首页> 外文期刊>Anesthesiology >Emulsified isoflurane enhances thermal transient receptor potential vanilloid-1 channel activation-mediated sensoryociceptive blockade by QX-314
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Emulsified isoflurane enhances thermal transient receptor potential vanilloid-1 channel activation-mediated sensoryociceptive blockade by QX-314

机译:乳化异氟烷通过QX-314增强热瞬态受体电位Vanilloid-1通道激活介导的感觉/伤害感受性阻断

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摘要

BACKGROUND:: QX-314 produces nociceptive blockade, facilitated by permeation through transient receptor potential vanilloid-1 (TRPV1) channels. TRPV1 channel can be activated by noxious heat and sensitized by volatile anesthetics. The authors hypothesized that emulsified isoflurane (EI) could enhance thermal TRPV1 channel activation-mediated sensoryociceptive blockade by QX-314. METHODS:: Rats were perineurally injected with QX-314 (Sigma-Aldrich Co. Ltd. Shanghai, China) alone or QX-314 combined with EI, followed by heat exposure on the injection site. The tail-flick and tail-clamping tests were used to assess sensory and nociceptive blockade, respectively; a sciatic nerve block model was used to assess motor and sensory blockade. Effects of EI on thermal activation of TRPV1 channels were evaluated on rat dorsal root ganglia neurons by whole-cell patch-clamp recordings. RESULTS:: Heat exposure enhanced sensoryociceptive blockade by QX-314 in rat tails, but not motor blockade in sciatic nerve block model. QX-314 alone or QX-314 + 42°C produced no nociceptive blockade. QX-314 + 48°C produced 100% nociceptive blockade with duration of 12.5 ± 2.0 h (mean ± SEM). By adding 2% EI, QX-314 + 42°C produced 80% nociceptive blockade with duration of 8.1 ± 1.9 h, which was similar to the effect of QX-314 + 46°C (7.7 ± 1.1 h; P = 0.781). The enhancement of heat on sensoryociceptive blockade of QX-314 was prevented by TRPV1 channel antagonist. The temperature thresholds of TRPV1 channel activation on dorsal root ganglia neurons were significantly reduced by EI. CONCLUSIONS:: Thermal activation of TRPV1 channels enhanced long-lasting sensoryociceptive blockade by QX-314 without affecting motor blockade. The addition of EI reduced temperature thresholds for inducing long-lasting sensoryociceptive blockade due to QX-314.
机译:背景:QX-314产生伤害性阻断作用,通过瞬时受体电位香草酸1(TRPV1)通道的渗透而促进。 TRPV1通道可以被有毒的热量激活,并被挥发性麻醉剂激活。作者假设乳化的异氟烷(EI)可以增强QX-314对TRPV1通道的热激活介导的感觉/伤害感受性阻滞作用。方法:向大鼠的神经周围分别注射QX-314(Sigma-Aldrich Co. Ltd.,上海)或QX-314结合EI,然后在注射部位进行热暴露。甩尾试验和夹尾试验分别用于评估感觉和伤害感受性阻滞。坐骨神经阻滞模型用于评估运动和感觉阻滞。通过全细胞膜片钳记录,评估了EI对大鼠背根神经节神经元TRPV1通道热激活的影响。结果:热暴露增强了QX-314对大鼠尾巴的感觉/伤害感受性阻滞,但在坐骨神经阻滞模型中并未促进运动阻滞。单独使用QX-314或QX-314 + 42°C不会产生伤害性阻断作用。 QX-314 + 48°C产生100%的伤害性阻滞,持续时间为12.5±2.0小时(平均±SEM)。通过添加2%EI,QX-314 + 42°C产生80%的伤害性阻断,持续时间为8.1±1.9 h,这与QX-314 + 46°C的作用相似(7.7±1.1 h; P = 0.781) 。 TRPV1通道拮抗剂阻止了热量对QX-314感官/伤害感受性阻滞的增强。 EI显着降低了背根神经节神经元上TRPV1通道激活的温度阈值。结论:TRPV1通道的热激活增强了QX-314的长期感官/伤害感受性阻滞,而不会影响运动阻滞。 EI降低了温度阈值,以诱导由于QX-314引起的长期感觉/伤害感受性阻滞。

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