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鸣禽听觉皮层中的神经雌激素信号通过一个“接口”核团传播到感觉运动网络。

Neuroestrogen signaling in the songbird auditory cortex propagates into a sensorimotor network via an 'interface' nucleus.

作者信息

Pawlisch B A, Remage-Healey L

机构信息

Neuroscience and Behavior Program, Center for Neuroendocrine Studies, University of Massachusetts Amherst, Amherst, MA 01003, United States.

Neuroscience and Behavior Program, Center for Neuroendocrine Studies, University of Massachusetts Amherst, Amherst, MA 01003, United States.

出版信息

Neuroscience. 2015 Jan 22;284:522-535. doi: 10.1016/j.neuroscience.2014.10.023. Epub 2014 Oct 19.

Abstract

Neuromodulators rapidly alter activity of neural circuits and can therefore shape higher order functions, such as sensorimotor integration. Increasing evidence suggests that brain-derived estrogens, such as 17-β-estradiol, can act rapidly to modulate sensory processing. However, less is known about how rapid estrogen signaling can impact downstream circuits. Past studies have demonstrated that estradiol levels increase within the songbird auditory cortex (the caudomedial nidopallium, NCM) during social interactions. Local estradiol signaling enhances the auditory-evoked firing rate of neurons in NCM to a variety of stimuli, while also enhancing the selectivity of auditory-evoked responses of neurons in a downstream sensorimotor brain region, HVC (proper name). Since these two brain regions are not directly connected, we employed dual extracellular recordings in HVC and the upstream nucleus interfacialis of the nidopallium (NIf) during manipulations of estradiol within NCM to better understand the pathway by which estradiol signaling propagates to downstream circuits. NIf has direct input into HVC, passing auditory information into the vocal motor output pathway, and is a possible source of the neural selectivity within HVC. Here, during acute estradiol administration in NCM, NIf neurons showed increases in baseline firing rates and auditory-evoked firing rates to all stimuli. Furthermore, when estradiol synthesis was blocked in NCM, we observed simultaneous decreases in the selectivity of NIf and HVC neurons. These effects were not due to direct estradiol actions because NIf has little to no capability for local estrogen synthesis or estrogen receptors, and these effects were specific to NIf because other neurons immediately surrounding NIf did not show these changes. Our results demonstrate that transsynaptic, rapid fluctuations in neuroestrogens are transmitted into NIf and subsequently HVC, both regions important for sensorimotor integration. Overall, these findings support the hypothesis that acute neurosteroid actions can propagate within and between neural circuits to modulate their functional connectivity.

摘要

神经调质能迅速改变神经回路的活动,因此可以塑造诸如感觉运动整合等高级功能。越来越多的证据表明,脑源性雌激素,如17-β-雌二醇,能够迅速发挥作用来调节感觉处理过程。然而,关于快速的雌激素信号传导如何影响下游回路,我们了解得还较少。过去的研究表明,在社交互动过程中,鸣禽听觉皮层(即尾内侧巢皮质,NCM)内的雌二醇水平会升高。局部雌二醇信号传导增强了NCM中神经元对各种刺激的听觉诱发放电率,同时也增强了下游感觉运动脑区HVC(专有名称)中神经元听觉诱发反应的选择性。由于这两个脑区没有直接连接,我们在对NCM内的雌二醇进行操作时,在HVC和巢皮质面神经核上游(NIf)进行了双细胞外记录,以更好地了解雌二醇信号传导传播到下游回路的途径。NIf直接向HVC输入,将听觉信息传递到发声运动输出通路,并且是HVC内神经选择性的一个可能来源。在这里,在NCM中急性给予雌二醇期间,NIf神经元对所有刺激的基线放电率和听觉诱发放电率均增加。此外,当NCM中的雌二醇合成被阻断时,我们观察到NIf和HVC神经元的选择性同时降低。这些效应并非由于雌二醇的直接作用,因为NIf几乎没有局部雌激素合成或雌激素受体的能力,并且这些效应是NIf特有的,因为紧邻NIf的其他神经元没有表现出这些变化。我们的结果表明,神经雌激素的跨突触快速波动会传递到NIf,随后传递到HVC,这两个区域对感觉运动整合都很重要。总体而言,这些发现支持了这样一种假说,即急性神经甾体作用可以在神经回路内和神经回路之间传播,以调节它们的功能连接。

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