2008NeuroendocrinologyRequires access

Estrogens Modulate the Circadian Rhythm of Hypothalamic Beta-Endorphin Contents in Female Rats

Andrea R. Genazzani, Gian Paolo Trentini, Felice Petraglia, C. F. De Gaetani, Mario Criscuolo, Guido Ficarra, Biagina M. De Ramundo, Marzio Cleva

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Abstract

The aim of the present study was to evaluate the changes in the diurnal rhythm of the hypothalamic beta-endorphin (beta-EP) contents in female rats as a function of circulating estrogens. With this purpose we evaluated the diurnal hypothalamic beta-EP changes (1) during the estrous cycle, and (2) in ovariectomized rats with and without acute and chronic estrogen replacement. Ovariectomized rats were treated either acutely with 10 micrograms of estradiol benzoate (EB) or chronically with 2 micrograms/day of EB for 15 days. beta-EP concentrations were measured in acid extracts of medial basal hypothalamus by a specific radioimmunoassay. During the estrous cycle, hypothalamic beta-EP concentrations showed a significant nocturnal increase, with no difference between the 4 days of the cycle. On the day of estrus, beta-EP concentrations between 12.00 and 18.00 h resulted significantly lower than in the other days of the cycle. After ovariectomy, the night-related changes in hypothalamic beta-EP disappeared. The acute administration of EB induced a significant increase in hypothalamic beta-EP after 21 h (18.00 h). On the other hand, the chronic replacement restored the nocturnal peak of hypothalamic beta-EP (18.00, 21.00, 24.00 h). The present data emphasize the role of central beta-EP in regulating the reproductive functions. Moreover, the effect of estrogen in modulating the circadian changes in hypothalamic beta-EP supports the important role of estrogens in brain function.

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What this paper is about

The aim of the present study was to evaluate the changes in the diurnal rhythm of the hypothalamic beta-endorphin (beta-EP) contents in female rats as a function of circulating estrogens. With this purpose we evaluated the diurnal hypothalamic beta-EP changes (1) during the estrous cycle, and (2) in ovariectomized rats with and without acute and chronic estrogen replacement. Ovariectomized rats were treated either acutely with 10 micrograms of estradiol benzoate (EB) or chronically with 2 micrograms/day of EB for 15 days. beta-EP concentrations were measured in acid extracts of medial basal hypothalamus by a specific radioimmunoassay. During the estrous cycle, hypothalamic beta-EP concentrations showed a significant nocturnal increase, with no difference between the 4 days of the cycle. On the day of estrus, beta-EP concentrations between 12.00 and 18.00 h resulted significantly lower than in the other days of the cycle. After ovariectomy, the night-related changes in hypothalamic beta-EP disappeared. The acute administration of EB induced a significant increase in hypothalamic beta-EP after 21 h (18.00 h). On the other hand, the chronic replacement restored the nocturnal peak of hypothalamic beta-EP (18.00, 21.00, 24.00 h). The present data emphasize the role of central beta-EP in regulating the reproductive functions. Moreover, the effect of estrogen in modulating the circadian changes in hypothalamic beta-EP supports the important role of estrogens in brain function.

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Available abstract

The aim of the present study was to evaluate the changes in the diurnal rhythm of the hypothalamic beta-endorphin (beta-EP) contents in female rats as a function of circulating estrogens. With this purpose we evaluated the diurnal hypothalamic beta-EP changes (1) during the estrous cycle, and (2) in ovariectomized rats with and without acute and chronic estrogen replacement. Ovariectomized rats were treated either acutely with 10 micrograms of estradiol benzoate (EB) or chronically with 2 micrograms/day of EB for 15 days. beta-EP concentrations were measured in acid extracts of medial basal hypothalamus by a specific radioimmunoassay. During the estrous cycle, hypothalamic beta-EP concentrations showed a significant nocturnal increase, with no difference between the 4 days of the cycle. On the day of estrus, beta-EP concentrations between 12.00 and 18.00 h resulted significantly lower than in the other days of the cycle. After ovariectomy, the night-related changes in hypothalamic beta-EP disappeared. The acute administration of EB induced a significant increase in hypothalamic beta-EP after 21 h (18.00 h). On the other hand, the chronic replacement restored the nocturnal peak of hypothalamic beta-EP (18.00, 21.00, 24.00 h). The present data emphasize the role of central beta-EP in regulating the reproductive functions. Moreover, the effect of estrogen in modulating the circadian changes in hypothalamic beta-EP supports the important role of estrogens in brain function.

Key concepts: Internal medicine, Endocrinology, Estrous cycle, Circadian rhythm, Hypothalamus, Estrogen, Estradiol benzoate, Ovariectomized rat

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