首页> 外文期刊>The Journal of Physiology >Lesion-induced plasticity in rat vestibular nucleus neurones dependent on glucocorticoid receptor activation.
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Lesion-induced plasticity in rat vestibular nucleus neurones dependent on glucocorticoid receptor activation.

机译:损伤诱导的大鼠前庭核神经元的可塑性取决于糖皮质激素受体的激活。

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1. We have recently shown that neurones in the rostral region of the medial vestibular nucleus (MVN) develop a sustained increase in their intrinsic excitability within 4 h of a lesion of the vestibular receptors of the ipsilateral inner ear. This increased excitability may be important in the rapid recovery of resting activity in these neurones during 'vestibular compensation', the behavioural recovery that follows unilateral vestibular deafferentation. In this study we investigated the role of the acute stress that normally accompanies the symptoms of unilateral labyrinthectomy (UL), and in particular the role of glucocorticoid receptors (GRs), in the development of the increase in excitability in the rostral MVN cells after UL in the rat. 2. The compensatory increase in intrinsic excitability (CIE) of MVN neurones failed to occur in animals that were labyrinthectomized under urethane anaesthesia and kept at a stable level of anaesthesia for either 4 or 6 h after UL, so that they did not experience the stress normally associated with the vestibular deafferentation syndrome. In these animals, 'mimicking' the stress response by administration of the synthetic GR agonist dexamethasone at the time of UL, restored and somewhat potentiated CIE in the MVN cells. Administration of dexamethasone in itself had no effect on the intrinsic excitability of MVN cells in sham-operated animals. 3. In animals that awoke after labyrinthectomy, and which therefore experienced the full range of oculomotor and postural symptoms of UL, there was a high level of Fos-like immunoreactivity in the paraventricular nucleus of the hypothalamus over 1.5-3 h post-UL, indicating a strong activation of the stress axis. 4. The GR antagonist RU38486 administered at the time of UL abolished CIE in the rostral MVN cells, and significantly delayed behavioural recovery as indicated by the persistence of circular walking. The mineralocorticoid receptor (MR) antagonist spironolactone administered at the time of UL had no effect. 5. Vestibular compensation thus involves a novel form of 'metaplasticity' in the adult brain, in which the increase in intrinsic excitability of rostral MVN cells and the initial behavioural recovery are dependent both on the vestibular deafferentation and on the activation of glucocorticoid receptors, during the acute behavioural stress response that follows UL. These findings help elucidate the beneficial effects of neuroactive steroids on vestibular plasticity in various species including man, while the lack of such an effect in the guinea-pig may be due to the significant differences in the physiology of the stress axis in that species.
机译:1.我们最近发现,在同侧内耳前庭受体病变的4小时内,前庭内侧内侧神经节(MVN)的神经元内在兴奋性持续增长。在“前庭补偿”(单侧前庭脱除咖啡因后的行为恢复)期间,这些兴奋性的增加对这些神经元的静息活动的快速恢复可能很重要。在这项研究中,我们调查了通常伴随单侧迷路切除术(UL)症状的急性应激的作用,尤其是糖皮质激素受体(GRs)在刺激UL后眼部MVN细胞兴奋性增加中的作用。在老鼠身上。 2.在氨基甲酸乙酯麻醉下迷路切除并在UL术后4或6 h保持稳定麻醉水平的动物中,MVN神经元的内在兴奋性(CIE)补偿性增加没有发生,因此它们没有受到压力通常与前庭脱胎综合征有关。在这些动物中,通过在UL时施用合成GR激动剂地塞米松来“模拟”应激反应,从而在MVN细胞中恢复并增强了CIE。在假手术动物中,地塞米松本身的给药对MVN细胞的固有兴奋性没有影响。 3.在迷路切除术后醒来的动物,因此经历了全方位的动眼和姿势性UL症状,在UL后1.5至3小时内,下丘脑室旁核中存在高水平的Fos样免疫反应,表示应力轴的强烈激活。 4.在UL时施用的GR拮抗剂RU38486消除了延髓MVN细胞中的CIE,并且显着延迟了行为恢复,如持续的环形行走所表明的。 UL时给予的盐皮质激素受体(MR)拮抗剂螺内酯没有作用。 [5]因此,前庭补偿在成人大脑中涉及一种新形式的“可塑性”,在该过程中,前额MVN细胞内在兴奋性的增加和最初的行为恢复既取决于前庭脱除咖啡因,又取决于糖皮质激素受体的激活。遵循UL的急性行为应激反应。这些发现有助于阐明神经活性类固醇对包括人类在内的各种物种的前庭可塑性的有益作用,而在豚鼠中缺乏这种作用可能是由于该物种在应激轴生理上的显着差异。

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