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甜菊糖苷及其代谢产物甜菊醇(天然甜味剂甜叶菊的成分)内分泌干扰潜力的体外生物测定研究。

In vitro bioassay investigations of the endocrine disrupting potential of steviol glycosides and their metabolite steviol, components of the natural sweetener Stevia.

作者信息

Shannon Maeve, Rehfeld Anders, Frizzell Caroline, Livingstone Christina, McGonagle Caoimhe, Skakkebaek Niels E, Wielogórska Ewa, Connolly Lisa

机构信息

Institute for Global Food Security, School of Biological Sciences, Queen's University Belfast, Northern Ireland, United Kingdom.

Department of Growth and Reproduction, Copenhagen University Hospital, Rigshospitalet, Denmark; Department of Cellular and Molecular Medicine, Faculty of Health Sciences, Center for Healthy Ageing, University of Copenhagen, Copenhagen, Denmark; International Center for Research and Research Training in Endocrine Disruption of Male Reproduction and Child Health (EDMaRC), Rigshospitalet, University of Copenhagen, Denmark.

出版信息

Mol Cell Endocrinol. 2016 May 15;427:65-72. doi: 10.1016/j.mce.2016.03.005. Epub 2016 Mar 8.

Abstract

The food industry is moving towards the use of natural sweeteners such as those produced by Stevia rebaudiana due to the number of health and safety concerns surrounding artificial sweeteners. Despite the fact that these sweeteners are natural; they cannot be assumed safe. Steviol glycosides have a steroidal structure and therefore may have the potential to act as an endocrine disruptor in the body. Reporter gene assays (RGAs), H295R steroidogenesis assay and Ca(2+) fluorimetry based assays using human sperm cells have been used to assess the endocrine disrupting potential of two steviol glycosides: stevioside and rebaudioside A, and their metabolite steviol. A decrease in transcriptional activity of the progestagen receptor was seen following treatment with 25,000 ng/ml steviol in the presence of progesterone (157 ng/ml) resulting in a 31% decrease in progestagen response (p=<0.01). At the level of steroidogenesis, the metabolite steviol (500-25,000 ng/ml) increased progesterone production significantly by 2.3 fold when exposed to 10,000 ng/ml (p=<0.05) and 5 fold when exposed to 25,000 ng/ml (p=<0.001). Additionally, steviol was found to induce an agonistic response on CatSper, a progesterone receptor of sperm, causing a rapid influx of Ca(2+). The response was fully inhibited using a specific CatSper inhibitor. These findings highlight the potential for steviol to act as a potential endocrine disruptor.

摘要

由于围绕人工甜味剂存在诸多健康和安全问题,食品行业正朝着使用天然甜味剂的方向发展,比如甜叶菊所产生的甜味剂。尽管这些甜味剂是天然的,但不能认为它们是安全的。甜菊糖苷具有甾体结构,因此可能有在体内充当内分泌干扰物的潜力。已使用报告基因检测(RGAs)、H295R类固醇生成检测以及基于钙离子荧光测定法的人精子细胞检测,来评估两种甜菊糖苷(甜菊糖苷和莱鲍迪苷A)及其代谢物甜菊醇的内分泌干扰潜力。在存在孕酮(157纳克/毫升)的情况下,用25000纳克/毫升甜菊醇处理后,孕激素受体的转录活性降低,导致孕激素反应降低31%(p≤0.01)。在类固醇生成水平上,代谢物甜菊醇(500 - 25000纳克/毫升)在暴露于10000纳克/毫升时,孕酮产量显著增加2.3倍(p≤0.05),在暴露于25000纳克/毫升时增加5倍(p≤0.001)。此外,发现甜菊醇对精子的孕激素受体CatSper诱导了激动反应,导致钙离子快速内流。使用特异性CatSper抑制剂可完全抑制该反应。这些发现凸显了甜菊醇充当潜在内分泌干扰物的可能性。

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