Nakamura Kazuhiro, Morrison Shaun F
Neurological Sciences Institute, Oregon Health & Science University, Beaverton, OR 97006, USA.
Nat Neurosci. 2008 Jan;11(1):62-71. doi: 10.1038/nn2027. Epub 2007 Dec 16.
Defending body temperature against environmental thermal challenges is one of the most fundamental homeostatic functions that are governed by the nervous system. Here we describe a somatosensory pathway that essentially constitutes the afferent arm of the thermoregulatory reflex that is triggered by cutaneous sensation of environmental temperature changes. Using in vivo electrophysiological and anatomical approaches in the rat, we found that lateral parabrachial neurons are pivotal in this pathway by glutamatergically transmitting cutaneous thermosensory signals received from spinal somatosensory neurons directly to the thermoregulatory command center, the preoptic area. This feedforward pathway mediates not only sympathetic and shivering thermogenic responses but also metabolic and cardiac responses to skin cooling challenges. Notably, this 'thermoregulatory afferent' pathway exists in parallel with the spinothalamocortical somatosensory pathway that mediates temperature perception. These findings make an important contribution to our understanding of both the somatosensory system and thermal homeostasis -- two mechanisms that are fundamental to the nervous system and to our survival.
抵御环境热挑战以维持体温是神经系统控制的最基本的稳态功能之一。在此,我们描述了一条体感通路,它本质上构成了由环境温度变化的皮肤感觉触发的体温调节反射的传入臂。通过在大鼠体内使用电生理和解剖学方法,我们发现外侧臂旁核神经元在该通路中起关键作用,它们通过谷氨酸能将从脊髓体感神经元接收的皮肤热感觉信号直接传递到体温调节指令中心——视前区。这条前馈通路不仅介导交感神经和寒战产热反应,还介导对皮肤冷却挑战的代谢和心脏反应。值得注意的是,这条“体温调节传入”通路与介导温度感知的脊髓丘脑皮质体感通路并行存在。这些发现为我们理解体感系统和热稳态做出了重要贡献,这两种机制对神经系统和我们的生存至关重要。