inhibiting effect and to see whether spontaneous sexual maturation resumes after discontinuation of melatonin administration at 45 days of age or even during continuous administration of melatonin until 115 days of age. Sexual maturation was evaluated using weights of seminal vesicles and testes; plasma levels of testosterone, FSH, and LH; pituitary contents and concentrations of FSH and LH; and, finally, pituitary content of GnRH receptors. Administration of melatonin to young male rats from 20-30 days of life had the same inhibitory effect on sexual maturation at 40 days as melatonin injections from 20-40 days. In contrast, administration of melatonin from 30-40 days only slightly decreased plasma testosterone concentration, weight of seminal vesicles, and pituitary GnRH receptor content. Melatonin administration from 38-40 days had no effect. Daily melatonin administration from 20-45 days of age was followed by resumption of sexual maturation, as observed at 70 days. The recovery was complete by 80 days of age when all of the parameters studied reflected complete sexual maturation. Finally, in rats treated continuously with melatonin from days 20 until 115, sexual maturation occurred but was delayed by about 20-30 days. Beginning of sexual development was observed at 60 days of life, and full development was attained only at 100 days. These data confirm that melatonin delays sexual maturation in the young male rat when administered daily in the afternoon. They demonstrate that this inhibitory action of melatonin is most critical between 20 and 30 days of life and is reversible regardless of whether melatonin administration is discontinued after 45 days of life. The suppression of the pubertal peaks of pituitary GnRH receptor number and pituitary and plasma FSH concentrations in treated rats suggests that melatonin interferes with the pubertal increase in GnRH secretion. In conclusion, these reversible effects of melatonin suggest that this pineal indolamine represents an important factor for the timing of sexual maturation.

Aging↗

Solubilization of pituitary GnRH binding sites by means of a zwitterionic detergent.

Solubilization in an active form of the pituitary plasma membrane protein carrying binding sites for gonadotropin-releasing hormone (GnRH) was possible by using as detergent CHAPS (3[(3-cholamidopropyl)dimethylammonio]-1-propane sulphonate), which is a zwitterionic derivative of cholic acid. In contrast, the use of the non-ionic detergent Triton X-100 resulted in the loss of GnRH binding sites. CHAPS at a concentration of 5-10 mM allowed the solubilization of up to 80% of available sites, and remaining non-solubilized sites retained unaltered binding properties. Characterization of solubilized binding sites of GnRH was achieved by using as radioactive ligand and standard a stable GnRH analog. [D-Trp6,(NEt)Pro9,desGly10]-GnRH. Maximum binding of GnRH to solubilized binding sites was possible in the presence of a very low amount of CHAPS in the incubation medium. Scatchard analysis of classical saturation experiments indicated the presence of a single class of high affinity, low capacity binding sites. The mean value for the affinity constant KA was 0.36 +/- 0.07 X 10(10) M -1 (n = 5) for solubilized GnRH binding sites, when analysed in the presence of 2 mM CHAPS; when solubilized GnRH binding sites were analysed in the absence of CHAPS, significantly higher KA values were observed, ranging from 1.2 to 5.9 X 10(10) M -1. Parallel analysis of the plasma membranes prior to solubilization indicated a mean KA value of 0.53 +/- 0.13 X 10(10) M -1 (n = 5). The binding specificity of the pituitary GnRH binding sites as seen by evaluating cross-reactions with a panel of agonists and antagonists of GnRH was not altered by solubilization. Gel filtration on Sephadex G-25 of solubilized binding sites preincubated with radioiodinated GnRH analog demonstrated the presence of a large molecular weight complex. In conclusion, CHAPS appears to be quite suitable for the solubilization of the binding site moiety of the pituitary GnRH receptor with good retention of the binding characteristics, thus offering a new possibility for the purification and characterization of the GnRH receptor protein.

Animals↗

Influence of exogenous melatonin on melatonin secretion and the neuroendocrine reproductive axis of intact male rats during sexual maturation.

The influence of daily sc administration of melatonin (5-100 micrograms/day) on sexual development of prepubertal and pubertal male rats was studied in vivo. Adult animals were also studied. When melatonin was injected daily into young animals starting at day 20 of age, dose-dependent reductions in plasma testosterone, testis and seminal vesicles weights, plasma FSH and LH levels, and pituitary GnRH receptor number were observed at day 40 or 45 of age when animals were killed. In contrast, prepubertal animals (5-20 days old) showed no significant responses to similar treatment with melatonin, whereas in adult animals (70-90 days old), melatonin elicited only a small decrease in plasma testosterone concentration. Melatonin analogs such as N-acetyl-serotonin and 5-hydroxytryptophol administered daily from 20-45 days of age did not produce any effect. Chronic melatonin administration from 20-50 days of life did not alter the occurrence of the nocturnal rise of circulating plasma melatonin, but did enhance its amplitude. Our results demonstrate that exogenous melatonin can inhibit or delay sexual maturation in the male rat if administered between 20 and 40 days of age and suggest that this inhibitory action is exerted at the hypothalamic and/or pituitary level.

