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首页> 外文期刊>Brain Sciences >Wisteria Floribunda Agglutinin-Labeled Perineuronal Nets in the Mouse Inferior Colliculus, Thalamic Reticular Nucleus and Auditory Cortex
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Wisteria Floribunda Agglutinin-Labeled Perineuronal Nets in the Mouse Inferior Colliculus, Thalamic Reticular Nucleus and Auditory Cortex

机译:紫藤花粉凝集素标记的小鼠下丘脑,丘脑网状核和听觉皮层的神经胶质网

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Perineuronal nets (PNNs) are specialized extracellular matrix molecules that are associated with the closing of the critical period, among other functions. In the adult brain, PNNs surround specific types of neurons, however the expression of PNNs in the auditory system of the mouse, particularly at the level of the midbrain and forebrain, has not been fully described. In addition, the association of PNNs with excitatory and inhibitory cell types in these structures remains unknown. Therefore, we sought to investigate the expression of PNNs in the inferior colliculus (IC), thalamic reticular nucleus (TRN) and primary auditory cortex (A1) of the mouse brain by labeling with wisteria floribunda agglutinin (WFA). To aid in the identification of inhibitory neurons in these structures, we employed the vesicular GABA transporter (VGAT)-Venus transgenic mouse strain, which robustly expresses an enhanced yellow-fluorescent protein (Venus) natively in nearly all gamma-amino butyric acid (GABA)-ergic inhibitory neurons, thus enabling a rapid and unambiguous assessment of inhibitory neurons throughout the nervous system. Our results demonstrate that PNNs are expressed throughout the auditory midbrain and forebrain, but vary in their local distribution. PNNs are most dense in the TRN and least dense in A1. Furthermore, PNNs are preferentially associated with inhibitory neurons in A1 and the TRN, but not in the IC of the mouse. These data suggest regionally specific roles for PNNs in auditory information processing.
机译:神经周围神经网(PNN)是特殊的细胞外基质分子,与关键时期的结束有关,还有其他功能。在成年大脑中,PNNs围绕特定类型的神经元,但是尚未完全描述PNNs在小鼠听觉系统中的表达,尤其是在中脑和前脑的表达。此外,在这些结构中,PNN与兴奋性和抑制性细胞类型的关联仍然未知。因此,我们试图通过用紫藤紫花凝集素(WFA)标记来研究PNNs在小鼠大脑的下丘脑(IC),丘脑网状核(TRN)和初级听觉皮层(A1)中的表达。为帮助鉴定这些结构中的抑制性神经元,我们使用了水泡GABA转运蛋白(VGAT)-金星转基因小鼠品系,该菌株在几乎所有的γ-氨基丁酸(GABA)中天然表达增强的黄色荧光蛋白(金星) -抑制性神经元,因此可以快速,明确地评估整个神经系统中的抑制性神经元。我们的结果表明,PNNs在整个听觉中脑和前脑中都有表达,但在其局部分布中有所不同。 PNN在TRN中密度最高,在A1中密度最低。此外,PNNs优先与A1和TRN中的抑制性神经元相关,但与小鼠的IC中无关。这些数据表明了PNN在听觉信息处理中的区域特定作用。

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