首页> 外文期刊>Hormones and behavior >Effects of Morris water maze testing on the neuroendocrine stress response and intrahypothalamic release of vasopressin and oxytocin in the rat.
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Effects of Morris water maze testing on the neuroendocrine stress response and intrahypothalamic release of vasopressin and oxytocin in the rat.

机译:莫里斯水迷宫测试对大鼠神经内分泌应激反应和加压素和催产素的下丘脑内释放的影响。

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Adult male Wistar rats were trained in the Morris water maze (MWM) on 3 consecutive days to find a visible platform. Concomitantly, microdialysis samples from the hypothalamic paraventricular (PVN) and supraoptic (SON) nuclei were collected in order to monitor local release of the neuropeptides vasopressin (AVP) and oxytocin (OXT), respectively, during controllable swim stress. Additionally, a separate set of animals was equipped with chronic jugular venous catheters to collect blood samples for analyzing plasma concentrations of corticotropin (ACTH) and corticosterone during training in the MWM. As measured by microdialysis, swimming in the MWM caused a significantly increased release of AVP within the PVN and of OXT within the SON on each of the 3 test sessions. In contrast to OXT in the SON, basal AVP concentrations in the PVN tended to rise from day to day. Plasma ACTH and corticosterone were found to be similarly elevated in response to MWM exposure on each of the test sessions. Taken together, these data demonstrate that testing in the MWM is not only associated with a significant activation of the hypothalamo-pituitary-adrenal axis but also with an intrahypothalamic release of AVP and OXT. If compared with findings using repeated forced swimming as an uncontrollable stressor (Wotjak, C.T., Ganster, J., Kohl, G., Holsboer, F., Landgraf, R., Engelmann, M., 1998. Dissociated central and peripheral release of vasopressin, but not oxytocin, in response to repeated swim stress: new insights into the secretory capacities of peptidergic neurons. Neuroscience 85, 1209-1222), the present results suggest that (1) similarities in the release profiles of AVP in the PVN and plasma hormone levels are fairly independent from the controllability of the stressor and seem, thus, to primarily relate to the physical demands of the task, whereas (2) the different intra-SON OXT release profiles might be linked to the controllability of the stressor.
机译:成年雄性Wistar大鼠连续3天在莫里斯水迷宫(MWM)中训练,以找到可见的平台。同时,收集来自下丘脑室旁(PVN)和视上核(SON)的微透析样品,以监测可控游泳压力下神经肽加压素(AVP)和催产素(OXT)的局部释放。此外,另一组动物配有慢性颈静脉导管,以收集血液样本,以在MWM训练过程中分析血浆促肾上腺皮质激素(ACTH)和皮质酮的浓度。通过微透析测量,在3个测试阶段中的每一个阶段,在MWM中游泳都会导致PVN内AVP释放和SON内OXT释放显着增加。与SON中的OXT相反,PVN中的基础AVP浓度每天都在上升。在每个测试阶段中,发现由于血浆中的MWM暴露,血浆ACTH和皮质类固醇也有类似的升高。综上所述,这些数据表明,在MWM中进行的测试不仅与下丘脑-垂体-肾上腺轴的显着激活有关,而且与AVP和OXT的下丘脑内释放有关。如果与使用反复强迫游泳作为无法控制的压力源的发现进行比较(Wotjak,CT,Ganster,J.,Kohl,G.,Holsboer,F.,Landgraf,R.,Engelmann,M.,1998。血管加压素而非催产素对反复的游泳压力作出反应:对肽能神经元分泌能力的新见解(Neuroscience 85,1209-1222),目前的结果表明(1)PVN和AVP在AVP释放曲线上的相似性血浆激素水平完全独立于应激源的可控性,因此似乎主要与任务的身体需求有关,而(2)不同的SON OXT内释放曲线可能与应激源的可控性有关。

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