首页> 外文期刊>The journal of pain: official journal of the American Pain Society >Increased phosphorylation of extracellular signal-regulated kinase in trigeminal nociceptive neurons following propofol administration in rats.
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Increased phosphorylation of extracellular signal-regulated kinase in trigeminal nociceptive neurons following propofol administration in rats.

机译:在大鼠中施用异丙酚后,三叉神经痛感受神经元中细胞外信号调节激酶的磷酸化增加。

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Although propofol (PRO) is widely used in clinic as a hypnotic agent, the underlying mechanisms of its action on pain pathways is still unknown. Sprague-Dawley rats were assigned to receive PRO or pentobarbital (PEN) and were divided into 2 groups as LIGHT and DEEP hypnotic levels based on the EEG analysis. Rats in each hypnotic level received capsaicin injection into the face and phosphorylated extracellular signal-regulated kinase (pERK) immunohistochemistry was performed in subnucleus caudalis (Vc) and upper cervical spinal cord. In the rats with PEN or PRO administration, a large number of pERK-like immunoreactive (LI) cells was observed in the trigeminal spinal subnuclei interpolaris and caudalis transition zone (Vi/Vc), middle Vc, and transition zone between Vc and upper cervical spinal cord (Vc/C2) following capsaicin injection into the whisker-pad region. The number of pERK-LI cells in Vi/Vc, middle Vc, and Vc/C2 was significantly larger in rats with PRO infusion than those with PEN infusion. The number of pERK-LI cells was increased following an increase in the dose of PRO but not in PEN. The pERK-LI cells were mainly distributed in the Vi/Vc, middle Vc, and Vc/C2 after the bolus infusion of PRO. The expression of pERK-LI cells was depressed after the intravenous lidocaine application before bolus PRO infusion. The present findings suggest that PRO induced an enhancement of the activity of trigeminal nociceptive pathways through nociceptors innervating the venous structure, as indicated by a lidocaine-sensitive increase in pERK. This may explain deep pain around the injection regions during intravenous bolus infusion of PRO. PERSPECTIVE: The effect of propofol administration on ERK phosphorylation in the subregions of the spinal trigeminal complex and upper cervical spinal cord neurons were precisely analyzed in rats with PRO infusion. A large number of pERK-LI cells was observed following intravenous PRO administration, suggesting an enhancement of trigeminal nociceptive activity and that PRO may produce pain through nociceptors innervating the venous structures during infusion.
机译:尽管丙泊酚(PRO)在临床上广泛用作催眠药,但其对疼痛途径起作用的潜在机制仍然未知。将Sprague-Dawley大鼠指定接受PRO或戊巴比妥(PEN),并根据EEG分析将其分为LIGHT和DEEP催眠水平两组。在每个催眠水平的大鼠中,将辣椒素注射入面部,并在尾部亚核(Vc)和上颈脊髓中进行磷酸化的细胞外信号调节激酶(pERK)免疫组化。在使用PEN或PRO的大鼠中,在三叉神经脊髓亚核间和尾and过渡区(Vi / Vc),中Vc和Vc与上颈椎之间的过渡区中观察到大量pERK样免疫反应(LI)细胞辣椒素注射到晶须垫区域后的脊髓(Vc / C2)。 PRO输注大鼠的Vi / Vc,中间Vc和Vc / C2中pERK-LI细胞的数量明显大于PEN输注的大鼠。 pERK-LI细胞的数量随着PRO剂量的增加而增加,但PEN却没有。在推注PRO后,pERK-LI细胞主要分布在Vi / Vc,中间Vc和Vc / C2中。在推注PRO输注之前,静脉内施用利多卡因后,pERK-LI细胞的表达降低。目前的发现表明,PRO通过诱导神经结构的伤害感受器诱导了三叉伤害感受途径的活性增强,如pERK的利多卡因敏感性增加所表明。这可以解释静脉推注PRO期间注射区域周围的深痛。观点:在PRO输注的大鼠中,精确分析了异丙酚对脊髓三叉神经复合体和上颈脊髓神经元亚区域ERK磷酸化的影响。静脉内PRO给药后观察到大量pERK-LI细胞,提示三叉神经痛活性增强,并且PRO可能通过在输注过程中神经支配静脉结构的伤害感受器而产生疼痛。

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