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TRPM8 is a neuronal osmosensor that regulates eye blinking in mice

机译:TRPM8是一种神经元渗透传感器,可调节小鼠的眨眼

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Specific peripheral sensory neurons respond to increases in extracellular osmolality but the mechanism responsible for excitation is unknown. Here we show that small increases in osmolality excite isolated mouse dorsal root ganglion (DRG) and trigeminal ganglion (TG) neurons expressing the cold-sensitive TRPM8 channel (transient receptor potential channel, subfamily M, member 8). Hyperosmotic responses were abolished by TRPM8 antagonists, and were absent in DRG and TG neurons isolated from Trpm8(-/-) mice. Heterologously expressed TRPM8 was activated by increased osmolality around physiological levels and inhibited by reduced osmolality. Electrophysiological studies in a mouse corneal preparation demonstrated that osmolality regulated the electrical activity of TRPM8-expressing corneal afferent neurons. Finally, the frequency of eye blinks was reduced in Trpm8(-/-) compared with wild-type mice and topical administration of a TRPM8 antagonist reduced blinking in wild-type mice. Our findings identify TRPM8 as a peripheral osmosensor responsible for the regulation of normal eye-blinking in mice.
机译:特定的周围感觉神经元对细胞外渗透压的增加作出反应,但引起兴奋的机制尚不清楚。在这里,我们显示渗透压的小幅增加激发了表达冷敏感的TRPM8通道(瞬态受体电位通道,亚家族M,成员8)的分离的小鼠背根神经节(DRG)和三叉神经节(TG)神经元。高渗反应被TRPM8拮抗剂所取消,而从Trpm8(-/-)小鼠分离的DRG和TG神经元中则不存在。异源表达的TRPM8通过在生理水平附近增加的重量摩尔渗透压浓度而被激活,并被降低的重量摩尔渗透压浓度抑制。小鼠角膜制剂的电生理研究表明,重量摩尔渗透压浓度调节表达TRPM8的角膜传入神经元的电活动。最后,与野生型小鼠相比,在Trpm8(-/-)中眨眼的频率降低了,而局部施用TRPM8拮抗剂可以减少野生型小鼠的眨眼。我们的发现将TRPM8识别为负责调节小鼠正常眨眼的外周渗透传感器。

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