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发育中的视觉皮层中NMDAR1亚基免疫反应性的斑片状分布。

Patchy distribution of NMDAR1 subunit immunoreactivity in developing visual cortex.

作者信息

Trepel C, Duffy K R, Pegado V D, Murphy K M

机构信息

McMaster University, Hamilton, Ontario L8S 4K1, Canada.

出版信息

J Neurosci. 1998 May 1;18(9):3404-15. doi: 10.1523/JNEUROSCI.18-09-03404.1998.

Abstract

Development of ocular dominance columns is dependent on patterned retinal activity, and yet patterned activity alone cannot explain all aspects of cortical column development. Features intrinsic to the cortex have been proposed to interact with activity to guide the patterning of cortical columns (), and the NMDA receptor, because of its role in experience-dependent plasticity, is an obvious candidate. Using immunohistochemical techniques, we found a transiently patchy distribution of the NMDA receptor 1 (NMDAR1) subunit in kitten visual cortex. Regularly spaced patches of NMDAR1-immunoreactive neurons were found at the top of the cortical plate in the developing visual cortex at 2 weeks of age. At 4-5 weeks of age, the radial extent of the NMDAR1 patches spanned the supragranular layers, and by 12 weeks of age, this nonuniform pattern of NMDAR1 immunostaining was no longer apparent. Monocular visual experience prevented the expression of the NMDAR1 patches, but just 4 d of subsequent binocular visual experience was sufficient to promote expression of the patches. Furthermore, the NMDAR1 patches tended to be associated with the borders of ocular dominance columns. These results suggest that the degree of plasticity associated with NMDA-mediated mechanisms is elevated in local regions across the tangential extent of the visual cortex and that the NMDAR1 patches may participate in sculpting the overall arrangement of visual cortical columns.

摘要

眼优势柱的发育依赖于视网膜的模式化活动,然而仅靠模式化活动并不能解释皮质柱发育的所有方面。有观点认为,皮质的内在特征会与活动相互作用,以引导皮质柱的模式形成(),而由于NMDA受体在经验依赖性可塑性中发挥作用,它显然是一个候选因素。我们使用免疫组织化学技术,在小猫视觉皮质中发现了NMDA受体1(NMDAR1)亚基的短暂斑块状分布。在2周龄的发育中的视觉皮质的皮质板顶部,发现了规则间隔的NMDAR1免疫反应性神经元斑块。在4 - 5周龄时,NMDAR1斑块的径向范围跨越了颗粒上层,到12周龄时,这种NMDAR1免疫染色的不均匀模式不再明显。单眼视觉经验会阻止NMDAR1斑块的表达,但随后仅4天的双眼视觉经验就足以促进斑块的表达。此外,NMDAR1斑块往往与眼优势柱的边界相关。这些结果表明,与NMDA介导机制相关的可塑性程度在视觉皮质切向范围内的局部区域有所提高,并且NMDAR1斑块可能参与塑造视觉皮质柱的整体排列。

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