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产前暴露于X射线后大鼠小脑浦肯野细胞的紊乱:Reelin水平降低可能是一个原因。

Derangement of Purkinje cells in the rat cerebellum following prenatal exposure to X-irradiation: decreased Reelin level is a possible cause.

作者信息

Darmanto W, Inouye M, Takagishi Y, Ogawa M, Mikoshiba K, Murata Y

机构信息

Research Institute of Environmental Medicine, Nagoya University, Japan.

出版信息

J Neuropathol Exp Neurol. 2000 Mar;59(3):251-62. doi: 10.1093/jnen/59.3.251.

Abstract

It has been reported that prenatal X-irradiation of rats during the late gestation period causes heterotopic Purkinje cells in the internal granular layer (IGL) of the abnormally foliated cerebellum. The present study was designed to demonstrate the process of X-ray-induced derangement of Purkinje cells and their surrounding cells. In addition, the expression of some morphoregulatory molecules was examined to determine which molecules are involved in the abnormal pattern of Purkinje cells. Pregnant rats (n = 22) were exposed to 2.5 Gy X-radiation on gestation day 21 and the cerebellum of progeny was examined histologically and by immunohistochemistry to identify Purkinje and Bergmann cells. At 12 h after exposure, extensive cell death was observed in the external granular layer (EGL). By postnatal day (P) 9, while Purkinje cells with well-developed dendrites aligned underneath the EGL in the control cerebellum, Purkinje cells with shorter and abnormally oriented dendrites failed to align and remained in the heterotopic location in the IGL. Bergmann cells and their fibers were also disoriented but later recovered in their proper position. Abnormal folia developed in the irradiated rats. Using immunohistochemistry, we next examined the levels of the neural cell adhesion molecule (NCAM), fibronectin, tenascin, and Reelin. Among them, only the level of Reelin was affected significantly. Reelin decreased strikingly in the premigratory zone of the EGL and IGL in the irradiated cerebellum on P1, and the decrease continued until P9. Decreased Reelin expression was demonstrated quantitatively by Northern blot analysis and the correlation between the mRNA and protein levels was well presented. The expression of reelin mRNA decreased significantly by irradiation from P0, being almost one third of the level in controls on P4, and tended to recover up to P9. It is thus indicated that X-irradiation causes a marked decrease in the level of Reelin at the critical stage for the alignment of Purkinje cells. Since Reelin has been shown to play an important role in the migration of neural cells, it is suggested that the decrease in Reelin by X-irradiation is an important factor for the derangement of Purkinje cells.

摘要

据报道,在妊娠后期对大鼠进行产前X射线照射会导致异常叶状小脑的内颗粒层(IGL)中出现异位浦肯野细胞。本研究旨在证明X射线诱导的浦肯野细胞及其周围细胞紊乱的过程。此外,检测了一些形态调节分子的表达,以确定哪些分子与浦肯野细胞的异常模式有关。将22只怀孕大鼠在妊娠第21天暴露于2.5 Gy的X射线下,并对后代的小脑进行组织学和免疫组织化学检查,以识别浦肯野细胞和伯格曼细胞。照射后12小时,在外部颗粒层(EGL)中观察到广泛的细胞死亡。到出生后第9天(P9),在对照小脑中,具有发育良好树突的浦肯野细胞排列在EGL下方,而具有较短且方向异常树突的浦肯野细胞未能排列整齐,仍留在IGL的异位位置。伯格曼细胞及其纤维也方向紊乱,但后来恢复到正常位置。照射后的大鼠出现了异常叶。接下来,我们使用免疫组织化学检测了神经细胞黏附分子(NCAM)、纤连蛋白、腱生蛋白和Reelin的水平。其中,只有Reelin的水平受到显著影响。在P1时,照射后小脑中EGL和IGL的迁移前区Reelin显著下降,并且这种下降一直持续到P9。通过Northern印迹分析定量证明了Reelin表达的下降,并且mRNA和蛋白质水平之间的相关性得到了很好的呈现。从P0开始,照射使reelin mRNA的表达显著下降,在P4时几乎是对照水平的三分之一,并且在P9时趋于恢复。因此表明,X射线照射在浦肯野细胞排列的关键阶段导致Reelin水平显著下降。由于Reelin已被证明在神经细胞迁移中起重要作用,因此提示X射线照射导致的Reelin下降是浦肯野细胞紊乱的一个重要因素。

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