作者
Cristiane de Oliveira, Andras Garami, Sonya G Lehto, Eszter Pakai, Valeria Tekus, Krisztina Pohoczky, Beth D Youngblood, Weiya Wang, Michael E Kort, Philip R Kym, Erika Pinter, Narender R Gavva, Andrej A Romanovsky
发表日期
2014/3/26
期刊
Journal of Neuroscience
卷号
34
期号
13
页码范围
4445-4452
出版商
Society for Neuroscience
简介
The rodent transient receptor potential ankyrin-1 (TRPA1) channel has been hypothesized to serve as a temperature sensor for thermoregulation in the cold. We tested this hypothesis by using deletion of the Trpa1 gene in mice and pharmacological blockade of the TRPA1 channel in rats. In both Trpa1−/− and Trpa1+/+ mice, severe cold exposure (8°C) resulted in decreases of skin and deep body temperatures to ∼8°C and 13°C, respectively, both temperatures being below the reported 17°C threshold temperature for TRPA1 activation. Under these conditions, Trpa1−/− mice had the same dynamics of body temperature as Trpa1+/+ mice and showed no weakness in the tail skin vasoconstriction response or thermogenic response to cold. In rats, the effects of pharmacological blockade were studied by using two chemically unrelated TRPA1 antagonists: the highly potent and selective compound A967079, which …
引用总数
201420152016201720182019202020212022202320245185512476711
学术搜索中的文章