Tupone Domenico, Madden Christopher J, Morrison Shaun F
Department of Neurological Surgery, Oregon Health and Science University Portland, OR, USA.
Front Neurosci. 2014 Feb 7;8:14. doi: 10.3389/fnins.2014.00014. eCollection 2014.
From mouse to man, brown adipose tissue (BAT) is a significant source of thermogenesis contributing to the maintenance of the body temperature homeostasis during the challenge of low environmental temperature. In rodents, BAT thermogenesis also contributes to the febrile increase in core temperature during the immune response. BAT sympathetic nerve activity controlling BAT thermogenesis is regulated by CNS neural networks which respond reflexively to thermal afferent signals from cutaneous and body core thermoreceptors, as well as to alterations in the discharge of central neurons with intrinsic thermosensitivity. Superimposed on the core thermoregulatory circuit for the activation of BAT thermogenesis, is the permissive, modulatory influence of central neural networks controlling metabolic aspects of energy homeostasis. The recent confirmation of the presence of BAT in human and its function as an energy consuming organ have stimulated interest in the potential for the pharmacological activation of BAT to reduce adiposity in the obese. In contrast, the inhibition of BAT thermogenesis could facilitate the induction of therapeutic hypothermia for fever reduction or to improve outcomes in stroke or cardiac ischemia by reducing infarct size through a lowering of metabolic oxygen demand. This review summarizes the central circuits for the autonomic control of BAT thermogenesis and highlights the potential clinical relevance of the pharmacological inhibition or activation of BAT thermogenesis.
从小鼠到人类,棕色脂肪组织(BAT)是产热的重要来源,在环境温度较低时有助于维持体温稳态。在啮齿动物中,BAT产热也有助于免疫反应期间核心体温的发热性升高。控制BAT产热的BAT交感神经活动受中枢神经系统神经网络调节,该网络对来自皮肤和身体核心温度感受器的热传入信号以及对具有内在热敏性的中枢神经元放电变化作出反射性反应。叠加在激活BAT产热的核心体温调节回路上的是控制能量稳态代谢方面的中枢神经网络的允许性、调节性影响。最近在人类中证实了BAT的存在及其作为耗能器官的功能,这激发了人们对通过药物激活BAT以减少肥胖者肥胖的潜力的兴趣。相比之下,抑制BAT产热可通过降低代谢需氧量来减小梗死面积,从而促进诱导治疗性低温以降低发热或改善中风或心脏缺血的预后。本综述总结了BAT产热自主控制的中枢回路,并强调了药物抑制或激活BAT产热的潜在临床相关性。