首页> 美国卫生研究院文献>Lippincott Williams Wilkins Open Access >The Effect of Functional Mandibular Shift on the Muscle Spindle Systems in Head-Neck Muscles and the Related Neurotransmitter Histamine
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The Effect of Functional Mandibular Shift on the Muscle Spindle Systems in Head-Neck Muscles and the Related Neurotransmitter Histamine

机译:功能性下颌移位对头颈肌肉和相关神经递质组胺的肌肉纺锤体系统的影响

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摘要

The aim of this study is to explore the effects of abnormal occlusion and functional recovery caused by functional mandible deviation on the head and neck muscles and muscle spindle sensory-motor system by electrophysiological response and endogenous monoamine neurotransmitters’ distribution in the nucleus of the spinal tract. Seven-week-old male Wistar rats were randomly divided into 7 groups: normal control group, 2W experimental control group, 2W functional mandible deviation group, 2W functional mandible deviation recovery group, 4W experimental control group, 4W functional mandible deviation group, 4W functional mandible deviation recovery group. Chewing muscles, digastric muscle, splenius, and trapezius muscle spindles electrophysiological response activities at the opening and closing state were recorded. And then the chewing muscles, digastric, splenius, trapezius, and neck trigeminal nucleus were taken for histidine decarboxylase (HDC) detection by high performance liquid chromatography (HPLC), immunofluorescence, and reverse-transcription polymerase chain reaction (RT-PCR). Histamine receptor proteins in the neck nucleus of the spinal tract were also examined by immunofluorescence and RT-PCR. Electromyography activity of chewing muscles, digastric, and splenius muscle was significantly asymmetric; the abnormal muscle electromyography activity was mainly detected at the ipsilateral side. After functional mandibular deviation, muscle sensitivity on the ipsilateral sides of the chewing muscle and splenius decreased, muscle excitement weakened, modulation depth decreased, and the muscle spindle afferent impulses of excitation transmission speed slowed down. Changes for digastric muscle electrical activity were contrary. The functions recovered at different extents after removing the deflector. However, trapezius in all the experimental groups and recovery groups exhibited bilateral symmetry electrophysiological responses, and no significant difference compared with the control group. After functional mandibular deviation, HDC protein and messenger ribonucleic acid (mRNA) levels on the ipsilateral sides of the chewing muscle and splenius increased significantly. HDC level changes for digastric muscle were contrary. After the removal of the mandibular position deflector, HDC protein and mRNA levels decreased on the ipsilateral sides of the chewing muscle and splenius while they increased in the digastric muscle. The difference of histamine decarboxylase content in the bilateral trapezius in each experimental group was small. After functional mandibular deviation, the temporomandibular joint mechanical receptors not only caused the fusimotor fiber hypoallergenic fatigue slow response on the ipsilateral sides of splenius, but also increased the injury neurotransmitter histamine release. The authors’ results further support the opinion that the temporomandibular joint receptors may be involved in the mechanical theory of the head and neck muscles nervous system regulation.
机译:本研究的目的是通过电生理反应和内源性单胺神经递质在脊髓核中的分布,探讨功能性下颌骨偏斜引起的异常闭塞和功能恢复对头颈部肌肉和肌梭感觉运动系统的影响。 。七周龄雄性Wistar大鼠随机分为7组:正常对照组,2W实验对照组,2W功能性下颌骨偏差组,2W功能性下颌骨偏差恢复组,4W实验对照组,4W功能性下颌骨偏差组,4W功能性下颌骨偏差恢复组。记录在打开和关闭状态下的咀嚼肌,腹肌,脾和斜方肌纺锤体的电生理反应活动。然后,通过高效液相色谱(HPLC),免疫荧光和逆转录聚合酶链反应(RT-PCR),对口香糖,胃,脾,斜方肌和颈三叉神经核进行组氨酸脱羧酶(HDC)检测。还通过免疫荧光和RT-PCR检查了脊髓颈核中的组胺受体蛋白。咀嚼肌,腹肌和脾脏肌的肌电图活动明显不对称。肌肉肌电图异常活动主要在同侧。下颌功能性偏斜后,咀嚼肌和脾的同侧的肌肉敏感性降低,肌肉兴奋减弱,调制深度降低,并且肌肉纺锤传入刺激传递速度的冲动减慢。胃肌电活动的变化是相反的。卸下导流板后,功能在不同程度上恢复了。然而,所有实验组和恢复组的斜方肌均表现出双侧对称的电生理反应,与对照组相比无明显差异。下颌功能偏离后,咀嚼肌和脾的同侧的HDC蛋白和信使核糖核酸(mRNA)水平显着增加。胃肌的HDC水平变化是相反的。去除下颌位置偏转器后,咀嚼肌和脾的同侧的HDC蛋白和mRNA水平下降,而在胃肌中则升高。各实验组双侧斜方肌组胺脱羧酶含量差异较小。下颌骨功能性偏离后,颞下颌关节机械受体不仅导致脾脏同侧融合肌纤维低变应原性疲劳反应迟缓,而且还增加了损伤神经递质组胺的释放。作者的结果进一步支持了颞下颌关节受体可能参与头颈部肌肉神经系统调节的力学理论的观点。

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