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NeuN/Fox-3 免疫反应鉴定的神经元在仓鼠和小鼠视交叉上核中有新的分布。

Neurons identified by NeuN/Fox-3 immunoreactivity have a novel distribution in the hamster and mouse suprachiasmatic nucleus.

机构信息

Dept. Psychiatry, Stony Brook University Medical Center, Stony Brook, NY 11794, USA.

出版信息

Brain Res. 2011 Nov 3;1421:44-51. doi: 10.1016/j.brainres.2011.09.015. Epub 2011 Sep 17.

Abstract

The suprachiasmatic nucleus (SCN) has several structural characteristics and cell phenotypes shared across species. Here, we describe a novel feature of SCN anatomy that is seen in both hamster and mouse. Frozen sections through the SCN were obtained from fixed brains and stained for the presence of immunoreactivity to neuronal nuclear protein (NeuN-IR) using a mouse monoclonal antibody which is known to exclusively identify neurons. NeuN-IR did not identify all SCN neurons as medial NeuN-IR neurons were generally not present. In the hamster, NeuN-IR cells are present rostrally, scattered in the dorsal half of the nucleus. More caudally, the NeuN-IR cells are largely, but not exclusively, scattered inside the lateral and dorsolateral border. At mid- to mid-caudal SCN levels, a dense group of NeuN-IR cells extends from the dorsolateral border ventromedially to encompass the central subnucleus of the SCN (SCNce). The pattern is similar in the mouse SCN. NeuN-IR does not co-localize with either cholecystokinin- or vasoactive intestinal polypeptide, but does with vasopressin-IR in the caudal SCN. In the hamster SCNce, numerous cells contain both calbindin- and NeuN-IR. The distribution of NeuN-IR cells in the SCN is unique, especially with regard to its generally lateral location through the length of the nucleus. The distribution of NeuN-IR cells is not consistent with most schemas representing SCN organization or with terminology referring to its widely accepted subdivisions. NeuN has recently been identified as Fox-3 protein. Its function in the SCN is not known, nor is it known why a large proportion of SCN cells do not contain NeuN-IR.

摘要

视交叉上核 (SCN) 具有几个结构特征和细胞表型,这些特征在不同物种中是共有的。在这里,我们描述了 SCN 解剖结构的一个新特征,该特征在仓鼠和小鼠中都存在。从固定的大脑中获得 SCN 的冷冻切片,并使用已知专门识别神经元的小鼠单克隆抗体对神经元核蛋白 (NeuN-IR) 的存在进行染色。NeuN-IR 并没有识别出所有 SCN 神经元,因为内侧 NeuN-IR 神经元通常不存在。在仓鼠中,NeuN-IR 细胞存在于前部,分散在核的背侧半部。更靠尾侧,NeuN-IR 细胞主要但不排他性地散布在外侧和背外侧边界内。在 SCN 的中至尾侧水平,一群密集的 NeuN-IR 细胞从背外侧边界向腹内侧延伸,包围 SCN 的中央亚核(SCNce)。在小鼠 SCN 中,模式相似。NeuN-IR 与胆囊收缩素或血管活性肠肽不共定位,但与尾侧 SCN 中的血管加压素-IR 共定位。在仓鼠 SCNce 中,许多细胞既含有 calbindin-也含有 NeuN-IR。SCN 中 NeuN-IR 细胞的分布是独特的,尤其是在核的整个长度上,其通常位于外侧的位置。NeuN-IR 细胞的分布与代表 SCN 组织的大多数方案不一致,也与指称其广泛接受的细分的术语不一致。NeuN 最近被鉴定为 Fox-3 蛋白。其在 SCN 中的功能尚不清楚,也不知道为什么很大一部分 SCN 细胞不含有 NeuN-IR。

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