首页> 外文期刊>The Journal of Comparative Neurology >Spatiotemporal distribution of tenascin-R in the developing human cerebral cortex parallels neuronal migration.
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Spatiotemporal distribution of tenascin-R in the developing human cerebral cortex parallels neuronal migration.

机译:Tenascin-R在人类大脑皮质发育中的时空分布与神经元迁移平行。

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Tenascin-R is an extracellular matrix glycoprotein that is restricted to the central nervous system, where it acts as a multifunctional and versatile molecule. We report spatial and temporal distribution of tenascin-R in the developing human cerebral cortex for the first time. At 7.5 gestational weeks (GW), tenascin-R was expressed in a restricted area of the basal telencephalon. At 9.5 and 11 GW, it showed a unique double band expression pattern that delineated the boundaries of the future cortical plate. From 14 to 30 GW, tenascin-R labeling extended to the whole cortex from the deep layers toward the marginal zone with an inside-to-outside progression pattern reminiscent of neuronal migration. Moreover, tenascin-R labeling initially appeared in the form of thin, straight, or slightly tortuous intercellular processes directed toward the surface in parallel with the axis of neuronal migration. At the end of pregnancy and at adulthood, diffuse and homogeneous immunolabeling of the whole cortex thickness was observed. The striatum and thalamus were faintly positive for TNR as early as 14 GW, and this positivity intensified with brain maturation. At all developmental stages, the germinative zone, the corpus callosum, the anterior commissure, and the internal capsule appeared clearly negative for tenascin-R immunostaining whereas the adjacent parenchyma was immunopositive. Our results show that tenascin-R expression is tightly regulated in a spatiotemporal manner during brain development, especially cortical plate formation. Its pattern of expression suggests a role for tenascin-R in corticogenesis.
机译:Tenascin-R是一种细胞外基质糖蛋白,仅限于中枢神经系统,在该系统中它是多功能多功能分子。我们首次报道了发展中的人类大脑皮层中腱生蛋白-R的时空分布。在7.5个孕周(GW),腱生蛋白-R在基底端脑的受限区域表达。在9.5和11 GW时,它表现出独特的双带表达模式,描绘了未来皮质板的边界。从14吉瓦到30吉瓦,肌腱蛋白R标记从深层向边缘区域延伸到整个皮层,其内外进展模式使人联想到神经元迁移。而且,腱生蛋白-R标记最初以与神经元迁移轴平行的方向朝着表面的薄的,笔直的或稍微弯曲的细胞间过程的形式出现。在妊娠末期和成年期,观察到整个皮质厚度的弥漫性和均质性免疫标记。早在14 GW时,纹状体和丘脑的TNR微弱阳性,随着大脑的成熟,这种阳性反应增强。在所有发育阶段,生发区,call体,前连合和内囊对于腱生蛋白-R免疫染色明显为阴性,而相邻的实质为免疫阳性。我们的结果表明,在大脑发育过程中,尤其是皮质板的形成过程中,tenascin-R的表达受到时空调控。其表达模式表明腱生蛋白-R在皮质发生中的作用。

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