Jackson Keshia, Silva Helaine M Vieira, Zhang Wenfeng, Michelini Lisete C, Stern Javier E
Dept. of Pharmacology and Toxicology, Wrights State University, Dayton, OH, USA.
J Neurophysiol. 2005 Nov;94(5):3211-20. doi: 10.1152/jn.00277.2005. Epub 2005 Jul 27.
Oxytocinergic and vasopressinergic brain stem projections have been shown to play an important role in mediating cardiovascular adjustments during exercise training (ET). The aim of the present work was to determine whether the intrinsic excitability of hypothalamic neurons giving rise to brain stem peptidergic projections is altered as a consequence of ET. Whole cell patch-clamp recordings were obtained from nucleus of the solitarii tract (NTS)-projecting paraventricular nucleus of the hypothalamus (PVN) neurons and from supraoptic nucleus (SON) and PVN magnocellular cells (MNCs), in hypothalamic slices obtained from sedentary (S) and ET rats. Our results indicate that intrinsic excitability of PVN neurons that innervate the NTS (PVN-NTS) is enhanced by ET, resulting in a more efficient input-output function (increase number of evoked actions potentials, steeper frequency/current relationships and slower decaying frequency/time relationships). Changes in input-output function were accompanied by smaller hyperpolarizing afterpotentials (HAPs) and afterhyperpolarizing potentials (AHPs), during and after trains of spikes, respectively. On the other hand, a decreased efficacy in the input-output function was observed in SON/PVN MNCs during ET. Altogether, our results indicate that ET differentially affects the intrinsic excitability of autonomic and neurosecretory SON and PVN neurons. Increased excitability in PVN-NTS neurons may contribute to enhanced release of OT and VP peptides in the dorsal brain stem, and cardiovascular fine-tuning during exercise training.
已证明,催产素能和加压素能脑干投射在运动训练(ET)期间介导心血管调节中发挥重要作用。本研究的目的是确定发出脑干肽能投射的下丘脑神经元的内在兴奋性是否因ET而改变。在从久坐不动(S)和ET大鼠获得的下丘脑切片中,从投射到孤束核(NTS)的下丘脑室旁核(PVN)神经元以及视上核(SON)和PVN大细胞(MNC)获得全细胞膜片钳记录。我们的结果表明,支配NTS的PVN神经元(PVN-NTS)的内在兴奋性因ET而增强,导致更有效的输入-输出功能(诱发性动作电位数量增加、频率/电流关系更陡峭以及频率/时间关系衰减更慢)。输入-输出功能的变化分别伴随着在一串动作电位期间和之后较小的超极化后电位(HAP)和超极化后电位(AHP)。另一方面,在ET期间SON/PVN MNC中观察到输入-输出功能的效能降低。总之,我们的结果表明ET对自主神经和神经分泌性SON和PVN神经元的内在兴奋性有不同影响。PVN-NTS神经元兴奋性的增加可能有助于增强背侧脑干中OT和VP肽的释放以及运动训练期间的心血管微调。