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大鼠视觉皮层中的棘状和稀疏棘状星状神经元含有谷氨酸脱羧酶。

Aspinous and sparsely-spinous stellate neurons in the visual cortex of rats contain glutamic acid decarboxylase.

作者信息

Ribak C E

出版信息

J Neurocytol. 1978 Aug;7(4):461-78. doi: 10.1007/BF01173991.

Abstract

Glutamic acid decarboxylase (GAD), the enzyme that synthesizes the neurotransmitter gamma-amino-butyric acid (GABA), has been localized in the rat visual cortex by immunocytochemical methods with both light and electron microscopy. In both colchicine-injected and non-injected preparations of the visual cortex, GAD-positive reaction product was observed in somata, proximal dendrites and axon terminals of non-pyramidal neurons. The GAD-positive terminals were observed to form symmetric synaptic junctions most commonly with dendritic shafts and somata of pyramidal and stellate neurons and less frequently with initial axon segments of pyramidal neurons and dendritic spines. In colchicine-injected preparations, GAD-positive somata were located in all cortical layers including the immediately subjacent white matter. In contrast, sections from non-injected rats displayed GAD-positive somata within a superficial and a deep cortical band. The GAD-positive somata observed in both types of preparations received both symmetric and asymmetric synaptic junctions, lacked apical dendrites, and had radially oriented dendrites of small diameter. These characteristics of GAD-positive neurons indicate that they are aspinous and sparsely-spinous stellate neurons. The localization of GAD within these neurons in combination with physiological and pharmacological data indicate that these local circuit neurons mediate GABA-ergic inhibition in the neocortex.

摘要

谷氨酸脱羧酶(GAD)是一种合成神经递质γ-氨基丁酸(GABA)的酶,已通过免疫细胞化学方法在光镜和电镜下对大鼠视觉皮层进行了定位。在注射秋水仙碱和未注射秋水仙碱的视觉皮层制剂中,在非锥体神经元的胞体、近端树突和轴突终末均观察到GAD阳性反应产物。观察到GAD阳性终末最常与锥体神经元和星状神经元的树突干及胞体形成对称突触连接,较少与锥体神经元的轴突起始段和树突棘形成突触连接。在注射秋水仙碱的制剂中,GAD阳性胞体位于包括紧邻的白质在内的所有皮质层中。相比之下,未注射大鼠的切片在浅皮质带和深皮质带内显示有GAD阳性胞体。在这两种制剂中观察到的GAD阳性胞体均接受对称和不对称突触连接,缺乏顶端树突,且有小直径的放射状树突。GAD阳性神经元的这些特征表明它们是无棘和少棘的星状神经元。GAD在这些神经元中的定位,结合生理和药理学数据表明,这些局部回路神经元介导新皮层中的GABA能抑制作用。

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