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首页> 外文期刊>The Journal of Reproduction and Development >Electrophysiological and Morphological Evidence for Synchronized GnRH Pulse Generator Activity Among Kisspeptin/Neurokinin B/Dynorphin A (KNDy) Neurons in Goats
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Electrophysiological and Morphological Evidence for Synchronized GnRH Pulse Generator Activity Among Kisspeptin/Neurokinin B/Dynorphin A (KNDy) Neurons in Goats

机译:山羊Kisspeptin /神经激肽B / Dynorphin A(KNDy)神经元之间同步GnRH脉冲发生器活动的电生理和形态学证据

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Neurons in the arcuate nucleus (ARC) that concomitantly express kisspeptin, neurokinin B (NKB) and dynorphin A are termed KNDy neurons and are likely candidates for the intrinsic gonadotropin-releasing hormone (GnRH) pulse generator. Our hypothesis is that KNDy neurons are functionally and anatomically interconnected to generate discrete neural signals that govern pulsatile GnRH secretion. Our goal was to address this hypothesis using electrophysiological and anatomical experiments in goats. Bilateral electrodes targeting KNDy neurons were implanted into ovariectomized goats, and GnRH pulse generator activity, represented by characteristic increases in multiple-unit activity (MUA volleys), was measured. Spontaneous and pheromone- or senktide (an NKB receptor agonist)-induced MUA volleys were simultaneously recorded from both sides of the ARC. An anterograde tracer, biotinylated dextran amine (BDA), was also injected unilaterally into the ARC of castrated male goats, and the distribution of fibers containing both BDA and NKB was examined using dual-labeling histochemistry. The results showed that MUA volleys, regardless of origin (spontaneous or experimentally induced), occur simultaneously between the right and left sides of the ARC. Tract tracing indicated that axons projecting from NKB neurons in the ARC were directly apposed to other NKB neuronal cells located bilaterally in the ARC. These results demonstrate that GnRH pulse generator activity occurs synchronously between both sides of the ARC in goats and that KNDy neurons are bilaterally interconnected in the ARC via NKB-containing fibers. Taken together, the results suggest that KNDy neurons form a neuronal circuit to synchronize burst activity among KNDy neurons and thereby generate discrete neural signals that govern pulsatile GnRH secretion.
机译:弓形核(ARC)中同时表达亲吻肽,神经激肽B(NKB)和强啡肽A的神经元被称为KNDy神经元,并且可能是固有促性腺激素释放激素(GnRH)脉冲发生器的候选者。我们的假设是,KNDy神经元在功能上和解剖上相互连接,以生成离散的神经信号来控制搏动性GnRH分泌。我们的目标是使用山羊的电生理和解剖学实验来解决这一假设。将靶向KNDy神经元的双侧电极植入切除卵巢的山羊中,并测量以多单位活性(MUA齐射)的特征性增加表示的GnRH脉冲发生器活性。从ARC的两侧同时记录了自发和信息素或senktide(一种NKB受体激动剂)诱导的MUA齐射。还将一种顺行示踪剂生物素化的右旋糖酐胺(BDA)单方面注射到male割的公山羊的ARC中,并使用双标记组织化学方法检测了同时含有BDA和NKB的纤维的分布。结果表明,无论起源(自发还是实验诱导),MUA齐射都在ARC的左右两侧同时发生。轨迹追踪表明,从ARC的NKB神经元突出的轴突直接与ARC两侧的其他NKB神经元细胞并置。这些结果表明,GnRH脉冲发生器的活动在山羊的ARC两侧之间同步发生,并且KNDy神经元通过包含NKB的纤维在ARC中双向互连。两者合计,结果表明,KNDy神经元形成一个神经元回路,以同步KNDy神经元之间的爆发活动,从而产生控制脉动性GnRH分泌的离散神经信号。

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