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板下层区域、板下神经元和间质白质神经元的发育史:与精神分裂症的相关性

Developmental history of the subplate zone, subplate neurons and interstitial white matter neurons: relevance for schizophrenia.

作者信息

Kostović Ivica, Judaš Miloš, Sedmak Goran

机构信息

Section of Developmental Neuroscience, Croatian Institute for Brain Research, Department of Neuroscience, University of Zagreb School of Medicine, Šalata 12, 10000 Zagreb, Croatia.

出版信息

Int J Dev Neurosci. 2011 May;29(3):193-205. doi: 10.1016/j.ijdevneu.2010.09.005. Epub 2010 Sep 29.

Abstract

The subplate zone is a transient cytoarchitectonic compartment of the fetal telencephalic wall and contains a population of subplate neurons which are the main neurons of the fetal neocortex and play a key role in normal development of cerebral cortical structure and connectivity. While the subplate zone disappears during the perinatal and early postnatal period, numerous subplate neurons survive and remain embedded in the superficial (gyral) white matter of adolescent and adult brain as so-called interstitial neurons. In both fetal and adult brain, subplate/interstitial neurons belong to two major classes of cortical cells: (a) projection (glutamatergic) neurons and (b) local circuit (GABAergic) interneurons. As interstitial neurons remain strategically positioned at the cortical/white matter interface through which various cortical afferent systems enter the deep cortical layers, they probably serve as auxiliary interneurons involved in differential "gating" of cortical input systems. It is widely accepted that prenatal lesions which alter the number of surviving subplate neurons (i.e., the number of interstitial neurons) and/or the nature of their involvement in cortical circuitry represent an important causal factor in pathogenesis of at least some types of schizophrenia--e.g., in the subgroup of patients with cognitive impairment and deficits of frontal lobe functions. The abnormal functioning of cortical circuitry in schizophrenia becomes manifest during the adolescence, when there is an increased demand for proper functioning of the prefrontal cortex. In this review, we describe developmental history of subplate zone, subplate neurons and surviving interstitial neurons, as well as presumed consequences of the increased number of GABAergic interstitial neurons in the prefrontal cortex. We propose that the increased number of GABAergic interstitial neurons leads to the increased inhibition of prefrontal cortical neurons. This inhibitory action of GABAergic interstitial neurons is facilitated by their strategic position at the cortical/white matter interface where limbic and modulatory afferent pathways enter the prefrontal cortex. Thus, enlarged population of inhibitory interstitial neurons (even if they represent a minor fraction of total neuron number, as in the cerebral cortex itself) may alter the differential "gating" of limbic and modulatory inputs (as well as other cortical and subcortical inputs) and cause a functional disconnectivity between the prefrontal and limbic cortex in the adolescent brain. In conclusion, fetal subplate neurons and surviving postnatal interstitial neurons are important modulators of cortical functions in both normal and schizophrenic cerebral cortex.

摘要

板下层是胎儿端脑壁的一个短暂细胞构筑区,包含一群板下神经元,它们是胎儿新皮质的主要神经元,在大脑皮质结构和连接的正常发育中起关键作用。虽然板下层在围产期和出生后早期消失,但许多板下神经元存活下来,并作为所谓的间质神经元嵌入青少年和成年大脑的浅层(脑回)白质中。在胎儿和成年大脑中,板下/间质神经元都属于两类主要的皮质细胞:(a)投射(谷氨酸能)神经元和(b)局部回路(γ-氨基丁酸能)中间神经元。由于间质神经元在战略上位于各种皮质传入系统进入深层皮质层的皮质/白质界面,它们可能作为辅助中间神经元参与皮质输入系统的差异“门控”。人们普遍认为,改变存活板下神经元数量(即间质神经元数量)和/或它们参与皮质回路性质的产前损伤是至少某些类型精神分裂症发病机制中的一个重要因果因素——例如,在认知障碍和额叶功能缺陷的患者亚组中。精神分裂症患者皮质回路的异常功能在青春期表现出来,此时前额叶皮质正常功能的需求增加。在这篇综述中,我们描述了板下层、板下神经元和存活的间质神经元的发育史,以及前额叶皮质中γ-氨基丁酸能间质神经元数量增加的假定后果。我们提出,γ-氨基丁酸能间质神经元数量的增加导致前额叶皮质神经元抑制增加。γ-氨基丁酸能间质神经元的这种抑制作用因其在皮质/白质界面的战略位置而得到促进,在该界面,边缘和调节传入通路进入前额叶皮质。因此,抑制性间质神经元数量的增加(即使它们只占总神经元数量的一小部分,如在大脑皮质本身)可能会改变边缘和调节输入(以及其他皮质和皮质下输入)的差异“门控”,并导致青少年大脑中前额叶皮质和边缘皮质之间的功能脱节。总之,胎儿板下神经元和出生后存活的间质神经元是正常和精神分裂症大脑皮质功能的重要调节因子。

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