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小鼠海马体阿蒙角中围绕表达小白蛋白的γ-氨基丁酸能神经元的神经周网的亚类特异性形成。

Subclass-specific formation of perineuronal nets around parvalbumin-expressing GABAergic neurons in Ammon's horn of the mouse hippocampus.

作者信息

Yamada Jun, Jinno Shozo

机构信息

Department of Developmental Molecular Anatomy, Graduate School of Medical Sciences, Kyushu University, Fukuoka, 812-8582, Japan.

出版信息

J Comp Neurol. 2015 Apr 1;523(5):790-804. doi: 10.1002/cne.23712. Epub 2015 Jan 14.

Abstract

Perineuronal nets (PNNs) are closely associated with parvalbumin-positive (PV+) neurons, and play a major role in controlling developmental neural plasticity. Considering the recent advances in classification of PV+ neurons, here we aimed to clarify whether PNNs might be associated with specific subclasses of PV+ neurons in the hippocampus. In this study, we labeled PNNs by Wisteria floribunda agglutinin (WFA), and classified PV+ neurons based on the combination of cellular location, molecular expression (neuropeptide Y [NPY], somatostatin [SOM], special AT-rich sequence-binding protein-1 [SATB1]), and retrograde tracing through stereotaxic injection of Fluoro-Gold (FG) into the medial septum. The criteria of each subclass can be summarized as follows: axo-axonic cells, PV+/SATB1-/NPY- cells in the stratum pyramidale; basket cells, PV+/SATB1+/NPY- cells in the stratum pyramidale; bistratified cells, PV+/SATB1+/NPY+ cells in the stratum pyramidale; oriens-lacunosum-moleculare (O-LM) cells, PV+/SOM+/FG- cells in the stratum oriens; hippocampo-septal projection (H-S) cells, and PV+/SOM+/FG+ cells in the stratum oriens. The ratios of formation of WFA+ PNNs around each subclass of PV+ neurons were estimated according to the optical disector principle. The vast majority (over 90%) of putative PV+ basket cells were surrounded by PNNs, while only a minor population (less than 10%) of putative PV+ axo-axonic, O-LM, and H-S cells were enwrapped with PNNs. The ratios of formation of PNNs around putative PV+ bistratified cells were intermediate (25-50%). These findings indicate that PNNs may be specifically associated with PV+ basket cells, and also provide a key to understand the functional significance of PNNs and PV+ neurons in the hippocampus.

摘要

神经元周围网(PNNs)与小白蛋白阳性(PV+)神经元密切相关,并在控制发育中的神经可塑性方面发挥重要作用。鉴于PV+神经元分类的最新进展,我们旨在阐明PNNs是否可能与海马体中特定的PV+神经元亚类相关。在本研究中,我们用紫藤凝集素(WFA)标记PNNs,并根据细胞位置、分子表达(神经肽Y [NPY]、生长抑素 [SOM]、富含特殊AT序列结合蛋白-1 [SATB1])的组合以及通过向内侧隔核立体定向注射荧光金(FG)进行逆行追踪来对PV+神经元进行分类。每个亚类的标准可总结如下:轴-轴突细胞,即锥体层中的PV+/SATB1-/NPY-细胞;篮状细胞,即锥体层中的PV+/SATB1+/NPY-细胞;双分层细胞,即锥体层中的PV+/SATB1+/NPY+细胞;腔隙-分子层(O-LM)细胞,即腔隙层中的PV+/SOM+/FG-细胞;海马-隔核投射(H-S)细胞,即腔隙层中的PV+/SOM+/FG+细胞。根据光学分割器原理估计PV+神经元各亚类周围WFA+ PNNs的形成比例。绝大多数(超过90%)假定的PV+篮状细胞被PNNs包围,而只有少数群体(不到10%)假定的PV+轴-轴突、O-LM和H-S细胞被PNNs包裹。假定的PV+双分层细胞周围PNNs的形成比例处于中间水平(25-50%)。这些发现表明PNNs可能与PV+篮状细胞特异性相关,也为理解PNNs和PV+神经元在海马体中的功能意义提供了关键线索。

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