Animals↗

Pituitary receptor sites for gonadotropin-releasing hormone: effect of castration and substitutive therapy with sex steroids in the male rat.

To examine the role of pituitary gonadotropin-releasing hormone (GnRH) receptors (pit GnRH-R) in the regulation of gonadotropin secretion, male rats were orchidectomized and then selectively received substitutive therapy with sex steroids. Pituitary content of GnRH-R was determined by saturation analysis, using radioiodinated [D-Trp6,(N-Et)Pro5,des-Gly10]GnRH as tracer. Castration produced a rapid and sustained increase of the number of GnRH-R, which doubled after 2 days, and after 10 days the pituitary content of GnRH-R was 258 +/- 23 fmol/pituitary compared to 103 +/- 12 fmol/pituitary for sham-operated control animals. No change of the affinity constant (Ka) was observed (Ka = 1.13 +/- 0.08 X 10(10) M-1; n = 14). Plasma LH increased 5- to 10-fold and FSH-2- to 3-fold after castration, and hypothalamic GnRH content was depleted by 30-60%. Immediate substitution of castrated rats with testosterone propionate (250 micrograms daily) prevented the increases of both plasma gonadotropins and of GnRH-R. Treatment of acutely castrated rats for 7 days with testosterone propionate (50-200 micrograms), 5 alpha-dihydrotestosterone propionate (25-400 micrograms), or estradiol benzoate (2 micrograms) prevented the rise in pit GnRH-R in a dose-related manner and normalized the other parameters studied except that plasma FSH remained slightly elevated. In contrast, when substitutive therapy was started 8 days after castration or later, the 7-day treatment with sex steroids reduced plasma gonadotropins, but pit GnRH-R remained elevated, and hypothalamic GnRH content remained depleted. These results indicate that the marked increase of gonadotropin secretion after castration is mediated at least in part, by an increase in the number of pit GnRH-R. Sex steroids were able to reverse all castration-induced endocrine changes in acutely castrated rats, but in long term castrated animals their action at higher centers to normalize hypothalamic GnRH content, and indirectly, to reduce pit GnRH-R content, was either delayed or ineffective. Thus, the rapid feedback action of sex steroids in long term castrated rats may be predominantly exerted at the pituitary level.

Animals↗

[Neuroendocrinology of puberty. Role of melatonin in man].

A general scheme of the presently known neuroendocrine events occurring with the onset of puberty has been described. Indirect experiments, both in the animal and the human, suggest that the arcuate nucleus located in the medio-basal hypothalamus secretes GnRH by pulses (with increasing amplitude, and probably frequency). GnRH stimulates the secretion of gonadotropins (LH and FSH) with maturation of the ovary and the testis, ripening of the follicle or spermatogenesis and secretion of oestradiol or of testosterone. The theory of the decrease of the sensitivity of the hypothalamus to the sex steroids which was thought to explain the pubertal increase of gonadotropins may not be valid. The increase of the pulsatile secretion of GnRH may be sufficient to explain the pubertal development. However, the response of the gonadotropins is modified by the feed-back mechanism from sex steroids. One of the factor that may influence the pubertal development is the pineal gland. Its main secretory product, melatonin, inhibits the sexual maturation of the rat and of the hamster. Present studies on night and day plasma concentrations and urinary excretions of melatonin do not attribute a role to this indolamine during human pubertal development.

Adolescent↗

Radioimmunological determination of urinary melatonin in humans: correlation with plasma levels and typical 24-hour rhythmicity.

To study melatonin secretion by a gentle noninvasive method, a simple and quick RIA procedure to analyze melatonin in small urine volumes has been developed. Urinary extracts were prepurified by alkaline washes, and melatonin content was determined by RIA. The specificity of urinary melatonin determinations was confirmed by both thin layer chromatography and by gas chromatography-mass spectrometry. In the present study, we compared the amount of melatonin excreted in urine with plasma levels in 140 specimens from 13 adult volunteers. Comparisons showed a very good correlation between plasma levels at midnight and nocturnal excretion of urine, indicating the biological relevance of melatonin determination in urine. Our studies show further that urinary melatonin excretion displays the characteristic circadian rhythm usually observed in plasma. On the average, melatonin excretion is greatest between 2300--0300 h. The total 24-h excretion of melatonin varies considerably among different individuals.

Adult↗

[Effects of premedication, narcosis and surgery on the coagulation and fibrinolysis systems and the platelets. The influence of dextran and hydroxyethyl starch (hes) during and after operation (author's transl)].

Patients who had undergone orthopaedic surgery were investigated. The changes attributable to premedication and narcosis were characterized by a primary fibrinolysis which was accompanied by a slight hypercoagulability. This increased fibrinolytic activity was more pronounced immediately after the beginning of the operation. The post operative changes are characterized by increased ADP-induced aggregation, increased release of platelet factors 3 and 4 and hypercoagulability with reduced fibrinolysis. The reduction in platelets during the operation could be prevented due to the influence of dextran and hydroxyethyl starch (HES). It came further to a slight increase in the activity of factor VII, to an increased fibrinogen polymerization and also to an increased release of platelet factor 4.

Adenosine Diphosphate↗