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发育中小鼠小脑的颗粒细胞中缝核

Granule cell raphes in the developing mouse cerebellum.

作者信息

Luckner R, Obst-Pernberg K, Hirano S, Suzuki S T, Redies C

机构信息

Institute of Anatomy, University of Essen School of Medicine, Germany.

出版信息

Cell Tissue Res. 2001 Feb;303(2):159-72. doi: 10.1007/s004410000292.

Abstract

The cerebellar cortex of many vertebrates shows a striking parasagittal compartmentation that is thought to play a role in the establishment and maintenance of functional cerebellar connectivity. Here, we demonstrate the existence of multiple parasagittal raphes of cells in the molecular layer of the developing cerebellar cortex of postnatal mouse. The histological appearance and immunostaining profile of the raphe cells suggest that they are migrating granule cells. We therefore conclude that the granule cell raphes previously described in birds also exist in a mammalian species. The raphes in mouse are visible on nuclear stains from around birth to postnatal day 6 and are frequently found at the boundaries of Purkinje cell segments that differentially express cadherins ("early-onset" parasagittal banding pattern). A similar relation between the raphe pattern and various markers for the early-onset banding pattern has been found in the chicken cerebellum. One of the cadherins mapped in the present study (OL-protocadherin) continues to be expressed in specific Purkinje cell segments until at least postnatal day 14. At this stage of development, the borders of the OL-protocadherin-positive Purkinje cell segments coincide with the borders of Purkinje cell segments that express zebrin II, a marker for the "late-onset" parasagittal banding pattern which persists in the adult cerebellum. These findings demonstrate that the early-onset banding pattern, as reflected in the complementary arrangement of raphes/Purkinje cell segments, and the late-onset pattern of zebrin II expression share at least some positional cues during development.

摘要

许多脊椎动物的小脑皮质呈现出显著的矢状旁分区,这种分区被认为在功能性小脑连接的建立和维持中发挥作用。在这里,我们证明了在出生后小鼠发育中小脑皮质分子层中存在多个细胞的矢状旁缝。缝细胞的组织学外观和免疫染色特征表明它们是正在迁移的颗粒细胞。因此,我们得出结论,先前在鸟类中描述的颗粒细胞缝在哺乳动物中也存在。小鼠中的缝在出生前后到出生后第6天的核染色中可见,并且经常出现在差异表达钙黏蛋白的浦肯野细胞段的边界处(“早发型”矢状旁带模式)。在鸡小脑中也发现了缝模式与早发型带模式的各种标记之间的类似关系。在本研究中定位的一种钙黏蛋白(OL-原钙黏蛋白)至少在出生后第14天之前继续在特定的浦肯野细胞段中表达。在这个发育阶段,OL-原钙黏蛋白阳性浦肯野细胞段的边界与表达zebrin II的浦肯野细胞段的边界重合,zebrin II是一种在成年小脑中持续存在的“晚发型”矢状旁带模式的标记。这些发现表明,如缝/浦肯野细胞段的互补排列所反映的早发型带模式和zebrin II表达的晚发型模式在发育过程中至少共享一些位置线索。

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