咀嚼相关运动皮质神经元与牙齿脱落相关的神经可塑性。

IF 2.6 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
Takafumi Katagiri , Shiro Nakamura , Yoshihisa Tachibana , Kiyomi Nakayama , Ayako Mochizuki , Masanori Dantsuji , Kazuyoshi Baba , Tomio Inoue
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引用次数: 0

摘要

目的:大脑皮层包含的神经元在控制有节奏的咀嚼颚运动中起关键作用。然而,咀嚼过程中个体皮质神经元活动的群体特征以及牙齿脱落对这些特征的影响尚不清楚。因此,在这项研究中,我们的目的是确定咀嚼过程中引发的咀嚼相关运动皮质神经元的活动模式,并利用双光子Ca2+成像检查拔牙对头部受限清醒小鼠神经元活动的影响。方法:将表达gcamp6f的1型腺相关病毒注射到6-8周龄C57BL/6j小鼠的左侧运动皮层(位于脑前侧2 mm和2 mm),并在右侧咬肌和二腹肌植入肌电电极。手术后三周,在咀嚼序列中进行层(L) 2/3神经元的体内双光子Ca2+成像和同时肌电图记录。结果:咀嚼诱导Ca2+反应的强度和频率显著增加,并与咀嚼相关的大多数运动皮质L2/3神经元活动相关。这些咀嚼相关的变化与咀嚼前发生的低基线活动神经元的活动相关。拔除右上三颗磨牙后,咀嚼诱导的L2/3神经元Ca2+活性发生明显的神经可塑性变化。结论:我们的体内成像研究为牙齿脱落引起的皮质神经可塑性的神经元基础提供了新的见解,并为口腔感觉运动功能障碍的治疗提供了可能的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tooth loss-associated neuroplasticity of mastication-related motor cortical neurons

Objectives

The cerebral cortex contains neurons that play a pivotal role in controlling rhythmic masticatory jaw movements. However, the population characteristics of individual cortical neuronal activity during mastication and the impact of tooth loss on these characteristics remain unclear. Thus, in this study, we aimed to determine the activity patterns of mastication-related motor cortical neurons elicited during mastication and examine the effects of tooth extraction on neuronal activity using two-photon Ca2+ imaging in head-restrained awake mice.

Methods

GCaMP6f-expressing adeno-associated virus serotype 1 was injected into the left motor cortex (centered 2 mm anterior and 2 mm lateral to the bregma) and electromyography (EMG) electrodes were implanted into the right masseter and digastric muscles of 6–8-week-old C57BL/6j mice. Three weeks after surgery, in vivo two-photon Ca2+ imaging of layer (L) 2/3 neurons and simultaneous EMG recordings were performed during the masticatory sequence.

Results

Mastication induced a remarkable increase in the power and frequency of Ca2+ responses and correlated with majority of the mastication-related motor cortical L2/3 neuronal activity. These mastication-related changes correlated with the activity of neurons with low baseline activity that occurred before mastication. Extraction of the right upper three molars caused clear neuroplastic changes in the mastication-induced Ca2+ activity of L2/3 neurons.

Conclusions

Our in vivo imaging study provides new insights into the neuronal basis of tooth loss-induced cortical neuroplasticity, and suggests a possible therapeutic approach for oral sensorimotor dysfunction.
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来源期刊
Journal of Oral Biosciences
Journal of Oral Biosciences DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
4.40
自引率
12.50%
发文量
57
审稿时长
37 days
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