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首页> 外文期刊>The Journal of Comparative Neurology >Temporal and spatial regulation of chondroitin sulfate, radial glial cells, growing commissural axons, and other hippocampal efferents in developing hamsters.
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Temporal and spatial regulation of chondroitin sulfate, radial glial cells, growing commissural axons, and other hippocampal efferents in developing hamsters.

机译:发育中的仓鼠中的硫酸软骨素,放射状神经胶质细胞,生长中的连合轴突和其他海马发出的时间和空间调控。

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摘要

We investigated the time and space relationship between growth of hippocampal efferents, particularly those forming the hippocampal commissure, and expression of extracellular matrix components related to radial glial cells. Developing hamster brains from embryonic day (E) 13 to postnatal day (P) 7 had 1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate (DiI) crystals implanted into the hippocampus or were processed for fluorescent immunohistochemistry against chondroitin sulfate (CS) glycosaminoglycans and glial fibrillary acidic protein (GFAP). The first, pioneer fibers from the hippocampus were seen crossing the midline at E15 and arriving at the contralateral hippocampus 24-48 hours later (P1), followed closely by a thick front of growing fibers. Before E15, CS expression was preceded by septal fusion and was concomitant with formation of the commissural tract. On E15, CS expression formed a U-shaped border below the fimbria. From E15 to P3, CS became expressed between the hippocampal commissure and the third ventricle and at the caudal borders of the fornix columns. As the hippocampal commissure expanded, CS expression became gradually lighter to virtually disappear by P7. On E15 and P1, GFAP-positive radial glial cells were present caudal (but not rostral) to the commissure at the midline, partially overlapping CS expression. Similar cells were present dorsal to the fimbria, extending their processes perpendicularly over the growing axons. The data reveal that CS and radial glial cells form a tunnel surrounding the developing fimbria and a border at the midline caudal to the hippocampal commissure. It is suggested that these cellular and molecular borders play a role in guidance of hippocampal efferents.
机译:我们调查了海马传出的生长,特别是那些形成海马连合的,与放射状神经胶质细胞相关的细胞外基质成分表达之间的时间和空间关系。从胚胎第(E)天第13天到出生后(P)第7天的仓鼠大脑发育中,将1,1'-二十八烷基-3,3,3',3'-四甲基吲哚碳菁高氯酸盐(DiI)晶体植入海马体或进行荧光处理硫酸软骨素(CS)糖胺聚糖和神经胶质纤维酸性蛋白(GFAP)的免疫组织化学。观察到来自海马的第一批先导纤维穿过E15的中线,并在24-48小时后到达对侧海马(P1),紧接着是生长纤维的厚实前端。在E15之前,CS表达之前是间隔融合,并伴有连合道的形成。在E15上,CS表情在菌毛下方形成U形边界。从E15到P3,CS在海马连合和第三脑室之间以及在穹columns柱的尾端边界处表达。随着海马连合的扩大,CS的表达逐渐变轻,到P7时几乎消失。在E15和P1上,在中线的连合处存在GFAP阳性的放射状胶质细胞尾部(而不是延髓部),CS表达部分重叠。相似的细胞存在于菌毛的背侧,垂直于生长的轴突延伸其过程。数据显示,CS和放射状神经胶质细胞形成了一条围绕发育中的菌毛的隧道,并在海马连合的尾中线处形成了边界。提示这些细胞和分子边界在海马传出的引导中起作用。

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