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GLP-1 and hunger modulate incentive motivation depending on insulin sensitivity in humans

机译:GLP-1和饥饿调节激励动机取决于人类的胰岛素敏感性

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Objective To regulate food intake, our brain constantly integrates external cues, such as the incentive value of a potential food reward, with internal state signals, such as hunger feelings. Incentive motivation refers to the processes that translate an expected reward into the effort spent to obtain the reward; the magnitude and probability of a reward involved in prompting motivated behaviour are encoded by the dopaminergic (DA) midbrain and its mesoaccumbens DA projections. This type of reward circuity is particularly sensitive to the metabolic state signalled by peripheral mediators, such as insulin or glucagon-like peptide 1 (GLP-1). While in rodents the modulatory effect of metabolic state signals on motivated behaviour is well documented, evidence of state-dependent modulation and the role of incentive motivation underlying overeating in humans is lacking. Methods In a randomised, placebo-controlled, crossover design, 21 lean (body mass index [BMI]??25?kg/m 2 ) and 16 obese (BMI3 30?kg/m 2 ) volunteer participants received either liraglutide as a GLP-1 analogue or placebo on two separate testing days. Incentive motivation was measured using a behavioural task in which participants were required to exert physical effort using a handgrip to win different amounts of food and monetary rewards. Hunger levels were measured using visual analogue scales; insulin, glucose, and systemic insulin resistance as assessed by the homeostasis model assessment of insulin resistance (HOMA-IR) were quantified at baseline. Results In this report, we demonstrate that incentive motivation increases with hunger in lean humans ( F (1,42) ?=?5.31, p =?0.026, β?=?0.19) independently of incentive type (food and non-food reward). This effect of hunger is not evident in obese humans ( F (1,62) ?=?1.93, p =?0.17, β?=??0.12). Motivational drive related to hunger is affected by peripheral insulin sensitivity (two-way interaction, F (1, 35) ?=?6.23, p =?0.017, β?=??0.281). In humans with higher insulin sensitivity, hunger increases motivation, while poorer insulin sensitivity dampens the motivational effect of hunger. The GLP-1 analogue application blunts the interaction effect of hunger on motivation depending on insulin sensitivity (three-way interaction, F (1, 127) ?=?5.11, p =?0.026); no difference in motivated behaviour could be found between humans with normal or impaired insulin sensitivity under GLP-1 administration. Conclusion We report a differential effect of hunger on motivation depending on insulin sensitivity. We further revealed the modulatory role of GLP-1 in adaptive, motivated behaviour in humans and its interaction with peripheral insulin sensitivity and hunger. Our results suggest that GLP-1 might restore dysregulated processes of midbrain DA function and hence motivational behaviour in insulin-resistant humans.
机译:目的来调节食物摄入量,我们的大脑不断整合外部提示,例如潜在的食物奖励的激励价值,内部状态信号,如饥饿感。激励动机是指翻译预期奖励的流程,以获得获得奖励的努力;提示促进动力行为的奖励的幅度和概率由多巴胺能(DA)中脑及其MesoAccumbens DA投影编码。这种类型的奖励循环对由外周介质信号传达的代谢状态特别敏感,例如胰岛素或胰高血糖素样肽1(GLP-1)。虽然在啮齿动物中,代谢状态信号对动机行为的调节作用得到了很好的记录,缺乏​​国家依赖调制的证据和人类在人类中暴饮暴食的潜在激励的作用。方法在随机,安慰剂控制,交叉设计中,21个瘦(体重指数[BMI]αααααααααα,16肥胖(BMI3 30?KG / M 2)志愿者参与者接受了Liraglutide两个单独的测试日GLP-1模拟或安慰剂。使用行为任务来测量激励动机,其中需要参与者使用手工赢得物理努力,以赢得不同数量的食物和货币奖励。使用视觉模拟尺度测量饥饿水平;胰岛素抵抗(HOMA-IR)评估的胰岛素,葡萄糖和全身胰岛素抵抗量在基线下量化。结果在本报告中,我们表明,瘦肉人类饥饿的激励动机增加(F(1,42)?=?5.31,p = 0.026,β?= 0.19),独立于激励类型(食品和非食物奖励)。这种饥饿的这种效果在肥胖人类(F(1,62)?=?1.93,P = 0.17,β?= 0.12)。与饥饿相关的励磁驱动受外围胰岛素敏感性的影响(双向相互作用,F(1,35)?=Δ6.23,p = 0.017,β?= ?? 0.281)。在具有较高胰岛素敏感性的人中,饥饿增加了动机,而胰岛素敏感性较差抑制饥饿的励志作用。 GLP-1模拟施用取决于胰岛素敏感性(三通相互作用,F(1,127)=Δ5.11,p = 0.026);在GLP-1给药下具有正常或受损的胰岛素敏感性之间的人类可以发现动力行为的差异。结论,根据胰岛素敏感性,我们报告了饥饿对动机的差异效果。我们进一步揭示了GLP-1在人类自适应,动机行为的调节作用及其与外周胰岛素敏感性和饥饿的相互作用。我们的研究结果表明,GLP-1可以恢复中脑DA功能的失调方法,从而抵抗胰岛素抗性的动力行为。

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