Yang Yong-lu, Shen Zi-ling, Tang Yu, Wang Nian, Sun Bing
Department of Physiology, Chengdu Medical College, Chengdu 610083, China.
Zhongguo Ying Yong Sheng Li Xue Za Zhi. 2011 Aug;27(3):348-52.
To measure simultaneously the time course for the circadian rhythm of brown adipose tissue(BAT) thermogenesis and core temperature, and analyzing their temporal relationship.
The circadian rhythm of core temperature (Tc), BAT temperature (T(BAT)), axillary temperature (Tax) and motor activity were simultaneously measured by telemetry in adult male Sprague-Dawley rats at an ambient temperature of 22 degrees C during a 12-h light:12-h dark photoperiod (lights on at 06:00 h and lights off at 18:00 h).
(1) T(BAT) was 0.67 degrees C lower than Tc group under the light phase, but it was similar to that Tc during the dark phase. The rate of increase in T(BAT) was higher than corresponding increases in Tc at the start of transition from the light to dark phase, and increase in T(BAT) commenced approximately 8 min before Tc increases. Whereas at the start of transition from the dark to light phase, decrease in T(BAT) commenced approximately 4 min before Tc decreases. (2) The amplitude of the circadian Tax rhythm was similar to that of Tc. During either the light phase or dark phase, Tax was lower than simultaneous measurement of Tc. (3) Increases in behavioral activity commenced before increases in T(BAT) and Tc at the start of transition from the light to dark phase.
BAT thermogenesis contributes to increase in core temperature during the dark phase, indicating that circadian changes of BAT thermogenesis does indeed play significant role in the overall maintenance of the circadian rhythm of core temperature.
同时测量棕色脂肪组织(BAT)产热和核心体温的昼夜节律的时间进程,并分析它们的时间关系。
在12小时光照:12小时黑暗的光周期(06:00开灯,18:00关灯)、环境温度22摄氏度的条件下,通过遥测技术同时测量成年雄性Sprague-Dawley大鼠的核心体温(Tc)、BAT温度(T(BAT))、腋窝温度(Tax)和运动活动的昼夜节律。
(1)在光照阶段,T(BAT)比Tc组低0.67摄氏度,但在黑暗阶段与Tc相似。从光照阶段过渡到黑暗阶段开始时,T(BAT)的上升速率高于Tc的相应上升速率,T(BAT)的上升在Tc上升前约8分钟开始。而从黑暗阶段过渡到光照阶段开始时,T(BAT)的下降在Tc下降前约4分钟开始。(2)Tax的昼夜节律幅度与Tc相似。在光照阶段或黑暗阶段,Tax均低于同时测量的Tc。(3)从光照阶段过渡到黑暗阶段开始时,行为活动的增加在T(BAT)和Tc增加之前开始。
BAT产热有助于黑暗阶段核心体温的升高,表明BAT产热的昼夜变化确实在核心体温昼夜节律的整体维持中起重要作用。