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分布于整个小鼠新皮层的长距离γ-氨基丁酸能连接的证明。

Demonstration of long-range GABAergic connections distributed throughout the mouse neocortex.

作者信息

Tomioka Ryohei, Okamoto Keiko, Furuta Takahiro, Fujiyama Fumino, Iwasato Takuji, Yanagawa Yuchio, Obata Kunihiko, Kaneko Takeshi, Tamamaki Nobuaki

机构信息

Department of Morphological Brain Science, Graduate School of Medicine, Kyoto University, Kyoto 606-8501, Japan.

出版信息

Eur J Neurosci. 2005 Mar;21(6):1587-600. doi: 10.1111/j.1460-9568.2005.03989.x.

Abstract

Gamma-aminobutyric acid (GABA)ergic neurons in the neocortex have been mainly regarded as interneurons and thought to provide local interactions. Recently, however, glutamate decarboxylase (GAD) immunocytochemistry combined with retrograde labeling experiments revealed the existence of GABAergic projection neurons in the neocortex. We further studied the network of GABAergic projection neurons in the neocortex by using GAD67-green fluorescent protein (GFP) knock-in mice for retrograde labeling and a novel neocortical GABAergic neuron labeling method for axon tracing. Many GFP-positive neurons were retrogradely labeled after Fast Blue injection into the primary somatosensory, motor and visual cortices. These neurons were labeled not only around the injection site, but also at a long distance from the injection site. Of the retrogradely labeled GABAergic neurons remote from the injection sites, the vast majority (91%) exhibited somatostatin immunoreactivity, and were preferentially distributed in layer II, layer VI and in the white matter. In addition, most of GABAergic projection neurons were positive for neuropeptide Y (82%) and neuronal nitric oxide synthase (71%). We confirmed the long-range projections by tracing GFP-labeled GABAergic neurons with axon branches traveled rostro-caudally and medio-laterally. Axon branches could be traced up to 2 mm. Some (n = 2 of 4) were shown to cross the areal boundaries. The GABAergic projection neurons preferentially received neocortical inputs. From these results, we conclude that GABAergic projection neurons are distributed throughout the neocortex and are part of a corticocortical network.

摘要

新皮质中的γ-氨基丁酸(GABA)能神经元主要被视为中间神经元,并被认为参与局部相互作用。然而,最近,谷氨酸脱羧酶(GAD)免疫细胞化学与逆行标记实验相结合,揭示了新皮质中存在GABA能投射神经元。我们通过使用GAD67-绿色荧光蛋白(GFP)基因敲入小鼠进行逆行标记,并采用一种新的用于轴突追踪的新皮质GABA能神经元标记方法,进一步研究了新皮质中GABA能投射神经元的网络。将快蓝注入初级体感、运动和视觉皮质后,许多GFP阳性神经元被逆行标记。这些神经元不仅在注射部位周围被标记,而且在距注射部位很远的地方也有标记。在远离注射部位的逆行标记的GABA能神经元中,绝大多数(91%)表现出生长抑素免疫反应性,并且优先分布在II层、VI层和白质中。此外,大多数GABA能投射神经元对神经肽Y(82%)和神经元型一氧化氮合酶(71%)呈阳性。我们通过追踪具有向头-尾和中-外侧走行的轴突分支的GFP标记的GABA能神经元,证实了其长距离投射。轴突分支可追踪到2毫米。一些(4个中有2个)被证明跨越了区域边界。GABA能投射神经元优先接受新皮质输入。从这些结果中,我们得出结论,GABA能投射神经元分布在整个新皮质中,是皮质-皮质网络的一部分。

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