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大鼠伏隔核中酪氨酸羟化酶的超微结构定位

Ultrastructural localization of tyrosine hydroxylase in rat nucleus accumbens.

作者信息

Bouyer J J, Joh T H, Pickel V M

出版信息

J Comp Neurol. 1984 Jul 20;227(1):92-103. doi: 10.1002/cne.902270110.

Abstract

Immunocytochemical localization of tyrosine hydroxylase (TH) was used to determine the ultrastructural morphology and synaptic associations of catecholaminergic terminals in the nucleus accumbens of the rat. The brains were fixed by vascular perfusion with 4% paraformaldehyde and 0.2% glutaraldehyde. Coronal sections cut with a vibrating microtome were incubated with rabbit antiserum to TH then immunocytochemically labeled by the peroxidase-antiperoxidase method. Immunoreactivity for the enzyme was found within unmyelinated axons and axon terminals. These terminals contained either all small clear or combined small clear and large dense core vesicles. Approximately 40% of the labeled terminals formed symmetric synapses with unlabeled proximal or distal dendritic shafts. The dendrites showed a spare distribution of spines. Axosomatic synapses and axonal associations of the TH-containing terminals also were detected. The recipient perikarya were usually 10-20 micrometers in diameter and contained an indented nucleus and abundant cytoplasm. The content of large dense vesicles and synaptic associations with somata and proximal dendrites suggest that a certain proportion of the TH-containing terminals within the nucleus accumbens are morphologically distinct from catecholaminergic terminals within the dorsal striatum. These differences are discussed in relation to neuropeptides and functions of the dopaminergic mesolimbic and nigrostriatal pathways.

摘要

采用酪氨酸羟化酶(TH)的免疫细胞化学定位法来确定大鼠伏隔核中儿茶酚胺能终末的超微结构形态和突触联系。通过用4%多聚甲醛和0.2%戊二醛进行血管灌注来固定大脑。用振动切片机切取冠状切片,与抗TH兔抗血清孵育,然后通过过氧化物酶-抗过氧化物酶法进行免疫细胞化学标记。在无髓轴突和轴突终末内发现了该酶的免疫反应性。这些终末含有全部小清亮囊泡或小清亮囊泡与大致密核心囊泡的组合。约40%的标记终末与未标记的近端或远端树突干形成对称突触。树突上的棘分布稀疏。还检测到含TH终末的轴-体突触和轴突联系。接受终末的胞体直径通常为10 - 20微米,含有一个凹陷的细胞核和丰富的细胞质。大致密囊泡的含量以及与胞体和近端树突的突触联系表明,伏隔核内一定比例的含TH终末在形态上与背侧纹状体内的儿茶酚胺能终末不同。结合神经肽以及多巴胺能中脑边缘和黑质纹状体通路的功能对这些差异进行了讨论。

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