促性腺激素脉冲性和激增性分泌的电生理相关性。

M Nishihara, Y Takeuchi, T Tanaka, Y Mori
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引用次数: 39

摘要

下丘脑促性腺激素释放激素(GnRH)脉冲发生器控制GnRH间歇性放电进入垂体门静脉循环,因此,调节促性腺激素分泌的脉动模式。在猴子、大鼠和山羊的下丘脑中,通过记录多单位活动,证实了搏动性促性腺激素分泌的电生理相关性。在各种生理和实验条件下,在所有三种被检查的物种中,循环中多单位活性和促性腺激素脉冲的特征性增加之间的时间重合,提供了下丘脑多单位活性起源于GnRH脉冲发生器的证据。在切除卵巢的动物中,雌激素诱导的促性腺激素排卵前激增或在完整动物中自发发生时,GnRH脉冲发生器活性减慢,表明它不参与促性腺激素激增的产生。促性腺激素激增可能是由雌激素反应神经元复合物产生的,其本质上不同于GnRH脉冲发生器,其电操作尚不清楚。
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Electrophysiological correlates of pulsatile and surge gonadotrophin secretion.

The hypothalamic gonadotrophin-releasing hormone (GnRH) pulse generator governs intermittent discharges of GnRH into the pituitary portal circulation and, consequently, modulates the pulsatile pattern of gonadotrophin secretion. Electrophysiological correlates of pulsatile gonadotrophin secretion have been demonstrated in the mediobasal hypothalamus of monkeys, rats and goats by recording multiple unit activity. A temporal coincidence between characteristic increases in multiple unit activity and gonadotrophin pulses in the circulation is seen under a variety of physiological and experimental conditions in all three species examined, providing evidence that hypothalamic multiple unit activity originates in the GnRH pulse generator. During a preovulatory gonadotrophin surge induced by oestrogen in ovariectomized animals or occurring spontaneously in intact animals, GnRH pulse generator activity is decelerated, suggesting that it is not involved in generating the gonadotrophin surge. The gonadotrophin surge may be generated by an oestrogen-responsive neuronal complex intrinsically different from the GnRH pulse generator, the electrical operation of which remains unknown.

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