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利用小鼠模型开发一种分析与阿尔茨海默病相关的口腔衰弱的系统。

Development of a system to analyze oral frailty associated with Alzheimer's disease using a mouse model.

作者信息

Kuramoto Eriko, Kitawaki Ayano, Yagi Takakazu, Kono Hiroshi, Matsumoto Shin-Ei, Hara Hiromitsu, Ohyagi Yasumasa, Iwai Haruki, Yamanaka Atsushi, Goto Tetsuya

机构信息

Department of Oral Anatomy and Cell Biology, Graduate School of Medical and Dental Sciences, Kagoshima University, Kagoshima, Japan.

Department of Oral Health Science, Kobe Tokiwa University, Kobe, Japan.

出版信息

Front Aging Neurosci. 2022 Aug 2;14:935033. doi: 10.3389/fnagi.2022.935033. eCollection 2022.

Abstract

The rapid aging of the population makes the detection and prevention of frailty increasingly important. Oral frailty has been proposed as a novel frailty phenotype and is defined as a decrease in oral function coexisting with a decline in cognitive and physical functions. Oral frailty has received particular attention in relation to Alzheimer's disease (AD). However, the pathomechanisms of oral frailty related to AD remain unknown. It is assumed that the mesencephalic trigeminal nucleus (Vmes), which controls mastication, is affected by AD pathology, and as a result, masticatory function may be impaired. To investigate this possibility, we included male 3 × Tg-AD mice and their non-transgenic counterpart (NonTg) of 3-4 months of age in the present study. Immunohistochemistry revealed amyloid-β deposition and excessive tau phosphorylation in the Vmes of 3 × Tg-AD mice. Furthermore, vesicular glutamate transporter 1-immunopositive axon varicosities, which are derived from Vmes neurons, were significantly reduced in the trigeminal motor nucleus of 3 × Tg-AD mice. To investigate whether the AD pathology observed in the Vmes affects masticatory function, we analyzed electromyography of the masseter muscle during feeding. The 3 × Tg-AD mice showed a significant delay in masticatory rhythm compared to NonTg mice. Furthermore, we developed a system to simultaneously record bite force and electromyography of masseter, and devised a new method to estimate bite force during food chewing in mice. Since the muscle activity of the masseter showed a high correlation with bite force, it could be accurately estimated from the muscle activity. The estimated bite force of 3 × Tg-AD mice eating sunflower seeds was predominantly smaller than that of NonTg mice. However, there was no difference in masseter weight or muscle fiber cross-sectional area between the two groups, suggesting that the decreased bite force and delayed mastication rhythm observed in 3 × Tg-AD mice were not due to abnormality of the masseter. In conclusion, the decreased masticatory function observed in 3 × Tg-AD mice was most likely caused by AD pathology in the Vmes. Thus, novel quantitative analyses of masticatory function using the mouse model of AD enabled a comprehensive understanding of oral frailty pathogenesis.

摘要

人口的快速老龄化使得衰弱的检测和预防变得越来越重要。口腔衰弱已被提出作为一种新的衰弱表型,其定义为口腔功能下降并伴有认知和身体功能衰退。口腔衰弱在阿尔茨海默病(AD)方面受到了特别关注。然而,与AD相关的口腔衰弱的发病机制仍然未知。据推测,控制咀嚼的中脑三叉神经核(Vmes)受到AD病理的影响,结果咀嚼功能可能受损。为了研究这种可能性,我们在本研究中纳入了3至4个月大的雄性3×Tg-AD小鼠及其非转基因对照(NonTg)小鼠。免疫组织化学显示3×Tg-AD小鼠的Vmes中存在淀粉样β沉积和过度的tau磷酸化。此外,源自Vmes神经元的囊泡谷氨酸转运体1免疫阳性轴突膨体在3×Tg-AD小鼠的三叉神经运动核中显著减少。为了研究在Vmes中观察到的AD病理是否影响咀嚼功能,我们分析了进食期间咬肌的肌电图。与NonTg小鼠相比,3×Tg-AD小鼠的咀嚼节奏明显延迟。此外,我们开发了一个系统来同时记录咬合力和咬肌的肌电图,并设计了一种新方法来估计小鼠食物咀嚼期间的咬合力。由于咬肌的肌肉活动与咬合力高度相关,因此可以从肌肉活动中准确估计咬合力。吃向日葵种子的3×Tg-AD小鼠的估计咬合力主要小于NonTg小鼠。然而,两组之间咬肌重量或肌纤维横截面积没有差异,这表明在3×Tg-AD小鼠中观察到的咬合力下降和咀嚼节奏延迟不是由于咬肌异常。总之,在3×Tg-AD小鼠中观察到的咀嚼功能下降最有可能是由Vmes中的AD病理引起 的。因此,使用AD小鼠模型对咀嚼功能进行新的定量分析能够全面了解口腔衰弱的发病机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/839e/9380890/3564dd372c26/fnagi-14-935033-g0001.jpg

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