Tajino Koji, Matsumura Kiyoshi, Kosada Kaori, Shibakusa Tetsuro, Inoue Kazuo, Fushiki Tohru, Hosokawa Hiroshi, Kobayashi Shigeo
Dept. of Intelligence Science and Technology, Graduate School of Informatics, Kyoto University, Kyoto, Japan 606-8501.
Am J Physiol Regul Integr Comp Physiol. 2007 Nov;293(5):R2128-35. doi: 10.1152/ajpregu.00377.2007. Epub 2007 Aug 29.
When ambient temperature is decreased in mammals, autonomic and behavioral heat-gain responses occur to maintain their core temperatures. However, what molecules in cutaneous sensory nerve endings mediate cooling-induced responses is unclear. Recently, transient receptor potential melastatin-8 (TRPM8) has been identified in cell bodies of sensory neurons as low-temperature and menthol-activated cation channel. We hypothesized that TRPM8 mediates cooling-induced autonomic and behavioral heat-gain responses. To activate TRPM8 specifically, we applied 1-10% menthol to the skin of whole trunk in mice instead of cooling and measured core temperatures and autonomic and behavioral heat-gain responses. Solvent of menthol (100% ethanol) was used as control. Significant elevation of core temperatures was observed between 20 and 120 min after menthol application. Pretreatment with diclofenac sodium, an antipyretic drug, did not affect this hyperthermia, indicating that the menthol-induced hyperthermia is not fever. Menthol application induced a rise in oxygen consumption, shivering-like muscle activity, tail skin vasoconstriction (autonomic responses), and heat-seeking behavior. All of them are typical heat-gain responses. These results support the hypothesis that TRPM8 mediates cooling-induced autonomic and behavioral heat-gain responses.
当哺乳动物所处环境温度降低时,自主神经系统和行为性的产热反应会发生,以维持其核心体温。然而,皮肤感觉神经末梢中的哪些分子介导冷却诱导的反应尚不清楚。最近,瞬时受体电位香草酸亚型8(TRPM8)已在感觉神经元的细胞体中被鉴定为低温和薄荷醇激活的阳离子通道。我们假设TRPM8介导冷却诱导的自主神经系统和行为性产热反应。为了特异性激活TRPM8,我们用1 - 10%的薄荷醇涂抹小鼠整个躯干的皮肤而非进行冷却处理,并测量核心体温以及自主神经系统和行为性产热反应。薄荷醇的溶剂(100%乙醇)用作对照。在涂抹薄荷醇后20至120分钟之间观察到核心体温显著升高。用解热药物双氯芬酸钠预处理并不影响这种体温过高,这表明薄荷醇诱导的体温过高不是发热。涂抹薄荷醇会引起耗氧量增加、类似颤抖的肌肉活动、尾部皮肤血管收缩(自主神经反应)以及寻找温暖的行为。所有这些都是典型的产热反应。这些结果支持了TRPM8介导冷却诱导的自主神经系统和行为性产热反应这一假设。