Mori Y, Tanaka T
Laboratory of Veterinary Ethology, University of Tokyo, Japan.
J Reprod Fertil Suppl. 1995;49:231-43.
The hypothalamic GnRH pulse generator that regulates intermittent GnRH discharge into the pituitary portal circulation and thereby modulates pulsatile secretion of LH has been recognized as a key determinant of the reproductive function in mammals. Thus, various internal, as well as external, factors first modify the electrical activity of the GnRH pulse generator, which then alters the pulsatile pattern of gonadotrophin secretion and eventually influences reproductive function. Here, we describe a procedure that has permitted long-term recording of electrophysiological manifestation of the GnRH pulse generator activity and its application to our research which uses ovariectomized and cyclic female goats as experimental models. We have successfully recorded characteristic increases in neuronal activity associated with pulsatile LH secretion from conscious goats by means of a multiple unit activity (MUA) recording technique, which is an adaptation of that developed originally for use in rhesus monkeys. The unitary relationship between periodical increases in MUA (MUA volleys) and LH pulses is well maintained under a variety of experimental conditions, providing evidence that these MUA volleys are the consequence of GnRH pulse generator activity.
调节促性腺激素释放激素(GnRH)间歇性释放至垂体门脉循环从而调节促黄体生成素(LH)脉冲式分泌的下丘脑GnRH脉冲发生器,已被公认为哺乳动物生殖功能的关键决定因素。因此,各种内部和外部因素首先会改变GnRH脉冲发生器的电活动,进而改变促性腺激素的脉冲式分泌模式,并最终影响生殖功能。在此,我们描述了一种方法,该方法能够长期记录GnRH脉冲发生器活动的电生理表现,并将其应用于我们以去卵巢和处于发情周期的雌性山羊为实验模型的研究中。我们通过多单位活动(MUA)记录技术,成功记录了清醒山羊中与LH脉冲式分泌相关的神经元活动特征性增加,该技术是对最初用于恒河猴的技术的改进。在各种实验条件下,MUA的周期性增加(MUA群峰)与LH脉冲之间的单一关系保持良好,这证明这些MUA群峰是GnRH脉冲发生器活动的结果。