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大鼠小脑皮质的抗原图谱:单克隆抗浦肯野细胞抗体mabQ113所揭示的矢状旁带分布

Antigenic map of the rat cerebellar cortex: the distribution of parasagittal bands as revealed by monoclonal anti-Purkinje cell antibody mabQ113.

作者信息

Hawkes R, Leclerc N

出版信息

J Comp Neurol. 1987 Feb 1;256(1):29-41. doi: 10.1002/cne.902560104.

Abstract

Both anatomical and physiological mapping methods have revealed that the mammalian cerebellar cortex consists of a family of parasagittal bands of cells, each band with its own pattern of afferent and efferent axons. Monoclonal antibody mabQ113 recognizes an unknown polypeptide antigen that is confined to a subset of rat cerebellar Purkinje cells. Immunoreactive cells are arranged into parasagittal bands extending throughout the vermis and hemispheres. Expression of the Q113 epitope by individual Purkinje cells may not be all-or-nothing, since the bands tend to be more strongly stained in the vermis than the hemispheres. The band display is symmetrical about the midline and reproducible from individual to individual. Whole-mount immunocytochemistry and serial reconstruction reveal a median band of mabQ113+ Purkinje cells adjacent to the midline (P1+) and six other positive bands disposed symmetrically at either side (P2+ to P7+). Bands are distinct throughout most of the cortex but tend to fuse ventrally and caudally. There are two sources of interindividual differences. Firstly, most animals express supernumerary "satellite" bands in the vermis. Satellite bands are usually only one cell wide, are not bilaterally symmetrical, and differ in position and number from individual to individual. Secondly, the precise position of an individual band can differ, perhaps according to the variable cortical lobulation, for example, the position of P4+ in lobules VIII/IX and P6+ in lobule VII. While a scheme of parasagittal bands is a good description of the vermian organization, the distribution of mabQ113+ and mabQ113- Purkinje cells in the hemispheres may be better described as a checkerboard of antigenic patches.

摘要

解剖学和生理学绘图方法均已表明,哺乳动物的小脑皮质由一系列矢状旁带细胞组成,每条带都有其自身的传入和传出轴突模式。单克隆抗体mabQ113识别一种未知的多肽抗原,该抗原局限于大鼠小脑浦肯野细胞的一个亚群。免疫反应性细胞排列成贯穿蚓部和半球的矢状旁带。单个浦肯野细胞对Q113表位的表达可能并非全或无,因为这些带在蚓部的染色往往比半球更强。带的显示关于中线对称,并且个体之间具有可重复性。整装免疫细胞化学和连续重建显示,与中线相邻的mabQ113 +浦肯野细胞的中间带(P1 +)以及在两侧对称分布的其他六个阳性带(P2 +至P7 +)。在皮质的大部分区域,带是明显分开的,但在腹侧和尾侧往往会融合。个体间差异有两个来源。首先,大多数动物在蚓部表达额外的“卫星”带。卫星带通常只有一个细胞宽,不是双侧对称的,并且个体之间在位置和数量上有所不同。其次,单个带的精确位置可能不同,也许是根据可变的皮质小叶划分,例如,小叶VIII / IX中P4 +的位置和小叶VII中P6 +的位置。虽然矢状旁带的模式很好地描述了蚓部的组织结构,但半球中mabQ113 +和mabQ113-浦肯野细胞的分布可能更好地描述为抗原斑的棋盘状。

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