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非营养性甜味剂会引发下丘脑内质网应激,导致轴突异常生长。

Non-nutritive Sweeteners Induce Hypothalamic ER Stress Causing Abnormal Axon Outgrowth.

作者信息

Park Soyoung, Sethi Sunjay, Bouret Sebastien G

机构信息

Development Neuroscience Program, Children's Hospital Los Angeles, Los Angeles, CA, United States.

INSERM, Laboratory of Development and Plasticity of the Neuroendocrine Brain, Jean-Pierre Aubert Research Centre, UMR-S 1172, Lille, France.

出版信息

Front Endocrinol (Lausanne). 2019 Dec 17;10:876. doi: 10.3389/fendo.2019.00876. eCollection 2019.

Abstract

With the prevalence of obesity, non-nutritive sweeteners (NNS) have been widely used as sugar substitutes as they deliver a sweet taste without excessive caloric load. However, it is increasingly recognized that NNS are not inert compounds and may cause long-term metabolic perturbations. Endoplasmic reticulum (ER) stress has emerged as a critical link in the development of obesity and type 2 diabetes. In this study, we investigated the effects of NNS found in common diet beverages (i.e., sucralose, aspartame, acesulfame potassium) and a natural sweetener (i.e., rebaudioside A) on ER stress in the hypothalamic cell line mHypoE-N43/5 and on axonal outgrowth . Sucralose, aspartame, and acesulfame potassium caused elevated ER stress gene expression in mHypoE-N43/5 cells, with sucralose and acesulfame potassium having the most potent effect. Moreover, acesulfame potassium treatment reduced axon outgrowth from arcuate nucleus explants and this effect was attenuated with the ER stress-relieving drug tauroursodeoxycholic acid. Furthermore, sucralose induced cytotoxicity and acesulfame potassium increases caspase3/7 activity at high concentrations in mHypoE-N43/5 cells. In contrast, rebaudioside A only had moderate effects on hypothalamic ER stress and no adverse effects on axon outgrowth, cytotoxicity, or caspase3/7 activity. Together, our data reveal that commonly consumed NNS cause cellular stress in hypothalamic cells disrupting axon outgrowth and that these biological alterations are not seen with rebaudioside A. These data provide biological plausibility for some NNS to adversely impact metabolic health and identifies rebaudioside A as a sweetener with lower detrimental biological impact on hypothalamic cells.

摘要

随着肥胖症的流行,非营养性甜味剂(NNS)已被广泛用作糖替代品,因为它们能提供甜味且不会带来过多热量。然而,人们越来越认识到NNS并非惰性化合物,可能会导致长期的代谢紊乱。内质网(ER)应激已成为肥胖症和2型糖尿病发展过程中的关键环节。在本研究中,我们调查了常见饮食饮料中发现的NNS(即三氯蔗糖、阿斯巴甜、安赛蜜钾)和一种天然甜味剂(即甜菊糖苷A)对下丘脑细胞系mHypoE-N43/5内质网应激和轴突生长的影响。三氯蔗糖、阿斯巴甜和安赛蜜钾导致mHypoE-N43/5细胞中内质网应激基因表达升高,其中三氯蔗糖和安赛蜜钾的作用最为显著。此外,安赛蜜钾处理减少了弓状核外植体的轴突生长,而内质网应激缓解药物牛磺熊去氧胆酸可减弱这种作用。此外,三氯蔗糖在高浓度下诱导mHypoE-N43/5细胞产生细胞毒性,安赛蜜钾则增加了caspase3/7活性。相比之下,甜菊糖苷A对下丘脑内质网应激只有中度影响,对轴突生长、细胞毒性或caspase3/7活性没有不良影响。总之,我们的数据表明,常见的NNS会导致下丘脑细胞产生细胞应激,破坏轴突生长,而甜菊糖苷A则不会出现这些生物学改变。这些数据为某些NNS对代谢健康产生不利影响提供了生物学依据,并确定甜菊糖苷A是一种对下丘脑细胞有害生物学影响较小的甜味剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d19/6928131/f2e278b28280/fendo-10-00876-g0001.jpg

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