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上脑干胆碱能神经元投射到上行和下行回路。

Upper brainstem cholinergic neurons project to ascending and descending circuits.

机构信息

Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics, MoE Key Laboratory for Biomedical Photonics, Huazhong University of Science and Technology, Wuhan, 430074, China.

Institute of neurological diseases, North Sichuan Medical University, Nanchong, 637100, China.

出版信息

BMC Biol. 2023 Jun 6;21(1):135. doi: 10.1186/s12915-023-01625-y.

Abstract

BACKGROUND

Based on their anatomical location, rostral projections of nuclei are classified as ascending circuits, while caudal projections are classified as descending circuits. Upper brainstem neurons participate in complex information processing and specific sub-populations preferentially project to participating ascending or descending circuits. Cholinergic neurons in the upper brainstem have extensive collateralizations in both ascending and descending circuits; however, their single-cell projection patterns remain unclear because of the lack of comprehensive characterization of individual neurons.

RESULTS

By combining fluorescent micro-optical sectional tomography with sparse labeling, we acquired a high-resolution whole-brain dataset of pontine-tegmental cholinergic neurons (PTCNs) and reconstructed their detailed morphology using semi-automatic reconstruction methods. As the main source of acetylcholine in some subcortical areas, individual PTCNs had abundant axons with lengths up to 60 cm and 5000 terminals and innervated multiple brain regions from the spinal cord to the cortex in both hemispheres. Based on various collaterals in the ascending and descending circuits, individual PTCNs were grouped into four subtypes. The morphology of cholinergic neurons in the pedunculopontine nucleus was more divergent, whereas the laterodorsal tegmental nucleus neurons contained richer axonal branches and dendrites. In the ascending circuits, individual PTCNs innervated the thalamus in three different patterns and projected to the cortex via two separate pathways. Moreover, PTCNs targeting the ventral tegmental area and substantia nigra had abundant collaterals in the pontine reticular nuclei, and these two circuits contributed oppositely to locomotion.

CONCLUSIONS

Our results suggest that individual PTCNs have abundant axons, and most project to various collaterals in the ascending and descending circuits simultaneously. They target regions with multiple patterns, such as the thalamus and cortex. These results provide a detailed organizational characterization of cholinergic neurons to understand the connexional logic of the upper brainstem.

摘要

背景

根据其解剖位置,核的前向投射被归类为上行回路,而后向投射被归类为下行回路。上脑干神经元参与复杂的信息处理,特定的亚群优先投射到参与的上行或下行回路。上脑干中的胆碱能神经元在上行和下行回路中都有广泛的侧支;然而,由于缺乏对单个神经元的全面描述,它们的单细胞投射模式仍不清楚。

结果

通过结合荧光微光学切片断层扫描和稀疏标记,我们获得了一个高精度的脑桥被盖胆碱能神经元(PTCN)全脑数据集,并使用半自动重建方法重建了它们的详细形态。作为一些皮质下区域乙酰胆碱的主要来源,单个 PTCN 有丰富的轴突,长度可达 60 厘米,有 5000 个末梢,并且在两个半球从脊髓到皮质的多个脑区都有神经支配。根据上行和下行回路中的各种侧支,单个 PTCN 被分为四个亚型。脚桥核中的胆碱能神经元形态更为发散,而外侧背盖核神经元含有更丰富的轴突分支和树突。在上行回路中,单个 PTCN 以三种不同的模式支配丘脑,并通过两条独立的通路投射到皮质。此外,投射到腹侧被盖区和黑质的 PTCN 在脑桥网状核中有丰富的侧支,这两个回路对运动有相反的贡献。

结论

我们的结果表明,单个 PTCN 有丰富的轴突,大多数同时投射到上行和下行回路中的各种侧支。它们以多种模式靶向丘脑和皮质等区域。这些结果为理解上脑干的连接逻辑提供了胆碱能神经元的详细组织特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a95/10245412/a66fac91b8b5/12915_2023_1625_Fig1_HTML.jpg

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