[关于大鼠大脑皮层多巴胺能神经支配的发育和分布的最新研究]。

La Cellule Pub Date : 1987-01-01
B Berger, C Verney
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引用次数: 0

摘要

酪氨酸羟化酶被用作胎儿或出生后大脑皮层多巴胺能轴突的免疫细胞化学标记物。由于缺乏多巴胺- β -羟化酶免疫反应性,病变得到控制。荧光组织化学还允许在选择性高亲和转运抑制剂存在的情况下,在组织切片中摄取外源胺后,对多巴胺能系统进行特异性可视化。两个主要的多巴胺能亚群到达大鼠的内侧皮层:1)深层多巴胺能亚群,在胚胎期第16天首先在前额叶皮层检测到,在出生时发育良好,并在第五层和/或第六层向胼胝体的脾部延伸;2)出生后第3 ~ 5天,前扣带皮层第1层(24区)出现浅表层,第6 ~ 14天侵入第3层。直到第21 ~ 30天,才得到成虫的分布格局和显著的静脉曲张形态。除了这些内侧区外,沿感觉运动和视觉皮层(内侧和外侧颗粒区,18b区)以及脾后颗粒区29c、b和颗粒区29d的离散区,在背矢状带两侧检测到低密度的多巴胺能神经支配。这个新观察到的DA输入的几个特征与前扣带皮层中描述的浅表野相似;这些相似性表明,向前扣带皮层提供投射的DA神经元亚群也可能参与运动和视觉皮层,从而在感觉运动整合中发挥作用。在海马区颞部(腹侧和尾侧)也发现了一个DA终末区,其中以枕下尤其是枕前和邻近的CA1海马区为主要目标。海马体结构中的DA末端与向伏隔核投射的区域相匹配。因此,海马体-纹状体的投射在边缘和中枢运动系统之间具有重要的功能联系,可以通过多巴胺能中皮层-边缘通路调节。进一步探讨了这些数据在系统发育尺度上升过程中的预测价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Recent contributions concerning the development and distribution of dopaminergic innervation in the cerebral cortex of the rat].

Tyrosine hydroxylase was used as an immunocytochemical marker of dopaminergic axons in the cerebral cortex either in fetuses or in postnatal life after lesion of the noradrenergic input. The lesion was controlled by the absence of dopamine-beta-hydroxylase immunoreactivity. Fluorescence histochemistry also allowed the specific visualization of the dopaminergic system following uptake of exogenous amines in tissue sections in presence of selective high affinity transport inhibitors. Two main dopaminergic (DA) subpopulations reach the medial cortex of the rat: 1) a deep one, first detected in the anterior frontal cortex on day 16 of embryonic life, was well developed at birth and extended caudally in layer V and/or layer VI toward the splenium of corpus callosum; 2) a superficial one was detected in layer I of the anterior cingulate cortex (area 24) on postnatal day 3 to 5 and invaded layer III from day 6 to 14. The adult distribution pattern and striking varicose aspect were not reached until day 21 to 30. In addition to these medial fields, a dopaminergic innervation of low density was detected laterally along a dorsal sagittal strip which encompassed several distinct cytoarchitectonic areas in the sensorimotor and visual cortex (medial and lateral agranular field, area 18b) as well as in discrete zones of the retrosplenial granular 29c, b, and agranular 29d areas. Several characteristics of this newly observed DA input were similar to that of the superficial field described in the anterior cingulate cortex; these similarities suggested that the subpopulation of DA neurons which provides projections to the anterior cingulate cortex could also contribute to the motor and visual cortex and thus play a role in sensorimotor integration. A DA terminal field was also demonstrated in the temporal part (ventral and caudal) of the hippocampal formation, the subiculum especially the prosubiculum and the adjacent CA1 hippocampal field being the main targets. This DA terminal field in the hippocampal formation matches with the area which projects toward the accumbens nucleus. Thus, the hippocampo-striatal projections which represent a link of functional importance between the limbic and central motor systems, could be modulated by the dopaminergic meso-cortico-limbic pathway. The predictive values of these data in the ascent of the phylogenetic scale are further considered.

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