首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Hypoalgesic behaviors of P/Q-type voltage-gated Ca2+ channel mutant mouse, rolling mouse Nagoya.
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Hypoalgesic behaviors of P/Q-type voltage-gated Ca2+ channel mutant mouse, rolling mouse Nagoya.

机译:P / Q型电压门控Ca2 +通道突变小鼠,名古屋滚动小鼠的镇痛行为。

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摘要

Rolling mouse Nagoya (tg(rol)) is a spontaneously occurring P/Q-type voltage-gated Ca2+ channel (VGCC) mutant mouse. A P/Q-type VGCC with the tg(rol) mutation has lower voltage sensitivity of activation, and mice with a homozygous genotype (tg(rol)/tg(rol)) but not with a heterozygous genotype (tg(rol)/+) show impaired motor coordination of the hind limbs. To investigate the roles of P/Q-type VGCC in pain sensing mechanisms, behavioral responses of adult tg(rol) mice to thermal, mechanical and chemical nociceptive stimuli were examined by the plantar, tail-flick, von Frey and formalin tests. The latency of the withdrawal response to thermal stimuli in the plantar or tail-flick tests was significantly longer in tg(rol)/tg(rol) mice than in tg(rol)/+ and wild-type (+/+) mice, and in tg(rol)/+ mice than in +/+ mice. The withdrawal response to mechanical stimuli in the von Frey test was lower in tg(rol)/tg(rol) mice than in +/+ mice. Although the licking time during the first 5 min after the formalin injection was similar among all of the three genotypes, that during 5-60 min was significantly shorter in tg(rol)/tg(rol) mice than in tg(rol)/+ and +/+ mice, and in tg(rol)/+ mice than in +/+ mice. Artificial inflammation induced by injection of complete Freund's adjuvant (CFA) into a hind paw significantly enhanced the withdrawal response recorded in the plantar and von Frey tests regardless of the mouse genotype. The CFA-enhanced response in the tg(rol)/tg(rol) mice was similar to the response in +/+ mice without the CFA injection. These results suggest that tg(rol) mutant mice show hypoalgesic responses caused by a lower sensitivity to nociceptive thermal, mechanical and chemical stimuli. It is concluded that the P/Q-type VGCC has a pro-nociceptive role and that the tg(rol) mutant mouse may be a useful tool to investigate the role of the P/Q-type VGCC in pain sensing mechanisms.
机译:滚动鼠标名古屋(tg(rol))是自发出现的P / Q型电压门控Ca2 +通道(VGCC)突变小鼠。具有tg(rol)突变的AP / Q型VGCC具有较低的激活电压敏感性,并且具有纯合基因型(tg(rol)/ tg(rol))但没有杂合基因型(tg(rol)/ +)的小鼠)显示后肢运动协调受损。为了研究P / Q型VGCC在疼痛感测机制中的作用,通过足底,甩尾,冯·弗雷和福尔马林测试检查了成年tg(rol)小鼠对热,机械和化学伤害性刺激的行为反应。在tg(rol)/ tg(rol)小鼠中,足底或甩尾试验中对热刺激的戒断反应潜伏期明显长于tg(rol)/ +和野生型(+ / +)小鼠,在tg(rol)/ +小鼠中比在+ / +小鼠中高。在von Frey试验中,对tg(rol)/ tg(rol)小鼠的机械刺激退缩反应低于+ / +小鼠。尽管三种基因型在福尔马林注射后最初5分钟内的舔时间相似,但在tg(rol)/ tg(rol)小鼠中5-60分钟内的舔时间明显短于tg(rol)/ +和+ / +小鼠,以及在tg(rol)/ +小鼠中比在+ / +小鼠中高。将完全弗氏佐剂(CFA)注入后爪引起的人工炎症显着增强了足底和von Frey测试中记录的戒断反应,而与小鼠的基因型无关。 tg(rol)/ tg(rol)小鼠中CFA增强的反应类似于未注射CFA的+ / +小鼠中的反应。这些结果表明,tg(rol)突变小鼠表现出痛觉过敏反应,这是由于对伤害性热,机械和化学刺激的敏感性降低所致。结论是,P / Q型VGCC具有伤害感受的作用,而tg(rol)突变小鼠可能是研究P / Q型VGCC在疼痛感测机制中的有用工具。

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