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首页> 外文期刊>Journal of Neurophysiology >Neuroplasticity induced by tooth pulp stimulation in trigeminal subnucleus oralis involves NMDA receptor mechanisms.
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Neuroplasticity induced by tooth pulp stimulation in trigeminal subnucleus oralis involves NMDA receptor mechanisms.

机译:牙髓刺激在三叉神经下核口中诱导的神经可塑性涉及NMDA受体机制。

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We have recently demonstrated that application of the mustard oil (MO), a small-fiber excitant and inflammatory irritant, to the rat maxillary molar tooth pulp induces significant increases in jaw muscle electromyographic (EMG) activity and neuroplastic changes in trigeminal (V) subnucleus caudalis. Since subnucleus oralis (Vo) as well as caudalis receives projections from molar pulp afferents and is also an integral brain stem relay of afferent input from orofacial structures, we tested whether MO application to the exposed pulp induces neuroplastic changes in oralis neurons and whether microinjection of MK-801, a noncompetitive NMDA antagonist, into the Vo influences the pulp/MO-induced neuroplastic changes in chloralose/urethan-anesthetized rats. Single neuronal activity was recorded in Vo, and neurons classified as low-threshold mechanoreceptive (LTM), wide dynamic range (WDR), nociceptive-specific (NS), deep (D), or skin/mucosa and deep (S + D). The spontaneous activity, mechanoreceptive field (RF) size, mechanical threshold, and response to suprathreshold mechanical stimuli applied to the neuronal RF were assessed prior to and throughout a 40- to 60-min period after MO application to the maxillary molar pulp. In animals pretreated with saline microinjection (0.3 microl) into the Vo, MO application to the pulp produced a significant increase in spontaneous activity, expansion of the pinch or deep RF, decrease in the mechanical threshold, and increase in response to suprathreshold mechanical stimuli of the nociceptive (WDR, NS, and S + D) neurons except for those nociceptive neurons having their RF only in the intraoral region. The pulpal application of MO did not produce any significant neuroplastic changes in LTM neurons. Furthermore, in animals pretreated with MK-801 microinjection (3 microg/0.3 microl) into the Vo, MO application to the pulp did not produce any significant changes in the RF and response properties of nociceptive neurons. In other animals pretreated with saline (0.3 microl) or MK-801 (3 microg/0.3 microl) microinjected into the Vo, mineral oil application to the pulp did not produce any significant changes in RF and response properties of nociceptive neurons. These findings indicate that the application of MO to the tooth pulp can induce significant neuroplastic changes in oralis nociceptive neurons and that central NMDA receptor mechanisms may be involved in these neuroplastic changes.
机译:我们最近证明,将芥末油(MO)(一种小纤维兴奋剂和炎性刺激剂)应用于大鼠上颌磨牙牙髓,可导致下颌肌肌电图(EMG)活性显着增加以及三叉神经(V)亚核的神经塑性变化尾鳍由于口下亚核(Vo)和尾核均从臼齿臼齿传入突起,并且也是口面结构传入输入的必不可少的脑干中继,因此我们测试了MO对裸露髓核的施加是否会引起口腔神经元的神经塑性变化以及是否进行显微注射。 MK-801是一种非竞争性NMDA拮抗剂,进入Vo后会影响氯醛/尿烷麻醉大鼠的牙髓/ MO诱导的神经塑性变化。 Vo中记录了单个神经元活动,神经元分类为低阈值机械感受器(LTM),宽动态范围(WDR),伤害感受特异性(NS),深层(D)或皮肤/粘膜深层(S + D) 。在将MO应用于上颌磨牙髓之前和之后的40至60分钟内,评估了自发活动,机械感受野(RF)大小,机械阈值以及对施加于神经元RF的阈上机械刺激的反应。在对Vo进行生理盐水微注射(0.3 microl)预处理的动物中,对纸浆的MO施用显着增加了自发活动,收缩或深RF扩张,机械阈值降低以及对超阈值机械刺激的响应增加伤害性(WDR,NS和S + D)神经元,但那些仅在口内区域具有RF的伤害性神经元除外。 MO的牙髓应用未在LTM神经元中产生任何明显的神经增生性改变。此外,在用Vo进行MK-801微注射(3微克/0.3微升)预处理的动物中,对牙髓的MO施用对伤害性神经元的RF和响应特性没有产生任何显着变化。在用微注射到Vo中的生理盐水(0.3微升)或MK-801(3微克/0.3微升)进行预处理的其他动物中,将矿油施加到牙髓并没有产生伤害性神经元的RF和响应特性的任何显着变化。这些发现表明,将MO应用于牙髓可以诱导口腔伤害感受性神经元发生明显的神经塑性改变,并且中央NMDA受体机制可能与这些神经塑性改变有关。

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