Ishii Hisayoshi, Niioka Takeharu, Watanabe Hidekazu, Izumi Hiroshi
Department of Oral Physiology, Health Sciences University of Hokkaido, 1757 Kanazawa, Ishikari-Tobetsu, Hokkaido 061-0293, Japan.
Am J Physiol Regul Integr Comp Physiol. 2007 Aug;293(2):R729-36. doi: 10.1152/ajpregu.00866.2006. Epub 2007 May 30.
The present study was designed to examine the effect of sympathetic tonic activity on parasympathetic vasodilation evoked by the trigeminal-mediated reflex in the masseter muscle in urethane-anesthetized rats. Sectioning of the superior cervical sympathetic trunk (CST) ipsilaterally increased the basal level of blood flow in the masseter muscle (MBF). Electrical stimulation of the peripheral cut end of the CST for 2 min using 2-ms pulses ipsilaterally decreased in a dependent manner the intensity (0.5-10 V) and frequency (0.1-5 Hz) of the MBF. The CST stimulation for 2 min at <0.5 Hz with 5 V using 2-ms pulses seems to be comparable with the spontaneous activity in the CST fibers innervating the masseter vasculature, because this stimulation restored the basal level of the MBF to the presectioned values. Parasympathetic vasodilation evoked by electrical stimulation of the central cut end of the lingual nerve in the masseter muscle was markedly reduced by CST stimulation for 2 min with 5 V using 2-ms pulses in a frequency-dependent manner (0.5-5 Hz). Intravenous administration of phentolamine significantly reduced the vasoconstriction induced by CST stimulation in a dose-dependent manner (0.1-1 mg/kg), but pretreatment with either phentolamine or propranolol failed to affect the sympathetic inhibition of the parasympathetic vasodilation. Our results suggest that 1) excess sympathetic activity inhibits parasympathetic vasodilation in the masseter muscle, and 2) alpha- and beta-adrenoceptors do not contribute to sympathetic inhibition of parasympathetic vasodilation, and thus some other types of receptors must be involved in this response.
本研究旨在探讨交感神经紧张性活动对在氨基甲酸乙酯麻醉大鼠咬肌中由三叉神经介导的反射所诱发的副交感神经血管舒张的影响。同侧切断颈上交感干(CST)可增加咬肌血流量(MBF)的基础水平。使用2毫秒脉冲对同侧CST外周切断端进行2分钟的电刺激,以依赖的方式降低了MBF的强度(0.5 - 10伏)和频率(0.1 - 5赫兹)。使用2毫秒脉冲以5伏在<0.5赫兹下对CST进行2分钟的刺激似乎与支配咬肌血管的CST纤维中的自发活动相当,因为这种刺激将MBF的基础水平恢复到切断前的值。在咬肌中,使用2毫秒脉冲以5伏在0.5 - 5赫兹频率下对CST进行2分钟的刺激,可显著降低由舌神经中枢切断端电刺激所诱发的副交感神经血管舒张,且呈频率依赖性。静脉注射酚妥拉明以剂量依赖性方式(0.1 - 1毫克/千克)显著降低了CST刺激所诱导的血管收缩,但用酚妥拉明或普萘洛尔预处理均未能影响交感神经对副交感神经血管舒张的抑制作用。我们的结果表明:1)过度的交感神经活动抑制咬肌中的副交感神经血管舒张;2)α和β肾上腺素能受体不参与交感神经对副交感神经血管舒张的抑制作用,因此这种反应必定涉及其他类型的受体。