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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Changes in GABA-immunoreactivity during development of the rostral subdivision of the nucleus of the solitary tract.
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Changes in GABA-immunoreactivity during development of the rostral subdivision of the nucleus of the solitary tract.

机译:孤束核的鸟嘴状细分发展过程中GABA免疫反应性的变化。

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GABA plays an important role in the processing of gustatory information in the rostral nucleus of the solitary tract. The following study used post-embedment immunohistochemistry in the rat brainstem to localize GABA at both the light and electron microscopic levels to characterize the developmental distribution of GABA and synaptogenesis of GABA-immunoreactive terminals in the rostral nucleus of the solitary tract. During the first postnatal week, GABA is present in the rostral nucleus of the solitary tract, but less of it is synaptic than any time later in development. Of the few synaptic terminals present at postnatal day 1, less than 20% are GABA-immunoreactive. This proportion more than doubles to reach adult levels by postnatal day 10. By weaning (postnatal day 20), GABA-immunoreactive cells are found in nearly the same density as in the adult. Development continues after weaning and is characterized by a disproportionate loss of non-GABA-containing cells. Finally, one previously identified subtype of GABA-immunoreactive terminal matures very late during the postweaning phase of development.The study provides the first analysis of the development of GABA-related circuitry in the rostral nucleus of the solitary tract using anatomical methods. These data provide the background with which to view the emerging physiology of developing taste neurons.
机译:GABA在孤立道的鼻状核中味觉信息的处理中起重要作用。以下研究在大鼠脑干中使用包埋后免疫组化在光镜和电子镜水平下定位GABA,以表征GABA的发育分布和GABA免疫反应性终末点在孤束纹状核中的突触形成。在产后的第一个星期内,GABA存在于孤立道的鼻状核中,但其突触少于发育后期的任何时间。在出生后第1天出现的少数突触末梢中,只有不到20%具有GABA免疫反应性。到出生后第10天,该比例增加一倍以上,达到成人水平。通过断奶(出生后第20天),发现GABA免疫反应性细胞的密度几乎与成人相同。断奶后发育继续,其特征是非含GABA的细胞不成比例地丢失。最后,一个先前鉴定出的GABA免疫反应性终末亚型在断奶后的发育阶段成熟很晚。该研究首次使用解剖学方法分析了孤立道延髓核中GABA相关电路的发育。这些数据提供了背景,以查看正在发展的味觉神经元的新兴生理。

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