Babes Alexandru, Zorzon Daniel, Reid Gordon
Department of Animal Physiology and Biophysics, Faculty of Biology, University of Bucharest, Splaiul Independentei 91-95, Bucharest, Romania.
Eur J Neurosci. 2006 Aug;24(3):691-8. doi: 10.1111/j.1460-9568.2006.04941.x. Epub 2006 Jul 18.
Cold sensing in mammals is heterogeneous and more than one type of receptor molecule is likely to be involved in the transduction process. Most features of innocuous cold receptors have been explained by TRPM8, the cold and menthol receptor, but their fast adaptation to cooling has not yet been reproduced in cellular systems. In this study we have used a newly developed system for applying fast thermal stimuli to dissociated dorsal root ganglia (DRG) neurons from young rats (150-200 g) in primary culture. We describe a novel type of cold-sensitive rat DRG neuron with rapid adaptation to cooling. These cells (4.3% of the total DRG population) do not express either TRPM8 or the other cold-activated TRP channel, TRPA1, and the epithelial sodium channel (ENaC) is not involved in their transduction. Increases in intracellular calcium induced by cooling in rapidly adapting neurons are caused by calcium entry. These neurons express a large and rapidly adapting cold-induced inward current with a time constant of adaptation in the seconds range, and may correspond to the rapidly adapting cold receptors described in vivo.
哺乳动物中的冷觉感知具有异质性,转导过程可能涉及不止一种类型的受体分子。无害冷感受器的大多数特性已由冷觉和薄荷醇受体TRPM8解释,但它们对冷却的快速适应尚未在细胞系统中重现。在本研究中,我们使用了一种新开发的系统,用于对原代培养的幼鼠(150 - 200克)解离的背根神经节(DRG)神经元施加快速热刺激。我们描述了一种新型的对冷敏感的大鼠DRG神经元,它对冷却具有快速适应性。这些细胞(占DRG总数的4.3%)既不表达TRPM8,也不表达另一种冷激活的TRP通道TRPA1,并且上皮钠通道(ENaC)不参与它们的转导。快速适应神经元冷却诱导的细胞内钙增加是由钙内流引起的。这些神经元表达一种大的、快速适应的冷诱导内向电流,适应时间常数在秒范围内,可能对应于体内描述的快速适应冷感受器。