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Updated: Jan 7, 2026

A Simple and Inexpensive Method for Determining Cold Sensitivity and Adaptation in Mice
Published on: March 17, 2015
Cold- and TRPM8-dependent shaking in mammals and birds
Tudor Selescu1,2, Ramona-Andreea Bivoleanu3, Violeta-Maria Caragea3
1Department of Anatomy, Animal Physiology and Biophysics, Faculty of Biology, University of Bucharest, Bucharest, Romania. tudor.selescu@bio.unibuc.ro.
None:
Removing cold water from wet fur or feathers can help endothermic animals to thermoregulate. The "wet dog shakes" (WDS) behavior has been largely characterized in mammals but to a much lesser extent in birds. Although it is known that TRPM8 is the main molecular transducer of low temperature in mammals, it is not clear if wetness-induced shaking in furred and feathered animals is dependent on TRPM8. Here, we show that a novel TRPM8 agonist induces WDS in rodents, and also in birds, similar to the shaking behavior evoked by water-spraying. Furthermore, the WDS onset depends on TRPM8, as we show in water-sprayed mice. Overall, our results provide multiple evidence for a TRPM8 dependence of WDS behaviors in all tested species. These suggest that a convergent evolution selected similar shaking behaviors to expel water from fur and feathers, with TRPM8 being involved in cold wetness sensing in both mammals and birds.
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