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首页> 外文期刊>The Journal of Physiology >Geniculohypothalamic GABAergic projections gate suprachiasmatic nucleus responses to retinal input
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Geniculohypothalamic GABAergic projections gate suprachiasmatic nucleus responses to retinal input

机译:总体肝炎母羊突出术浇口术治疗核心对视网膜输入的反应

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摘要

Sensory input to the master mammalian circadian clock, the suprachiasmatic nucleus (SCN), is vital in allowing animals to optimize physiology and behaviour alongside daily changes in the environment. Retinal inputs encoding changes in external illumination provide the principle source of such information. The SCN also receives input from other retinorecipient brain regions, primarily via the geniculohypothalamic tract (GHT), although the contribution of these indirect projections to circadian photoreception is currently poorly understood. To address this deficit, in the present study, we established an in vitro mouse brain slice preparation that retains connectivity across the extended circadian system. Using multi-electrode recordings, we first confirm that this preparation retains intact optic projections to the SCN, thalamus and pretectum and a functional GHT. We next show that optogenetic activation of GHT neurons selectively suppresses SCN responses to retinal input, and also that this effect exhibits a pronounced day/night variation and involves a GABAergic mechanism. This inhibitory action was not associated with overt circadian rhythmicity in GHT output, indicating modulation at the SCN level. Finally, we use in vivo electrophysiological recordings alongside pharmacological inactivation or optogenetic excitation to show that GHT signalling actively modulates specific features of the SCN light response, indicating that GHT cells are primarily activated by crossed retinal projections. Taken together, our data establish a new model for studying network communication in the extended circadian system and provide novel insight into the roles of GHT-signalling, revealing a mechanism by which thalamic activity can help gate retinal input to the SCN according to time of day.
机译:对主哺乳动物昼夜昼夜昼夜昼夜昼夜昼夜心核(SCN)的感官输入至关重要,允许动物在环境中与日常变化一起优化生理学和行为。视网膜输入编码外部照明的变化提供了此类信息的原理来源。 SCN还从其他视网膜沉淀脑区接收输入,主要通过核素毛虫(GHT),尽管这些间接突起对昼夜摄影的贡献目前是较差的。为了解决这一缺陷,在本研究中,我们建立了一种体外小鼠脑切片制剂,其保留了延长昼夜节束系统的连接。使用多电极录制,我们首先证实该制剂保留了对SCN,丘脑和PROFECTUM的完整光学突起和功能的GHT。接下来表明,GHT神经元的致肌动态活化选择性地抑制了对视网膜输入的SCN反应,并且该效果也表现出明显的一天/夜种变异,并且涉及加布的机制。该抑制作用与GHT输出中的公开昼夜节律相关,表明SCN水平的调制。最后,我们在药理学灭活或致敏激发中使用体内电生理记录以表明GHT信号传导主动调节SCN光响应的特定特征,表明GHT细胞主要由交叉的视网膜突起激活。我们的数据集成了一个新模型,用于在扩展昼夜节目系统中学习网络通信,并为GHT信号传导的角色提供新的洞察力,揭示了塔拉姆活性可以根据一天中的时间帮助栅极输入到SCN的机制。 。

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