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非营养性甜味剂通过人胃泌酸腺肿瘤细胞(HGT-1)中 T1R3 依赖性途径诱导外周血清素分泌。

Noncaloric Sweeteners Induce Peripheral Serotonin Secretion via the T1R3-Dependent Pathway in Human Gastric Parietal Tumor Cells (HGT-1).

机构信息

Department of Physiological Chemistry, Faculty of Chemistry , University of Vienna , Althanstraße 14 , Vienna 1090 , Austria.

Christian Doppler Laboratory for Taste Research, Faculty of Chemistry , University of Vienna , Althanstraße 14 , Vienna 1090 , Austria.

出版信息

J Agric Food Chem. 2018 Jul 11;66(27):7044-7053. doi: 10.1021/acs.jafc.8b02071. Epub 2018 Jun 25.

Abstract

The role of sweet taste in energy intake and satiety regulation is still controversial. Noncaloric artificial sweeteners (NCSs) are thought to help reduce energy intake, although little is known about their impact on the satiating neurotransmitter serotonin (5-HT). In the gastrointestinal (GI) tract, 5-HT regulates gastric acid secretion and gastric motility, both part of the complex network of mechanisms regulating food intake and satiety. This study demonstrated a stimulating impact compared to controls (100%) on 5-HT release in human gastric tumor cells (HGT-1) by the NCSs cyclamate (50 mM, 157% ± 6.3%), acesulfame potassium (Ace K, 50 mM, 197% ± 8.6%), saccharin (50 mM, 147% ± 6.7%), sucralose (50 mM, 194% ± 11%), and neohesperidin dihydrochalcone (NHDC, 1 mM, 201% ± 13%). Although these effects were not associated with the sweet taste intensity of the NCSs tested, involvement of the sweet receptor subunit T1R3 in the NCS-evoked response was demonstrated by mRNA expression of TAS1R3, co-incubation experiments using the T1R3 receptor antagonist lactisole, and a TAS1R3 siRNA knockdown approach. Analysis of the downstream signaling revealed activation of the cAMP/ERK/Ca cascade. Co-treatment experiments with 10 mM glucose enhanced the 5-HT release induced by cyclamate, Ace K, saccharin, and sucralose, thereby supporting the enhancing effect of glucose on a NCS-mediated response. Overall, the results obtained identify NCSs as potent inducers of 5-HT release via T1R3 in human gastric parietal cells in culture and warrant in vivo studies to demonstrate their efficacy.

摘要

甜味在能量摄入和饱腹感调节中的作用仍存在争议。非营养性人工甜味剂(NCS)被认为有助于减少能量摄入,尽管人们对它们对饱腹神经递质 5-羟色胺(5-HT)的影响知之甚少。在胃肠道(GI)中,5-HT 调节胃酸分泌和胃动力,这两者都是调节食物摄入和饱腹感的复杂机制网络的一部分。与对照组(100%)相比,本研究在人类胃肿瘤细胞(HGT-1)中证实了 NCS 环己基氨基磺酸钠(cyclamate,50mM,157%±6.3%)、乙酰磺胺酸钾(Ace K,50mM,197%±8.6%)、糖精(saccharin,50mM,147%±6.7%)、三氯蔗糖(sucralose,50mM,194%±11%)和新橙皮苷二氢查尔酮(NHDC,1mM,201%±13%)对 5-HT 释放有刺激作用。尽管这些作用与所测试的 NCS 的甜味强度无关,但通过 TAS1R3 的 mRNA 表达、使用 T1R3 受体拮抗剂乳噻唑的共孵育实验以及 TAS1R3 siRNA 敲低方法,证明了甜味受体亚基 T1R3 参与了 NCS 引起的反应。对下游信号的分析揭示了 cAMP/ERK/Ca 级联的激活。用 10mM 葡萄糖共同处理实验增强了 cyclamate、Ace K、saccharin 和 sucralose 诱导的 5-HT 释放,从而支持了葡萄糖对 NCS 介导的反应的增强作用。总的来说,这些结果表明 NCS 是通过培养的人胃壁细胞中的 T1R3 强有力地诱导 5-HT 释放的,值得进行体内研究来证明它们的功效。

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