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首页> 外文期刊>Molecular Metabolism >Intestinal bitter taste receptor activation alters hormone secretion and imparts metabolic benefits
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Intestinal bitter taste receptor activation alters hormone secretion and imparts metabolic benefits

机译:肠苦味觉受体激活可改变激素分泌并带来代谢益处

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Objectives Extracts of the hops plant have been shown to reduce weight and insulin resistance in rodents and humans, but elucidation of the mechanisms responsible for these benefits has been hindered by the use of heterogeneous hops-derived mixtures. Because hop extracts are used as flavoring agents for their bitter properties, we hypothesized that bitter taste receptors (Tas2rs) could be mediating their beneficial effects in metabolic disease. Studies have shown that exposure of cultured enteroendocrine cells to bitter tastants can stimulate release of hormones, including glucagon-like peptide 1 (GLP-1). These findings have led to the suggestion that activation of Tas2rs may be of benefit in diabetes, but this tenet has not been tested. Here, we have assessed the ability of a pure derivative of a hops isohumulone with anti-diabetic properties, KDT501, to signal through Tas2rs. We have further used this compound as a tool to systematically assess the impact of bitter taste receptor activation in obesity-diabetes. Methods KDT501 was tested in a panel of bitter taste receptor signaling assays. Diet-induced obese mice (DIO) were dosed orally with KDT501 and acute effects on glucose homeostasis determined. A wide range of metabolic parameters were evaluated in DIO mice chronically treated with KDT501 to establish the full impact of activating gut bitter taste signaling. Results We show that KDT501 signals through Tas2r108, one of 35 mouse Tas2rs. In DIO mice, acute treatment stimulated GLP-1 secretion and enhanced glucose tolerance. Chronic treatment caused weight and fat mass loss, increased energy expenditure, enhanced glucose tolerance and insulin sensitivity, normalized plasma lipids, and induced broad suppression of inflammatory markers. Chronic KDT501 treatment altered enteroendocrine hormone levels and bile acid homeostasis and stimulated sustained GLP-1 release. Combined treatment with a dipeptidyl peptidase IV inhibitor amplified the incretin-based benefits of this pure isohumulone. Conclusions Activation of Tas2r108 in the gut results in a remodeling of enteroendocrine hormone release and bile acid metabolism that ameliorates multiple features of metabolic syndrome. Targeting extraoral bitter taste receptors may be useful in metabolic disease.
机译:目的已证明啤酒花植物的提取物可减轻啮齿动物和人类的体重和胰岛素抵抗,但由于使用了不同种类的啤酒花衍生的混合物,阻碍了阐明这些益处的机理。由于蛇麻草提取物因其苦味而被用作调味剂,因此我们假设苦味受体(Tas2rs)可能介导其在代谢疾病中的有益作用。研究表明,将培养的肠内分泌细胞暴露于苦味剂可以刺激激素释放,包括胰高血糖素样肽1(GLP-1)。这些发现提示Tas2rs的激活可能对糖尿病有益,但尚未对此原则进行测试。在这里,我们评估了具有抗糖尿病特性的啤酒花异hu草酮的纯衍生物KDT501通过Tas2rs发出信号的能力。我们还将该化合物用作系统地评估肥胖糖尿病中苦味受体激活的影响的工具。方法KDT501在一系列苦味受体信号传导测定中进行了测试。饮食诱导的肥胖小鼠(DIO)口服KDT501并确定其对葡萄糖稳态的急性影响。在长期用KDT501治疗的DIO小鼠中评估了广泛的代谢参数,以建立激活肠道苦味信号的全部作用。结果我们显示KDT501通过Tas2r108(35个鼠标Tas2rs之一)发出信号。在DIO小鼠中,急性治疗可刺激GLP-1分泌并增强葡萄糖耐量。慢性治疗导致体重和脂肪减少,能量消耗增加,葡萄糖耐量和胰岛素敏感性增强,血浆脂质正常化,并广泛抑制炎症标志物。长期KDT501治疗改变了肠内分泌激素水平和胆汁酸稳态,并刺激了GLP-1的持续释放。与二肽基肽酶IV抑制剂联合治疗可放大这种纯异hu草酮的肠促胰肽作用。结论Tas2r108在肠道中的激活导致肠内分泌激素释放和胆汁酸代谢的重塑,从而改善了代谢综合征的多种特征。靶向口外苦味受体可能在代谢疾病中有用。

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