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发育过程中的鼻腔阻塞会导致突触消除缺陷、过度同步和小脑功能受损。

Nasal obstruction during development leads to defective synapse elimination, hypersynchrony, and impaired cerebellar function.

机构信息

Department of Cognitive Neurobiology, Graduate School of Medical and Dental Sciences, Institute of Science Tokyo, Tokyo, Japan.

Department of Orthodontic Science, Graduate School of Medical and Dental Sciences, Institute of Science Tokyo, Tokyo, Japan.

出版信息

Commun Biol. 2024 Oct 23;7(1):1381. doi: 10.1038/s42003-024-07095-4.

Abstract

Nasal respiratory disorders are linked to craniofacial anomalies and systemic dysfunctions. However, the implications of nasal respiratory disorders on brain development and their subsequent impact on brain functionalization remain largely unknown. Here, we describe that nasal obstruction from postnatal developmental stages in mice precipitates deficits in cerebellum-associated behaviors and compromised refinement and maturation of neural circuits in the cerebellum. We show that mice with nasal obstruction during developmental phases exhibit marked impairments in motor function and exhibit increased immobility time in forced swimming test. Additionally, we identified critical periods during which nasal respiration is essential for optimizing motor function and preserving mental health. Our study also reveals that nasal obstruction in mice disrupts the typical developmental process of synapse elimination in the cerebellum and hinders the normal transition of activity patterns in cerebellar Purkinje cell populations during development. Through comparing activity patterns in mouse models subjected to nasal obstruction at various stages, we suggest that the maturation of specific activity pattern among Purkinje cell populations is fundamental to the functional integrity of the cerebellum. Our findings highlight the indispensable role of adequate nasal respiration during development for the establishment and functional integrity of neural circuits, thereby significantly affecting brain function.

摘要

鼻腔呼吸障碍与颅面畸形和全身功能障碍有关。然而,鼻腔呼吸障碍对大脑发育的影响及其对大脑功能化的后续影响在很大程度上仍不清楚。在这里,我们描述了从出生后发育阶段开始的小鼠鼻腔阻塞会导致与小脑相关的行为缺陷,并损害小脑神经回路的细化和成熟。我们发现,在发育阶段有鼻腔阻塞的小鼠在运动功能方面表现出明显的缺陷,并在强迫游泳试验中表现出更高的不动时间。此外,我们确定了关键时期,在此期间,鼻腔呼吸对于优化运动功能和保持心理健康至关重要。我们的研究还表明,小鼠的鼻腔阻塞会破坏小脑中突触消除的典型发育过程,并阻碍小脑浦肯野细胞群体在发育过程中活动模式的正常转变。通过比较在不同阶段进行鼻腔阻塞的小鼠模型中的活动模式,我们认为浦肯野细胞群体中特定活动模式的成熟对于小脑的功能完整性是至关重要的。我们的发现强调了在发育过程中充分的鼻腔呼吸对于神经回路的建立和功能完整性的不可或缺的作用,从而对大脑功能产生重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a82e/11500345/54669809102b/42003_2024_7095_Fig1_HTML.jpg

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