Sun J R, Ma Y C, Zhao W J, Cai Y P
Department of Physiology, College of Life Sciences, Peking University, Beijing.
Sheng Li Xue Bao. 1996 Oct;48(5):424-30.
In the present work, thermosensitivity and spontaneous firing rate of 86 preoptic neurons in hypothalamic tissue slices from 20 cold acclimated rats (CR, at 5 +/- 1 degrees C for more than 3 weeks) and 127 neurons from 35 warm acclimated rats (WR, at 20 +/- 3 degrees C for the same period) were recorded and compared. The results showed that: (1) The percentage of cold-sensitive neurons in CR were higher than that in WR, the critical temperature and the lowest temperature of the spontaneous firing activity of cold-sensitive neurons in CR were also lower than that in WR. (2) Thermosensitivity and critical temperature of the warm-sensitive neurons in CR were remarkably decreased, and spontaneous firing rate under 37 degrees C was increased. (3) Spontaneous firing rate (37 degrees C) of temperature insensitive neurons in CR were conspicuously increased and the lowest temperature extended downward. These profound changes in response to long-term cold exposure suggested that plasticity of preoptic neurons was involved in the thermoregulation in cold adaptation.
在本研究中,记录并比较了来自20只冷适应大鼠(CR,在5±1℃环境下超过3周)下丘脑组织切片中的86个视前区神经元以及来自35只热适应大鼠(WR,在20±3℃环境下相同时间)的127个神经元的热敏性和自发放电率。结果显示:(1)CR组中冷敏神经元的百分比高于WR组,CR组冷敏神经元自发放电活动的临界温度和最低温度也低于WR组。(2)CR组中温敏神经元的热敏性和临界温度显著降低,37℃以下的自发放电率增加。(3)CR组中温度不敏感神经元的自发放电率(37℃)显著增加,最低温度向下延伸。这些对长期冷暴露的深刻变化表明,视前区神经元的可塑性参与了冷适应中的体温调节。