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青春期小鼠听觉内毛细胞GABA能神经支配内的复合突触

Compound synapses within the GABAergic innervation of the auditory inner hair cells in the adolescent mouse.

作者信息

Sobkowicz H M, Slapnick S M, Nitecka L M, August B K

机构信息

Department of Neurology, University of Wisconsin, Madison 53706, USA.

出版信息

J Comp Neurol. 1997 Jan 20;377(3):423-42. doi: 10.1002/(sici)1096-9861(19970120)377:3<423::aid-cne9>3.0.co;2-4.

Abstract

Ultrastructural investigation of the gamma-aminobutyric acid (GABA) component of the inner spiral bundle in adolescent mice revealed a pathway of glutamic acid decarboxylase (GAD)-positive and -negative fibers and vesiculated endings that contact inner hair cells and their afferents through a complex of axosomatic and axodendritic synapses. Ultrastructural details were investigated by using conventional electron microscopy. Several synaptic arrangements were observed: Main axosomatic synapses form between vesiculated endings and individual or adjoining inner hair cells (interreceptor synapses). Spinous synapses form on long, spinelike processes that protrude from inner hair cells to reach distant efferent endings. The efferent endings associate with inner hair cells and their synaptic afferents through compound synapses-serial, "converging," and triadic-otherwise characteristic of sensory relay nuclei. Serial synapses form by the sequential presynaptic alignment of the efferent-->receptor-->afferent components. Converging synapses result from the simultaneous apposition of a receptor ribbon synapse and a presynaptic efferent terminal on a recipient afferent dendrite. Triadic synapses comprise a vesiculated efferent ending in contact with an inner hair cell and with its synaptic afferent. Additionally, efferent endings may form simple axodendritic and axoaxonal synapses with GAD-negative vesiculated endings. The combination of different synaptic arrangements leads to short chains of compound synapses. It is assumed that these synaptic patterns seen in the adolescent mouse represent adult synaptology. The patterns of synaptic connectivity suggest an integrative role for the GABA/GAD lateral efferent system, and imply its involvement in the pre- and postsynaptic modulation of auditory signals.

摘要

对青春期小鼠内螺旋束中γ-氨基丁酸(GABA)成分的超微结构研究揭示了一条由谷氨酸脱羧酶(GAD)阳性和阴性纤维以及囊泡化末梢组成的通路,这些末梢通过轴体和轴树突触复合体与内毛细胞及其传入纤维相接触。通过传统电子显微镜对超微结构细节进行了研究。观察到了几种突触排列方式:主要的轴体突触形成于囊泡化末梢与单个或相邻的内毛细胞之间(感受器间突触)。棘状突触形成于从内毛细胞伸出以到达远处传出末梢的长棘状突起上。传出末梢通过复合突触(串联、“汇聚”和三联体,这些是感觉中继核的典型特征)与内毛细胞及其突触传入纤维相关联。串联突触由传出→受体→传入成分的连续突触前排列形成。汇聚突触是由于受体带突触和突触前传出末梢同时附着在接受传入树突上而产生的。三联体突触包括一个与内毛细胞及其突触传入纤维接触的囊泡化传出末梢。此外,传出末梢可能与GAD阴性囊泡化末梢形成简单的轴树突触和轴轴突触。不同突触排列的组合导致复合突触的短链形成。据推测,在青春期小鼠中看到的这些突触模式代表了成年期的突触学。突触连接模式表明GABA/GAD外侧传出系统具有整合作用,并暗示其参与听觉信号的突触前和突触后调制。

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