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三个胆碱能传入到耳蜗核的特征描述。

Characterization of three cholinergic inputs to the cochlear nucleus.

机构信息

Hearing Research Group, Department of Anatomy and Neurobiology, Northeast Ohio Medical University, Rootstown, OH, USA.

Kresge Hearing Research Institute, Department of Otolaryngology-Head and Neck Surgery, University of Michigan, Ann Arbor, MI, USA.

出版信息

J Chem Neuroanat. 2023 Sep;131:102284. doi: 10.1016/j.jchemneu.2023.102284. Epub 2023 May 8.

Abstract

Acetylcholine modulates responses throughout the auditory system, including at the earliest brain level, the cochlear nucleus (CN). Previous studies have shown multiple sources of cholinergic input to the CN but information about their relative contributions and the distribution of inputs from each source is lacking. Here, we used staining for cholinergic axons and boutons, retrograde tract tracing, and acetylcholine-selective anterograde tracing to characterize three sources of acetylcholine input to the CN in mice. Staining for cholinergic axons showed heavy cholinergic inputs to granule cell areas and the dorsal CN with lighter input to the ventral CN. Retrograde tract tracing revealed that cholinergic cells from the superior olivary complex, pontomesencephalic tegmentum, and lateral paragigantocellular nucleus send projections to the CN. When we selectively labeled cholinergic axons from each source to the CN, we found surprising similarities in their terminal distributions, with patterns that were overlapping rather than complementary. Each source heavily targeted granule cell areas and the dorsal CN (especially the deep dorsal CN) and sent light input into the ventral CN. Our results demonstrate convergence of cholinergic inputs from multiple sources in most regions of the CN and raise the possibility of convergence onto single CN cells. Linking sources of acetylcholine and their patterns of activity to modulation of specific cell types in the CN will be an important next step in understanding cholinergic modulation of early auditory processing.

摘要

乙酰胆碱调节听觉系统的反应,包括最早的大脑水平——耳蜗核 (CN)。先前的研究表明,CN 有多个胆碱能输入源,但关于它们的相对贡献和每个来源的输入分布的信息却缺乏。在这里,我们使用染色技术检测胆碱能轴突和末梢、逆行追踪和乙酰胆碱选择性顺行追踪,以描述三种胆碱能输入源向小鼠 CN 的输入情况。胆碱能轴突染色显示颗粒细胞区和 CN 背侧有大量胆碱能输入,CN 腹侧输入较少。逆行追踪显示,来自上橄榄复合体、桥脑被盖区和外侧巨细胞旁核的胆碱能细胞向 CN 投射。当我们选择性标记来自每个来源的 CN 的胆碱能轴突时,我们发现它们的末梢分布惊人地相似,模式是重叠的而不是互补的。每个来源都强烈靶向颗粒细胞区和 CN 的背侧(尤其是深背侧 CN),并向 CN 的腹侧发出弱输入。我们的结果表明,来自多个来源的胆碱能输入在 CN 的大多数区域存在汇聚,并提出了在单个 CN 细胞上汇聚的可能性。将乙酰胆碱的来源及其活动模式与 CN 中特定细胞类型的调制联系起来,将是理解胆碱能对早期听觉处理的调制的重要下一步。

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