Murphy K M, Trepel C, Pegado V D
Department of Psychology and Biomedical Sciences, McMaster University, ON, Canada.
Mol Vis. 1996 Aug 9;2:9.
The development of columnar systems in the visual cortex, in particular ocular dominance columns, is dependent on experiential activity in conjunction with NMDA-mediated plasticity mechanisms. Recent experiments, however, have shown that certain aspects of the columnar organization of the visual cortex, such as the spacing of columns, are not changed by manipulations that affect the pattern of retinal activity. This raises the possibility that features intrinsic to the visual cortex may play a crucial role in the development of cortical columns and that a non-uniform distribution of NMDA receptors in the developing visual cortex could form the link between activity and intrinsic cortical modularity.
To examine this possibility we used immunohistochemical techniques to label the NMDAR1 receptor subunit protein in kitten visual cortex. The arrangement of the NMDAR1 subunit was visualized (using a monoclonal antibody) in flattened and coronal sections through visual cortex. The tangential and laminar distributions of NMDAR1 immunoreactivity (NMDAR1ir) were studied at the peak of the critical period for plasticity (4-5 weeks of age) in the developing kitten visual cortex.
At the ages examined there was a non-uniform distribution of NMDAR1 immunoreactivity in the visual cortex. These patches of darker NMDAR1 label were found in layers 2/3 and extended up into layer 1. Thus, during development neurons expressing the NMDAR1 receptor subunit were distributed in a patchy fashion in the upper layers of the kitten visual cortex.
This suggests that NMDA-mediated activity-dependent plasticity may not occur uniformly across the tangential extent of the visual cortex, and raises the possibility that the arrangement of NMDAR1 patches may guide the emergence of nascent columns in the developing visual cortex.
视觉皮层柱状系统的发育,尤其是眼优势柱的发育,依赖于与NMDA介导的可塑性机制相结合的经验性活动。然而,最近的实验表明,视觉皮层柱状组织的某些方面,如柱间距,不会因影响视网膜活动模式的操作而改变。这就提出了一种可能性,即视觉皮层固有的特征可能在皮层柱的发育中起关键作用,并且发育中的视觉皮层中NMDA受体的不均匀分布可能构成活动与内在皮层模块化之间的联系。
为了检验这种可能性,我们使用免疫组织化学技术标记小猫视觉皮层中的NMDAR1受体亚基蛋白。通过视觉皮层的扁平切片和冠状切片观察NMDAR1亚基的排列(使用单克隆抗体)。在发育中小猫视觉皮层可塑性关键期的高峰期(4-5周龄),研究了NMDAR1免疫反应性(NMDAR1ir)的切线分布和层状分布。
在所检查的年龄阶段,视觉皮层中NMDAR1免疫反应性分布不均匀。这些较深的NMDAR1标记斑块出现在第2/3层,并向上延伸到第1层。因此,在发育过程中,表达NMDAR1受体亚基的神经元以斑块状分布在小猫视觉皮层的上层。
这表明NMDA介导的活动依赖性可塑性可能不会在视觉皮层的切线范围内均匀发生,并增加了NMDAR1斑块的排列可能引导发育中的视觉皮层中新生柱出现的可能性。