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首页> 外文期刊>Journal of Neurophysiology >Alteration of the mu opioid receptor: Ca2+ channel signaling pathway in a subset of rat sensory neurons following chronic femoral artery occlusion
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Alteration of the mu opioid receptor: Ca2+ channel signaling pathway in a subset of rat sensory neurons following chronic femoral artery occlusion

机译:慢性股动脉闭塞后大鼠感官神经元副中的Mu阿片受体的改变:Ca2 +信道信号通路

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The exercise pressor reflex, a crucial component of the cardiovascular response under physiological and pathophysiological states, is activated via metabolic and mechanical mediators that originate from contracting muscles and stimulate group III and IV afferents. We reported previously that stimulation of mu opioid receptors (MOR), expressed in both afferents, led to a significant attenuation of the reflex in rats whose femoral arteries had been occluded for 72 h. The present study examined the effect of arterial occlusion on the signaling components involved in the opioid-mediated modulation of Ca2+ channels in rat dorsal root ganglion neurons innervating the triceps surae muscles. We focused on neurons that were transfected with cDNA coding for enhanced green fluorescent protein whose expression is driven by the voltage-gated Na+ channel 1.8 (NaV1.8) promoter region, a channel expressed primarily in nociceptive neurons. With the use of a small interference RNA approach, our results show that the pertussis toxin-sensitive Gai3 subunit couples MOR with Ca2+ channels. We observed a significant leftward shift of the MOR agonist [D-Ala2-N-Me-Phe4-Glycol5]-enkephalin concentration-response relationship in neurons isolated from rats with occluded arteries compared with those that were perfused freely. Femoral occlusion did not affect Ca2+ channel density or the fraction of the main Ca2+ channel subtype. Furthermore, Western blotting analysis indicated that the leftward shift did not result from either increased Gai3 or MOR expression. Finally, all neurons from both groups exhibited an inward current following exposure of the transient potential receptor vanilloid 1 (TRPV1) agonist, 8-methyl-N-vanillyl-6-nonenamide. These findings suggest that sensory neurons mediating the exercise pressor reflex express NaV1.8 and TRPV1 channels, and femoral occlusion alters the MOR pharmacological profile.
机译:运动压力机反射是生理和病理生理态在生理和病理生理状态下心血管反应的关键组分,通过代谢和机械介质来激活,所述代谢和机械介质起源于肌肉和刺激III组和IV族。我们以前报道,在整交内表达的MU阿片受体(MOR)的刺激导致对股票动脉堵塞72小时的大鼠反射的显着衰减。本研究检测了动脉闭塞对参与在大鼠背根神经节神经元的阿片类+通道的Ca2 +通道调节中所涉及的信号组分的影响。我们专注于用CDNA转染的神经元,所述cDNA编码用于增强的绿色荧光蛋白,其表达由电压门控Na +通道1.8(Nav1.8)启动子区域驱动,主要在伤害性神经元中表达的通道。通过使用小的干扰RNA方法,我们的结果表明,百日咳毒素敏感的GAI3亚基与CA2 +通道耦合。我们观察到MOR激动剂[D-ALA2-N-ME-PHE4-甘油5]的显着左移偏移 - 与自由灌注的那些与闭塞动脉的大鼠分离的神经元中的Neuron浓度 - 反应关系。股骨闭塞不影响Ca2 +通道密度或主要Ca2 +通道亚型的级分。此外,Western印迹分析表明,从GAI3或MOR表达增加,左移不会导致。最后,两组的所有神经元在暴露于瞬态电位受体香草素1(TRPV1)激动剂,8-甲基-N- vanilyl-6-壬酰胺后发出内向电流。这些发现表明,调解运动压力机的感官神经元介于锻炼压力反射EXPRESS NAV1.8和TRPV1通道,股骨闭塞改变了MOR Pharmacology型材。

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