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从三叉神经不对称到认知障碍的途径:一项行为和分子研究。

The path from trigeminal asymmetry to cognitive impairment: a behavioral and molecular study.

机构信息

Department of Translational Research and of New Surgical and Medical Technologies, University of Pisa, Via San Zeno 31, 56127, Pisa, Italy.

Department of Veterinary Sciences, University of Pisa, Pisa, Italy.

出版信息

Sci Rep. 2021 Feb 26;11(1):4744. doi: 10.1038/s41598-021-82265-6.

Abstract

Trigeminal input exerts acute and chronic effects on the brain, modulating cognitive functions. Here, new data from humans and animals suggest that these effects are caused by trigeminal influences on the Locus Coeruleus (LC). In humans subjects clenching with masseter asymmetric activity, occlusal correction improved cognition, alongside with reductions in pupil size and anisocoria, proxies of LC activity and asymmetry, respectively. Notably, reductions in pupil size at rest on the hypertonic side predicted cognitive improvements. In adult rats, a distal unilateral section of the trigeminal mandibular branch reduced, on the contralateral side, the expression of c-Fos (brainstem) and BDNF (brainstem, hippocampus, frontal cortex). This counterintuitive finding can be explained by the following model: teeth contact perception loss on the lesioned side results in an increased occlusal effort, which enhances afferent inputs from muscle spindles and posterior periodontal receptors, spared by the distal lesion. Such effort leads to a reduced engagement of the intact side, with a corresponding reduction in the afferent inputs to the LC and in c-Fos and BDNF gene expression. In conclusion, acute effects of malocclusion on performance seem mediated by the LC, which could also contribute to the chronic trophic dysfunction induced by loss of trigeminal input.

摘要

三叉神经输入对大脑施加急性和慢性影响,调节认知功能。在这里,来自人类和动物的新数据表明,这些影响是由三叉神经对蓝斑(LC)的影响引起的。在人类受试者中,通过咀嚼肌不对称活动进行咬紧,咬合矫正改善了认知,同时瞳孔大小减小和瞳孔不等,分别是 LC 活动和不对称性的替代指标。值得注意的是,在紧张侧的静息状态下瞳孔大小的减小预测了认知的改善。在成年大鼠中,三叉神经下颌支的远端单侧切开术减少了对侧脑干和海马、额皮质中 c-Fos(脑干)和 BDNF 的表达。这种违反直觉的发现可以用以下模型来解释:患侧牙齿接触感知丧失导致咬合努力增加,从而增强了肌肉梭和后牙周感受器的传入输入,这些感受器不受远端病变的影响。这种努力导致未受损侧的参与减少,相应地减少了 LC 的传入输入以及 c-Fos 和 BDNF 基因表达。总之,咬合不正对表现的急性影响似乎是由 LC 介导的,这也可能导致三叉神经输入丧失引起的慢性营养功能障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf05/7910455/c484397bd607/41598_2021_82265_Fig1_HTML.jpg

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