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Novel GPR120 agonist TUG891 modulates fat taste perception and preference and activates tongue-brain-gut axis in mice

机译:新型GPR120激动剂Tug891调节脂肪味觉和偏好并在小鼠中激活舌脑 - 肠道轴

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摘要

GPR120 is implicated as a lipid receptor in the oro-sensory detection of dietary fatty acids. However, the effects of GPR120 activation on dietary fat intake or obesity are not clearly understood. We investigated to determine whether the binding of TUG891, a novel GPR120 agonist, to lingual GPR120 modulates fat preference in mice. We explored the effects of TUG891 on obesity-related hormones and conducted behavioral choice tests on mice to better understand the physiologic relevance of the action of TUG891. In cultured mouse and human taste bud cells (TBCs), TUG891 induced a rapid increase in Ca2+ by acting on GPR120. A long-chain dietary fatty acid, linoleic acid (LA), also recruited Ca2+ via GPR120 in human and mouse TBCs. Both TUG891 and LA induced ERK1/2 phosphorylation and enhanced in vitro release of glucagon-like peptide-1 from cultured human and mouse TBCs. In situ application of TUG891 onto the tongue of anesthetized mice triggered the secretion of pancreatobiliary juice, probably via the tongue-brain-gut axis. Furthermore, lingual application of TUG891 altered circulating concentrations of cholecystokinin and adipokines, associated with decreased circulating LDL, in conscious mice. In behavioral tests, mice exhibited a spontaneous preference for solutions containing either TUG891 or LA instead of a control. However, addition of TUG891 to a solution containing LA significantly curtailed fatty acid preference. Our study demonstrates that TUG891 binds to lingual GPR120 receptors, activates the tongue-brain-gut axis, and modulates fat preference. These findings may support the development of new fat taste analogs that can change the approach to obesity prevention and treatment.
机译:GPR120在膳食脂肪酸的oro-Sensory检测中涉及脂质受体。然而,GPR120活化对膳食脂肪摄入或肥胖的影响不会清楚地理解。我们研究了确定Tug891的结合,一种新的GPR120激动剂,对语言GPR120调节小鼠的脂肪偏好。我们探讨了Tug891对肥胖相关激素的影响,并对小鼠进行了行为选择试验,以更好地了解Tug891的作用的生理相关性。在培养的小鼠和人味蕾细胞(TBC)中,Tug891通过在GPR120上作用诱导Ca2 +的快速增加。长链膳食脂肪酸,亚油酸(LA),也通过人和小鼠TBC的GPR120募集CA2 +。 Tug891和LA诱导ERK1 / 2磷酸化,增强了来自培养的人和小鼠TBC的胰高血糖素样肽-1的体外释放。原位将Tug891应用于麻醉小鼠的舌头引发了粉鸟汁的分泌,可能通过舌脑 - 齿轴。此外,Tug891的语言应用改变了有意识的小鼠的循环LDL循环浓度的胆囊蛋白和脂肪因子的循环浓度。在行为试验中,小鼠表现出含有Tug891或La而不是对照的溶液的自发偏好。然而,将Tug891添加到含有La的溶液中显着缩小脂肪酸偏好。我们的研究表明,Tug891与语言GPR120受体结合,激活舌脑 - 齿轴,并调节脂肪偏好。这些发现可能支持开发新的脂肪味的类似物,可以改变肥胖预防和治疗方法。

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