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小白蛋白在连接家兔内侧膝状体和听觉新皮层的一个相互连接的回路中表达。

Parvalbumin is expressed in a reciprocal circuit linking the medial geniculate body and auditory neocortex in the rabbit.

作者信息

de Venecia R K, Smelser C B, McMullen N T

机构信息

Department of Cell Biology and Anatomy, University of Arizona College of Medicine, Tucson 85724, USA.

出版信息

J Comp Neurol. 1998 Oct 26;400(3):349-62. doi: 10.1002/(sici)1096-9861(19981026)400:3<349::aid-cne5>3.3.co;2-c.

Abstract

Recent studies of the rabbit auditory forebrain have shown that antibodies directed against the calcium-binding protein parvalbumin (PV) specifically demarcate auditory neocortex and the ventral division of the medial geniculate body (MGV). The auditory cortex is characterized by two PV- immunoreactive bands: dense terminal-like labeling within layer III/IV and a prominent band of PV+ somata in the upper half of layer VI. In some cases, there are distinct patches of PV immunoreactivity within layers III/IV of auditory cortex that appear similar to the patchy termination of thalamocortical axons labeled by the injection of anterograde tracers into MGV. The presence of PV+ patches in III/IV, PV+ somata in layer VI, and the high density of PV+ neurons and terminals in the MGV suggest the existence of a reciprocal PV+ circuit linking primary auditory cortex (AI) and the MGV. In the present study, double-labeling experiments in adult rabbits were carried out to provide evidence for this circuit. Focal injections of the tracers biocytin or biotinylated dextran amine (BDA) into the MGV labeled thalamocortical afferent patches within layer III/IV and retrogradely labeled corticothalamic neurons in layer VIa of the ipsilateral auditory cortex. Adjacent sections stained with antibodies against PV revealed terminal-like PV-immunoreactive patches in III/IV and PV+ somata in VIa that were in register with those labeled by BDA injections into the MGV. Serial section reconstruction of BDA-labeled corticothalamic neurons in VIa revealed pyramidal cells with tangentially oriented basal dendrites and sparsely branched apical dendrites that ascended to layer I. Fluorescent double-labeling studies demonstrated that a subpopulation of corticothalamic neurons also express PV. PV-negative corticothalamic neurons were also found. Discrete injections of BDA into auditory cortex labeled bands of neurons in the ipsilateral MGV, whose orientation paralleled the fibrodendritic laminae characteristic of this subdivision. Retrograde double-labeling experiments showed that most MGV relay neurons also express PV. Small numbers of PV-negative relay neurons were also found. These studies provide evidence for the existence of multiple, chemically coded pathways linking primary auditory cortex and the MGV.

摘要

近期对家兔听觉前脑的研究表明,针对钙结合蛋白小白蛋白(PV)的抗体能够特异性地勾勒出听觉新皮层和内侧膝状体腹侧部(MGV)。听觉皮层的特征在于两条PV免疫反应带:III/IV层内密集的终末样标记以及VI层上半部分显著的PV+ 体细胞带。在某些情况下,听觉皮层的III/IV层内存在明显的PV免疫反应斑块,这些斑块类似于通过向MGV注射顺行示踪剂标记的丘脑皮质轴突的斑块状终末。III/IV层中的PV+ 斑块、VI层中的PV+ 体细胞以及MGV中高密度的PV+ 神经元和终末,提示存在一个连接初级听觉皮层(AI)和MGV的双向PV+ 回路。在本研究中,对成年家兔进行了双重标记实验,以证明该回路的存在。向MGV局部注射示踪剂生物胞素或生物素化葡聚糖胺(BDA),标记了III/IV层内的丘脑皮质传入斑块,并逆行标记了同侧听觉皮层VIa层中的皮质丘脑神经元。用抗PV抗体染色的相邻切片显示,III/IV层中有终末样PV免疫反应斑块,VIa层中有PV+ 体细胞,它们与向MGV注射BDA标记的区域对齐。对VIa层中BDA标记的皮质丘脑神经元进行连续切片重建,发现锥体细胞的基底树突呈切线方向,顶树突稀疏分支并上升至I层。荧光双重标记研究表明,一部分皮质丘脑神经元也表达PV。也发现了PV阴性的皮质丘脑神经元。向听觉皮层离散注射BDA,标记了同侧MGV中的神经元带,其方向与该亚区特有的纤维树突层平行。逆行双重标记实验表明,大多数MGV中继神经元也表达PV。也发现了少量PV阴性的中继神经元。这些研究为连接初级听觉皮层和MGV的多种化学编码通路的存在提供了证据。

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