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首页> 外文期刊>Journal of Neuroscience Methods >A rat brain slice preserving synaptic connections between neurons of the suprachiasmatic nucleus, organum vasculosum lamina terminalis and supraoptic nucleus.
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A rat brain slice preserving synaptic connections between neurons of the suprachiasmatic nucleus, organum vasculosum lamina terminalis and supraoptic nucleus.

机译:保留大鼠大脑切片,以维持视交叉上核神经元,器官血管壁层终末神经元和视上核之间的突触连接。

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摘要

The organum vasculosum lamina terminalis (OVLT), the suprachiasmatic nucleus (SCN) and the supraoptic nucleus (SON) are three hypothalamic structures involved in the osmotic and circadian control of neurohypophysial secretion. Recent experiments have suggested that interactions between osmotic and circadian factors may be important for homeostasis. The existence of an in vitro slice preparation retaining these nuclei and their interconnections would therefore be useful for the analysis of synaptic interactions. In the rat, the OVLT, SCN and SON are found at increasingly ventral and lateral positions along the rostro-caudal axis, such that conventional 400 microm slices taken in the pure coronal or horizontal planes do not retain all three nuclei. Here we show that horizontal slices cut at angles of 38-42 degrees relative to the dorsal surface of the cortex retain large fractions of the three nuclei. Intracellular recordings revealed membrane properties consistent with those previously published for OVLT, SCN and SON neurons. Moreover, antidromic and synaptic responses evoked by electrical stimulation revealed that extensive axonal projections are retained between these nuclei. Finally, chemical and osmotic stimulation of the OVLT exerted powerful influences on the rate of spontaneous synaptic events in SON neurons. We therefore conclude that angled horizontal hypothalamic slices represent a useful preparation for the analysis of physiological interactions between the OVLT, SCN and SON.
机译:器官的终末血管层(OVLT)​​,视交叉上核(SCN)和视上核(SON)是三个下丘脑结构,参与渗透和昼夜节律控制神经下垂体的分泌。最近的实验表明,渗透和昼夜节律因素之间的相互作用可能对体内平衡很重要。因此,保留这些核及其相互连接的体外切片制剂的存在对于分析突触相互作用非常有用。在大鼠中,发现沿卵tro尾轴的腹侧和侧向位置逐渐增加,OVLT,SCN和SON处于正常位置,因此在纯冠状或水平面中获取的常规400微米切片无法保留所有三个核。在这里,我们显示以相对于皮质背面的38-42度角切割的水平切片保留了三个核的大部分。细胞内记录揭示了与先前针对OVLT,SCN和SON神经元发表的膜特性一致的膜特性。此外,电刺激引起的抗躯体和突触反应表明,在这些核之间保留了广泛的轴突投射。最后,OVLT的化学和渗透刺激对SON神经元中自发性突触事件的发生率产生了强大的影响。因此,我们得出结论,成角度的水平下丘脑片代表了分析OVLT,SCN和SON之间的生理相互作用的有用准备。

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