Marraudino Marilena, Miceli Dèsirèe, Farinetti Alice, Ponti Giovanna, Panzica GianCarlo, Gotti Stefano
Department of Neuroscience, Laboratory of Neuroendocrinology, University of Torino, Torino, Italy.
Neuroscience Institute Cavalieri-Ottolenghi (NICO), Orbassano, Italy.
J Anat. 2017 Jun;230(6):775-786. doi: 10.1111/joa.12603. Epub 2017 Mar 14.
The hypothalamic paraventricular nucleus (PVN) is the major autonomic output area of the hypothalamus and a critical regulatory center for energy homeostasis. The organism's energetic balance is very important for both the regular onset of puberty and regulation of fertility. Several studies have suggested a relationship among neural circuits controlling food intake, energy homeostasis and the kisspeptin peptide. The kisspeptin system is clustered in two main groups of cell bodies [the anterior ventral periventricular region (AVPV) and the arcuate nucleus (ARC)] projecting mainly to gonadotropin-releasing hormone (GnRH) neurons and to a few other locations, including the PVN. In the present study, we investigated the distribution of the kisspeptin fibers within the PVN of adult CD1 mice. We observed a significant sexual dimorphism for AVPV and ARC, as well as for the PVN innervation. Kisspeptin fibers showed a different density within the PVN, being denser in the medial part than in the lateral one; moreover, in female, the density changed, according to different phases of the estrous cycle (the highest density being in estrus phase). The presence of a profound effect of estrous cycle on the kisspeptin immunoreactivity in AVPV (with a higher signal in estrus) and ARC, and the strong co-localization between kisspeptin and NkB only in ARC and not in PVN suggested that the majority of the kisspeptin fibers found in the PVN might arise directly from AVPV.
下丘脑室旁核(PVN)是下丘脑主要的自主神经输出区域,也是能量稳态的关键调节中心。机体的能量平衡对于青春期的正常启动和生育调节都非常重要。多项研究表明,控制食物摄入、能量稳态的神经回路与 kisspeptin 肽之间存在关联。Kisspeptin 系统集中在两组主要的细胞体群中[腹侧室周前区(AVPV)和弓状核(ARC)],主要投射到促性腺激素释放激素(GnRH)神经元以及其他一些部位,包括 PVN。在本研究中,我们调查了成年 CD1 小鼠 PVN 内 kisspeptin 纤维的分布情况。我们观察到 AVPV、ARC 以及 PVN 神经支配存在显著的性别差异。Kisspeptin 纤维在 PVN 内的密度不同,内侧部分比外侧部分更密集;此外,在雌性小鼠中,密度会根据发情周期的不同阶段而变化(发情期密度最高)。发情周期对 AVPV(发情期信号更高)和 ARC 中 kisspeptin 免疫反应性有显著影响,且 kisspeptin 与 NkB 仅在 ARC 而非 PVN 中强烈共定位,这表明在 PVN 中发现的大多数 kisspeptin 纤维可能直接来自 AVPV。