Effects of intranasal administration of hormonal steroids on serum testosterone and spermatogenesis in rhesus monkey (Macaca mulatta).
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Human beta-endorphin has been administered by nasal spray technique at a dose of 0.02 mg per kg in female bonnet monkeys. A significant increase of serum prolactin levels was observed within 30 min and maintained up to 60 min. In the same dose, intravenous injections of the hormone caused a marginal increase of prolactin levels only after 60 min. It was concluded that administration of beta-endorphin by nasal spray is more effective than the intravenous injection.
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A double antibody RIA was developed for the measurement of the long-acting GnRH agonist D-Ser(TBU)6EA10GnRH (buserelin). The antibody, raised in rabbits against a buserelin-hemocyanin conjugate, reacted with the intact molecule and also molecular fragments containing the C6-9 tetrapeptide sequence and permitted the measurement of buserelin activity in serum and urine. Natural GnRH, LH, and FSH did not cross-react in this assay system. The assay was applied to samples obtained from children receiving buserelin for the management of central precocious puberty either by once daily injection of 30 micrograms/kg or by nasal spray (in; 200 micrograms every 8 h). Urine and serum samples, chromatographed on Sephadex G-25, contained immunoreactive material corresponding closely in molecular size to [125I]buserelin. In unextracted serum samples taken at intervals after sc therapy in 11 girls, the peak immunoreactive buserelin levels of 52.2 +/- 14.8 ng/ml (mean +/- SEM) occurred at 30 min. The half-time of elimination was 74.9 +/- 36.9 min. Approximately 30% of the dose was detected in urine collected for 3 h after injection. Similar data were obtained in 3 normal adults given 10 micrograms/kg buserelin, iv. By contrast, after the administration of 200 micrograms buserelin by metered nasal spray, the mean peak serum concentration in 10 girls was 100-fold less (0.65 +/- 0.14 ng/ml), although the halftime of elimination was almost identical. Only 0.73% of the nasal dose was excreted by 3 h. Calculated relative bioavailability data indicated maximal nasal absorption of 6%. However, absorption after nasal administration varied greatly, and in 2 children, serum and urinary concentrations of buserelin after supervised administration were negligible. We conclude that in buserelin therapy, in the dose used in this study, does not represent optimal treatment for the initial management of patients with precocious puberty. The success of in therapy in sustaining initial effects of buserelin given by sc administration presumably reflects changes in receptor sensitivity induced by sc treatment.
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In previous studies on the nasal administration of human fibroblast interferon (HuIFN-beta), only rabbits have been used. Therefore, this route was investigated in mice, rats, rabbits and dogs. HuIFN-beta could be delivered across the nasal mucosa in mice, rats, rabbits and dogs, when it was mixed with sodium glycocholate as an absorption promoter. However, the pattern of the plasma HuIFN-beta concentration-time curve was different from that in rabbits. Rabbits gave the highest value of the maximum plasma HuIFN-beta concentration (Cmax), but plasma HuIFN-beta declined rapidly thereafter, upon nasal administration of the powder dosage form (8.45 x 10(2) IU/g). In rats and dogs, Cmax was lower than in rabbits, but plasma HuIFN-beta declined slowly after nasal administration of the powder or liquid dosage form (4-6 x 10(2) IU/g). These differences might be attributed to differences of absorption rate constant.