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Corticosteroid actions from neuronal membrane to behavior: neurophysiological mechanisms underlying rapid behavioral effects of corticosterone

机译:皮质类固醇从神经元膜到行为的作用:皮质酮快速行为作用的神经生理机制

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Investigation of the rapid suppression of male courtship clasping behavior by corticosterone in roughskin newts (Taricha granulosa) has led to the identification of a specific neuronal membrane receptor for this stress steroid. This paper describesstudies of the neurophysiological effects of the rapid, membrane receptor mediated action of corticosterone on neurons that are involved in the control of clasping. In freely behaving newts, medullary neurons, including reticulospinal neurons, process clasp-triggering sensory signals and participate in control of clasping movements. Corticosterone injection causes these brainstem neurons to show selective depression of clasping-related sensorimotor function. These corticosterone effects appear in 3-10 min and are closely associated with the simultaneous depression of clasping. In addition to these functionally specific effects, corticosterone simultaneously causes widespread, primarily depressive effects on neuronal activity and excitability in the medulla and elsewhere in the brain. Thus, the membrane actions of corticosterone lead to diverse neural effects, including changes in membrane excitability as well as specific, network-level actions that are apparent only during behavior. These rapid corticosterone effects strongly interact with actions of the neuropeptides vasotocin and corticotropin-releasing factor, such that the form and magnitude of the steroid's effects depend on the prevailing neuroendocrine state of the brain.
机译:皮质酮在rough皮new(Taricha granulosa)中迅速抑制男性求偶拍手行为的研究导致针对该应激类固醇的特定神经元膜受体的鉴定。这篇论文描述了皮质激素对参与扣环控制的神经元的快速,膜受体介导的作用的神经生理学研究。在自由行为的new中,包括网状脊髓神经元的延髓神经元处理扣环触发的感觉信号并参与扣环运动的控制。皮质酮注射导致这些脑干神经元表现出选择性扣压相关的感觉运动功能。这些皮质酮的作用出现在3-10分钟内,并与同时压紧扣紧有关。除了这些功能特异性作用外,皮质酮还同时对延髓和大脑其他部位的神经元活动和兴奋性产生广泛的,主要是抑郁的作用。因此,皮质酮的膜作用导致多种神经效应,包括膜兴奋性的改变以及仅在行为期间才明显的特定的网络级作用。这些迅速的皮质类固醇作用与神经肽血管收缩素和促肾上腺皮质激素释放因子的作用强烈相互作用,因此类固醇作用的形式和程度取决于大脑的主要神经内分泌状态。

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