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Am J Physiol Regul Integr Comp Physiol 296: R1239-R1247, 2009. First published February 11, 2009; doi:10.1152/ajpregu.90723.2008
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TEMPERATURE AND FEVER

Nonshivering thermogenesis without interscapular brown adipose tissue involvement during conditioned fear in the rat

Andrew Marks,1 Daniel M. L. Vianna,1 and Pascal Carrive

School of Medical Sciences, University of New South Wales, New South Wales, Australia

Submitted 26 August 2008 ; accepted in final form 8 February 2009

As with other forms of psychological stress, conditioned fear causes an increase in body temperature. The mechanisms underlying this stress-induced hyperthermia are not well understood, but previous research suggests that nonshivering thermogenesis might contribute, as it does during cold exposure. The major source of nonshivering thermogenesis in the rat is brown adipose tissue (BAT), and the largest BAT deposit in that species is in the interscapular area just below the skin. BAT is also under sympathetic control via β-adrenoceptors. If BAT contributes to fear-induced hyperthermia, then the interscapular skin should warm up faster than other skin areas, and this response should be suppressed by the β-adrenoceptor antagonist, propranolol. We tested this noninvasively by infrared thermography. In conscious rats, 30 min of contextual fear caused hyperthermia (as indicated by a +1.5°C increase in lumbar back skin temperature) and increased the difference in temperature between interscapular and lumbar back skin (TiScap – TBack) by +1°C. Propranolol (10 mg/kg ip) completely abolished this hyperthermia; however, the TiScap-TBack increase was not reduced. In contrast, exposure to cold air (4°C) induced a +2.7°C increase in TiScap-TBack, which was reduced to +1°C after propranolol. The results show that conditioned fear-induced hyperthermia is of nonshivering origin and mediated by β-adrenoceptors, but interscapular BAT does not contribute to it and does not appear to be activated, either.

stress hyperthermia; thermoregulation; tail skin; freezing; sympathetic responses



Address for reprint requests and other correspondence: D. M. L. Vianna, School of Medical Sciences, Univ. of New South Wales, NSW 2052, Australia (e-mail: dmvianna{at}unsw.edu.au)




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