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人类扣带回皮质中冯·埃科诺莫神经元的树突和棘突异质性

Dendritic and Spine Heterogeneity of von Economo Neurons in the Human Cingulate Cortex.

作者信息

Correa-Júnior Nivaldo D, Renner Josué, Fuentealba-Villarroel Francisco, Hilbig Arlete, Rasia-Filho Alberto A

机构信息

Graduate Program in Biosciences, Universidade Federal de Ciências da Saúde de Porto Alegre (UFCSPA), Porto Alegre, Brazil.

Laboratory of Morphology and Physiology, Department of Basic Sciences/Physiology, Universidade Federal de Ciências da Saúde de Porto Alegre, Porto Alegre, Brazil.

出版信息

Front Synaptic Neurosci. 2020 Jul 8;12:25. doi: 10.3389/fnsyn.2020.00025. eCollection 2020.

Abstract

The human cingulate cortex (CC), included in the paralimbic cortex, participates in emotion, visceral responses, attention, cognition, and social behaviors. The CC has spindle-shaped/fusiform cell body neurons in its layer V, the von Economo neurons (VENs). VENs have further developed in primates, and the characterization of human VENs can benefit from the detailed descriptions of the shape of dendrites and spines. Here, we advance this issue and studied VENs in the anterior and midcingulate cortex from four neurologically normal adult subjects. We used the thionin technique and the adapted "single-section" Golgi method for light microscopy. Three-dimensional (3D) reconstructions were carried out for the visualization of Golgi-impregnated VENs' cell body, ascending and descending dendrites, and collateral branches. We also looked for the presence, density, and shape of spines from proximal to distal dendrites. These neurons have a similar aspect for the soma, but features of spiny dendrites evidenced a morphological heterogeneity of CC VENs. Only for the description of this of shapes, we labeled the most common feature as VEN 1, which has main dendritic shafts but few branches and sparse spines. VEN 2 shows an intermediate aspect, whereas VEN 3 displays the most profuse dendritic ramification and more spines with varied shapes from proximal to distal branches. Morphometric data exemplify the dendritic features of these cells. The heterogeneity of the dendritic architecture and spines suggests additional functional implications for the synaptic and information processing in VENs in integrated networks of normal and, possibly, neurological/psychiatric conditions involving the human CC.

摘要

人类扣带回皮质(CC)属于边缘旁皮质,参与情绪、内脏反应、注意力、认知和社会行为。CC的第V层有梭形/纺锤形细胞体神经元,即冯·埃科诺莫神经元(VENs)。VENs在灵长类动物中进一步进化,对人类VENs的特征描述可受益于对其树突和棘突形状的详细描述。在此,我们推进了这一问题的研究,对四名神经功能正常的成年受试者的前扣带回皮质和中扣带回皮质中的VENs进行了研究。我们使用硫堇技术和改良的“单切片”高尔基方法进行光学显微镜观察。进行了三维(3D)重建,以可视化经高尔基染色的VENs的细胞体、上升和下降树突以及侧支。我们还研究了从近端到远端树突上棘突的存在、密度和形状。这些神经元的胞体外观相似,但有棘树突的特征证明了CC VENs的形态异质性。仅为描述这种形状,我们将最常见的特征标记为VEN 1,其有主要的树突干但分支少且棘突稀疏。VEN 2呈现中间形态,而VEN 3显示出最丰富的树突分支,并且从近端到远端分支有更多形状各异的棘突。形态测量数据例证了这些细胞的树突特征。树突结构和棘突的异质性表明,在涉及人类CC的正常以及可能的神经/精神疾病的整合网络中,VENs的突触和信息处理具有额外的功能意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff04/7360805/edbd900d92f5/fnsyn-12-00025-g001.jpg

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