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小鼠新皮质板下层中γ-氨基丁酸能中间神经元的产后发育

Postnatal development of GABAergic interneurons in the neocortical subplate of mice.

作者信息

Qu G-J, Ma J, Yu Y-C, Fu Y

机构信息

Institute of Neurobiology, Institutes of Brain Science, State Key Laboratory of Medical Neurobiology and Collaborative Innovation Center for Brain Science, Fudan University, 131 Dong An Road, Shanghai 200032, China.

School of Life Sciences, Tsinghua University, 30 Shuang Qing Road, Beijing 100084, China.

出版信息

Neuroscience. 2016 May 13;322:78-93. doi: 10.1016/j.neuroscience.2016.02.023. Epub 2016 Feb 15.

Abstract

The subplate (SP) plays important roles in developmental and functional events in the neocortex, such as thalamocortical and corticofugal projection, cortical oscillation generation and corticocortical connectivity. Although accumulated evidence indicates that SP interneurons are crucial for SP function, the molecular composition of SP interneurons as well as their developmental profile and distribution remain largely unclear. In this study, we systematically investigated dynamic development of SP thickness and chemical marker expression in SP interneurons in distinct cortical regions during the first postnatal month. We found that, although the relative area of the SP in the cerebral cortex significantly declined with postnatal development, the absolute thickness did not change markedly. We also found that somatostatin (SOM), the ionotropic serotonin receptor 3A (5HT3AR), and parvalbumin (PV) reliably identify three distinct non-overlapping subpopulations of SP interneurons. The SOM group, which represents ~30% of total SP interneurons, expresses neuronal nitric oxide synthase (nNOS) and calbindin (CB) and colocalizes entirely with neuropeptide Y (NPY). The 5HT3AR group, which accounts for ~60% of the total interneuronal population, expresses calretinin (CR) and GABA-A receptor subunit delta (GABAARδ). The PV group accounts for ~10% of total SP interneurons and coexpressed GABAARδ. Moreover, distinct interneuron subtypes show characteristic temporal and spatial distribution in the SP. nNOS(+) interneurons in the SP increase from the anterior motor cortex to posterior visual cortex, while CR(+) and CB(+) interneurons the opposite. Interestedly, the majority of GABAARδ(+) neurons in SP are non-GABAergic neurons in contrast to other cortical layers. These findings clarify and extend our understanding of SP interneurons in the developing cerebral cortex and will underpin further study of SP function.

摘要

皮质下板(SP)在新皮质的发育和功能活动中发挥着重要作用,如丘脑皮质和皮质离心投射、皮质振荡产生以及皮质皮质连接。尽管越来越多的证据表明SP中间神经元对SP功能至关重要,但SP中间神经元的分子组成及其发育特征和分布仍不清楚。在本研究中,我们系统地研究了出生后第一个月不同皮质区域SP厚度的动态发育以及SP中间神经元中化学标志物的表达。我们发现,尽管随着出生后发育,大脑皮质中SP的相对面积显著下降,但绝对厚度没有明显变化。我们还发现,生长抑素(SOM)、离子型5-羟色胺受体3A(5HT3AR)和小白蛋白(PV)可可靠地识别SP中间神经元的三个不同且不重叠的亚群。SOM组约占SP中间神经元总数的30%,表达神经元型一氧化氮合酶(nNOS)和钙结合蛋白(CB),并与神经肽Y(NPY)完全共定位。5HT3AR组约占中间神经元总数的60%,表达钙视网膜蛋白(CR)和GABA-A受体δ亚基(GABAARδ)。PV组约占SP中间神经元总数的10%,并共表达GABAARδ。此外,不同的中间神经元亚型在SP中表现出特征性的时间和空间分布。SP中的nNOS(+)中间神经元从前运动皮质到后视觉皮质增加,而CR(+)和CB(+)中间神经元则相反。有趣的是,与其他皮质层相比,SP中大多数GABAARδ(+)神经元是非GABA能神经元。这些发现阐明并扩展了我们对发育中大脑皮质SP中间神经元的理解,并将为进一步研究SP功能奠定基础。

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