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GPR120 suppresses adipose tissue lipolysis and synergizes with GPR40 in antidiabetic efficacy

机译:GPR120抑制脂肪组织的脂解并与GPR40协同发挥抗糖尿病作用

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摘要

GPR40 and GPR120 are fatty acid sensors that play important roles in glucose and energy homeostasis. GPR40 potentiates glucose-dependent insulin secretion and demonstrated in clinical studies robust glucose lowering in type 2 diabetes. GPR120 improves insulin sensitivity in rodents, albeit its mechanism of action is not fully understood. Here, we postulated that the antidiabetic efficacy of GPR40 could be enhanced by coactivating GPR120. A combination of GPR40 and GPR120 agonists in db/db mice, as well as a single molecule with dual agonist activities, achieved superior glycemic control compared with either monotherapy. Compared with a GPR40 selective agonist, the dual agonist improved insulin sensitivity in ob/ob mice measured by hyperinsulinemic-euglycemic clamp, preserved islet morphology, and increased expression of several key lipolytic genes in adipose tissue of Zucker diabetic fatty rats. Novel insights into the mechanism of action for GPR120 were obtained. Selective GPR120 activation suppressed lipolysis in primary white adipocytes, although this effect was attenuated in adipocytes from obese rats and obese rhesus, and sensitized the antilipolytic effect of insulin in rat and rhesus primary adipocytes. In conclusion, GPR120 agonism enhances insulin action in adipose tissue and yields a synergistic efficacy when combined with GPR40 agonism.
机译:GPR40和GPR120是脂肪酸传感器,在葡萄糖和能量稳态中发挥重要作用。 GPR40增强了葡萄糖依赖性胰岛素的分泌,并在临床研究中证明了2型糖尿病患者葡萄糖的强烈降低。 GPR120可提高啮齿动物的胰岛素敏感性,尽管其作用机理尚未完全了解。在这里,我们假设可以通过共激活GPR120来增强GPR40的抗糖尿病功效。与任何一种单一疗法相比,db / db小鼠中GPR40和GPR120激动剂的组合以及具有双重激动剂活性的单个分子可实现出色的血糖控制。与GPR40选择性激动剂相比,双重激动剂可通过高胰岛素-正常血糖钳夹改善ob / ob小鼠的胰岛素敏感性,保持胰岛形态,并增加Zucker糖尿病脂肪大鼠脂肪组织中几个关键脂解基因的表达。获得了有关GPR120作用机理的新颖见解。选择性GPR120激活抑制了原发性白色脂肪细胞的脂解,尽管这种作用在肥胖大鼠和肥胖恒河猴的脂肪细胞中减弱了,并增强了胰岛素对大鼠和恒河原发性脂肪细胞的抗脂解作用。总之,当与GPR40激动剂结合使用时,GPR120激动剂可增强脂肪组织中的胰岛素作用并产生协同功效。

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