Fan Wei, Morrison Shaun F, Cao Wei-Hua, Yu Pinxuan
Center for the Study of Weight Regulation and Associated Disorders, Vollum Institute, Oregon Health and Science University Portland, OR 97239-3098, USA.
Brain Res. 2007 Nov 7;1179:61-9. doi: 10.1016/j.brainres.2007.04.006. Epub 2007 Apr 6.
The central melanocortin system plays a critical role in regulation of energy balance, including thermogenesis in brown adipose tissue (BAT). Activation of the hypothalamic melanocortin signaling stimulates sympathetically-mediated interscapular BAT (IBAT) thermogenesis. The rostral raphe pallidus (rRPa) and adjacent area have been proposed as the location of sympathetic premotor neurons for the central nervous system (CNS) control of IBAT thermogenesis. To determine if neuronal activity in rRPa area is required for the central melanocortin-induced thermogenesis, we studied the effects of inhibition of the activity of neurons in the rRPa area on the sympathetic nerve activity (SNA) to IBAT evoked by lateral ventricular injection of the melanocortin 3/4 receptor (MC3/4R) agonist, MTII, in urethane-chloralose-anesthetized rats and the effects on O(2) consumption induced by third or fourth ventricular injection of MTII in conscious freely moving mice. Icv injection of MTII (1 nmol) significantly increased rat IBAT SNA (+741% of control). Both third and fourth ventricular injections of MTII (1 nmol) significantly increased O(2) consumption in conscious C57BL/6J mice (45% higher than that of saline control for third ventricular injection and 44% higher than that of saline control for fourth ventricular injection). The increases in IBAT SNA and in O(2) consumption were reversed by inhibition of neurons in the rRPa and adjacent area with microinjections of glycine or muscimol into rRPa. These results suggest that the neurons in the RPa and its immediate vicinity play an essential role in mediating the increase in IBAT thermogenesis induced by activation of central melanocortin signaling.
中枢黑皮质素系统在能量平衡调节中发挥关键作用,包括棕色脂肪组织(BAT)的产热作用。下丘脑黑皮质素信号的激活刺激交感神经介导的肩胛间BAT(IBAT)产热。延髓头端中缝苍白核(rRPa)及相邻区域被认为是中枢神经系统(CNS)控制IBAT产热的交感神经运动前神经元的所在位置。为了确定rRPa区域的神经元活动是否是中枢黑皮质素诱导产热所必需的,我们研究了抑制rRPa区域神经元活动对侧脑室注射黑皮质素3/4受体(MC3/4R)激动剂MTII诱发的IBAT交感神经活动(SNA)的影响,以及对清醒自由活动小鼠第三或第四脑室注射MTII诱导的氧气消耗的影响。脑室内注射MTII(1 nmol)显著增加大鼠IBAT的SNA(比对照组增加741%)。第三和第四脑室注射MTII(1 nmol)均显著增加清醒C57BL/6J小鼠的氧气消耗(第三脑室注射比生理盐水对照组高45%,第四脑室注射比生理盐水对照组高44%)。通过向rRPa微量注射甘氨酸或蝇蕈醇抑制rRPa及相邻区域的神经元,可逆转IBAT SNA和氧气消耗的增加。这些结果表明,RPa及其紧邻区域的神经元在介导中枢黑皮质素信号激活诱导的IBAT产热增加中起重要作用。