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青春期前后猕猴前额叶皮质内在及联合神经回路的精细化

Peripubertal refinement of the intrinsic and associational circuitry in monkey prefrontal cortex.

作者信息

Woo T U, Pucak M L, Kye C H, Matus C V, Lewis D A

机构信息

Department of Psychiatry, University of Pittsburgh, PA 15213, U.S.A.

出版信息

Neuroscience. 1997 Oct;80(4):1149-58. doi: 10.1016/s0306-4522(97)00059-6.

Abstract

The peripubertal elimination of axospinous synapses and dendritic spines in monkey prefrontal cortex suggests that this region undergoes substantial reorganization during late postnatal development. Understanding the functional impact of these maturational refinements requires knowledge of the specific presynaptic elements involved in these changes. Two potential sources of these presynaptic terminals are the intrinsic axon collaterals furnished by pyramidal cells within a region and the associational axons that arise from pyramidal neurons in other cortical regions in the same hemisphere. In the adult, both of these types of axon terminals form synapses predominantly with dendritic spines on other pyramidal neurons, and thus they may be preferentially involved in the peripubertal pruning of axospinous synapses and dendritic spines. In order to test this hypothesis, iontophoretic injections of the anterograde tracer biotinylated dextran amine were made into the superficial layers of areas 9 or 46 of the prefrontal cortex of four prepubertal juvenile (14.9-21.5 months old) and three young adult macaque monkeys. Tangential reconstructions revealed a stripe-like pattern of labeled terminals for intrinsic and associational projections in both juvenile and adult animals. During puberty, the intrinsic circuitry underwent extensive topographic refinement, as demonstrated by a 42.7% decrease in stripe area and a 28.0% increase in gap distance between stripes. Furthermore, the mediolateral tangential spread of labeled stripes around the injection site decreased by 27.0%. In contrast, topographic refinement was not evident in the associational circuitry. In both layers 1 and 3, the densities of varicosities and branch points on labeled axons decreased by about 50% in intrinsic stripes during puberty, but only by approximately 30% in associational stripes. These findings suggest that the spatial form and magnitude of peripubertal refinements in prefrontal cortical connectivity may be specific for certain neural elements.

摘要

青春期前后猕猴前额叶皮质中轴棘突触和树突棘的消除表明,该区域在出生后晚期发育过程中经历了实质性的重组。要了解这些成熟细化的功能影响,需要知道参与这些变化的特定突触前元件。这些突触前终末的两个潜在来源是区域内锥体细胞提供的内在轴突侧支,以及来自同一半球其他皮质区域锥体细胞的联合轴突。在成年动物中,这两种类型的轴突终末主要与其他锥体细胞上的树突棘形成突触,因此它们可能优先参与青春期前后轴棘突触和树突棘的修剪。为了验证这一假设,对4只青春期前幼年(14.9 - 21.5个月大)和3只成年猕猴的前额叶皮质9区或46区浅层进行了离子电渗法注射顺行示踪剂生物素化葡聚糖胺。切线重建显示,幼年和成年动物中内在和联合投射的标记终末呈条纹状分布。在青春期,内在神经回路经历了广泛的拓扑细化,表现为条纹区域减少42.7%,条纹间间隙距离增加28.0%。此外,注射部位周围标记条纹的中外侧切线扩展减少了27.0%。相比之下,联合神经回路中没有明显的拓扑细化。在第1层和第3层中,青春期期间内在条纹中标记轴突上的曲张体和分支点密度下降了约50%,而联合条纹中仅下降了约30%。这些发现表明,青春期前后前额叶皮质连接性细化的空间形式和程度可能因某些神经元元件而异。

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