首页> 美国卫生研究院文献>The Journal of Neuroscience >Pharmacological Blockade of the Cold Receptor TRPM8 Attenuates Autonomic and Behavioral Cold Defenses and Decreases Deep Body Temperature
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Pharmacological Blockade of the Cold Receptor TRPM8 Attenuates Autonomic and Behavioral Cold Defenses and Decreases Deep Body Temperature

机译:感冒受体TRPM8的药理学阻断作用减弱了自主性和行为性抗寒性并降低了深层体温

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摘要

We studied N-(2-aminoethyl)-N-(4-(benzyloxy)-3-methoxybenzyl)thiophene-2-carboxamide hydrochloride (M8-B), a selective and potent antagonist of the transient receptor potential melastatin-8 (TRPM8) channel. In vitro, M8-B blocked cold-induced and TRPM8-agonist-induced activation of rat, human, and murine TRPM8 channels, including those on primary sensory neurons. In vivo, M8-B decreased deep body temperature (Tb) in Trpm8+/+ mice and rats, but not in Trpm8−/− mice, thus suggesting an on-target action. Intravenous administration of M8-B was more effective in decreasing Tb in rats than intrathecal or intracerebroventricular administration, indicating a peripheral action. M8-B attenuated cold-induced c-Fos expression in the lateral parabrachial nucleus, thus indicating a site of action within the cutaneous cooling neural pathway to thermoeffectors, presumably on sensory neurons. A low intravenous dose of M8-B did not affect Tb at either a constantly high or a constantly low ambient temperature (Ta), but the same dose readily decreased Tb if rats were kept at a high Ta during the M8-B infusion and transferred to a low Ta immediately thereafter. These data suggest that both a successful delivery of M8-B to the skin (high cutaneous perfusion) and the activation of cutaneous TRPM8 channels (by cold) are required for the hypothermic action of M8-B. At tail-skin temperatures <23°C, the magnitude of the M8-B-induced decrease in Tb was inversely related to skin temperature, thus suggesting that M8-B blocks thermal (cold) activation of TRPM8. M8-B affected all thermoeffectors studied (thermopreferendum, tail-skin vasoconstriction, and brown fat thermogenesis), thus suggesting that TRPM8 is a universal cold receptor in the thermoregulation system.
机译:我们研究了N-(2-氨基乙基)-N-(4-(苄氧基)-3-甲氧基苄基)噻吩-2-羧酰胺盐酸盐(M8-B),一种瞬时受体电位melastatin-8(TRPM8)的选择性强效拮抗剂)频道。在体外,M8-B阻断了大鼠,人类和鼠类TRPM8通道(包括初级感觉神经元上的通道)的冷诱导和TRPM8激动剂诱导的激活。在体内,M8-B会降低Trpm8 + / + 小鼠和大鼠的深体温度(Tb),但不会降低Trpm8 -/-小鼠的深体温度(Tb),因此提示目标动作。与鞘内或脑室内给药相比,静脉内给予M8-B在降低Tb方面更有效,表明具有外周作用。 M8-B减弱了臂外侧臂旁核中冷诱导的c-Fos表达,从而表明了在皮肤冷却神经通路中通往热效应者的作用部位,大概是在感觉神经元上。在持续高或持续低的环境温度(Ta)下,低剂量的M8-B静脉注射不会影响Tb,但是如果在M8-B输注和转移过程中将大鼠保持在高Ta下,则相同剂量的Tb会轻易降低Tb此后立即降至低Ta。这些数据表明,M8-B的低温作用既需要成功地将M8-B传递到皮肤(高皮肤灌注),又需要激活皮肤TRPM8通道(通过冷)。在<23°C的尾巴皮肤温度下,M8-B诱导的Tb降低的幅度与皮肤温度成反比,因此表明M8-B阻止了TRPM8的热(冷)激活。 M8-B影响了所研究的所有热效应物(体膜上皮,尾皮血管收缩和褐色脂肪生热),因此表明TRPM8是温度调节系统中的通用冷受体。

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