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首页> 外文期刊>Chemical Senses >Taste reactivity and fos expression in GAD1-EGFP transgenic mice
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Taste reactivity and fos expression in GAD1-EGFP transgenic mice

机译:GAD1-EGFP转基因小鼠的味觉反应性和fos表达

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摘要

The central distribution of QHCl-elicited Fos-like immunoreactivity (FLI) suggests the location of a brain stem circuit that controls the oral rejection response. Although many species display an oral rejection response to bitter stimuli, the distribution of FLI associated with this response has been investigated only in rats. Fos data are minimal for the mouse, a species of increasing importance, due to its use in molecular and transgenic studies and taste-evoked oromotor responses are also only incompletely described in these rodents. We investigated these questions in FVB/NJ mice and a related transgenic strain (FVB-Tg(GadGFP)4507) that expresses green fluorescent protein in a subset of GAD1-containing neurons. QHCl, sucrose, or water delivered through intraoral cannulae yielded behavioral profiles that clearly differentiated QHCl from sucrose. Similar to rat, the number of neurons expressing FLI in the medial third of the solitary nucleus was elevated following QHCl compared with the other stimuli. In mice expressing green fluorescent protein, there was a pronounced distribution of GABAergic neurons in the ventral half of the solitary nucleus. Approximately 15% of solitary neurons expressing Fos were GABAergic, but this proportion did not differ according to stimulus.
机译:QHCl引起的Fos样免疫反应性(FLI)的中央分布表明,大脑干电路的位置控制着口腔排斥反应。尽管许多物种显示出对苦味刺激的口服排斥反应,但仅在大鼠中研究了与该反应相关的FLI的分布。由于小鼠在分子和转基因研究中的使用,Fos数据对于小鼠(这是一个越来越重要的物种)的数据极少,并且在这些啮齿动物中也未完全描述味觉的口运动反应。我们调查了FVB / NJ小鼠和相关的转基因菌株(FVB-Tg(GadGFP)4507)中的这些问题,该菌株在包含GAD1的神经元的子集中表达绿色荧光蛋白。通过口腔内插管递送的QHCl,蔗糖或水产生的行为特征清楚地将QHCl与蔗糖区分开。与大鼠相似,QHCl后与其他刺激相比,在孤立核中内侧表达FLI的神经元数量增加。在表达绿色荧光蛋白的小鼠中,孤独核腹侧有明显的GABA能神经元分布。表达Fos的孤独神经元中约有15%是GABA能的,但这一比例并未因刺激而有所不同。

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