Yuan Jun-Hua, Chen Xi, Dong Jing, Zhang Di, Song Kun, Zhang Yue, Wu Guang-Bo, Hu Xi-Hao, Jiang Zheng-Yao, Chen Peng
Special Medicine Department, Medical College, Qingdao UniversityQingdao, China.
Physiology Department, Medical College, Qingdao UniversityQingdao, China.
Front Physiol. 2017 Apr 24;8:235. doi: 10.3389/fphys.2017.00235. eCollection 2017.
Nesfatin-1, an 82-amino acid neuropeptide, has been shown to induce anorexia and energy expenditure. Food intake is decreased in -fed rats following injections of nesfatin-1 into the lateral, third, or fourth ventricles of the brain. Although the lateral parabrachial nucleus (LPBN) is a key regulator of feeding behavior and thermogenesis, the role of nesfatin-1 in this structure has not yet been delineated. We found that intra-LPBN microinjections of nesfatin-1 significantly reduced nocturnal cumulative food intake and average meal sizes without affecting meal numbers in rats. Because glucose sensitive neurons are involved in glucoprivic feeding and glucose homeostasis, we examined the effect of nesfatin-1 on the excitability of LPBN glucosensing neurons. electrophysiological recordings from LPBN glucose sensitive neurons showed that nesfatin-1 (1.5 × 10 M) excited most of the glucose-inhibited neurons. Chronic administration of nesfatin-1 into the LPBN of rats reduced body weight gain and enhanced the expression of uncoupling protein 1 (UCP1) in brown adipose tissue (BAT) over a 10-day period. Furthermore, the effects of nesfatin-1 on food intake, body weight, and BAT were attenuated by treatment with the melanocortin antagonist SHU9119. These results demonstrate that nesfatin-1 in LPBN inhibited food intake, modulated excitability of glucosensing neurons and enhanced UCP1 expression in BAT via the melanocortin system.
Nesfatin-1是一种由82个氨基酸组成的神经肽,已被证明可诱导厌食和能量消耗。向大鼠脑的外侧、第三或第四脑室注射nesfatin-1后,饱食大鼠的食物摄入量会减少。尽管外侧臂旁核(LPBN)是进食行为和产热的关键调节因子,但nesfatin-1在该结构中的作用尚未明确。我们发现,向大鼠LPBN内微量注射nesfatin-1可显著降低夜间累积食物摄入量和平均餐量,而不影响进餐次数。由于葡萄糖敏感神经元参与了糖缺乏性进食和葡萄糖稳态,我们研究了nesfatin-1对LPBN葡萄糖敏感神经元兴奋性的影响。对LPBN葡萄糖敏感神经元的电生理记录显示,nesfatin-1(1.5×10⁻⁶M)使大多数葡萄糖抑制性神经元兴奋。在10天的时间里,向大鼠LPBN慢性注射nesfatin-1可降低体重增加,并增强棕色脂肪组织(BAT)中解偶联蛋白1(UCP1)的表达。此外,用促黑素拮抗剂SHU9119处理可减弱nesfatin-1对食物摄入、体重和BAT的影响。这些结果表明,LPBN中的nesfatin-1通过促黑素系统抑制食物摄入、调节葡萄糖敏感神经元的兴奋性并增强BAT中UCP1的表达。