内分泌干扰物与肥胖、糖尿病及相关代谢紊乱的混合物。

Brigitte Le Magueresse-Battistoni, Emmanuel Labaronne, Hubert Vidal, Danielle Naville
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引用次数: 92

摘要

肥胖和相关代谢紊乱是健康和生活质量方面的一个重大社会挑战,除了身体残疾外,还会造成严重的心理后果。它们也是发病率和死亡率的主要原因之一。虽然包括食物摄入过多和体力活动减少在内的不同病因已被很好地确定,但它们不能解释肥胖和糖尿病流行演变的动力学,其患病率达到大流行的程度。有趣的是,令人信服的数据表明,环境污染物,特别是那些具有内分泌干扰活动的污染物,可能导致这些多因素代谢紊乱的病因。在这篇综述中,我们将概述内分泌紊乱的特点。我们将证明代谢紊乱可能源于内分泌紊乱,并特别关注文献中令人信服的数据。最后,我们将介绍如何处理慢性暴露于混合污染物的原始小鼠模型,以证明每种污染物的混合剂量超过其活性剂量可能会对几个代谢终点产生实质性的有害影响。这项概念验证研究以及其他关于污染物混合物的研究强调需要重新审视目前用于风险评估的阈值模型,该模型没有考虑到含有环境剂量的污染物混合物的潜在影响,例如实际生活中的暴露。当然,需要更多的研究来更好地确定人类接触到的化学物质的性质和水平,以及它们对健康的影响。此外,对替代品的研究对于确定无害分子是必不可少的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Endocrine disrupting chemicals in mixture and obesity, diabetes and related metabolic disorders.

Obesity and associated metabolic disorders represent a major societal challenge in health and quality of life with large psychological consequences in addition to physical disabilities. They are also one of the leading causes of morbidity and mortality. Although, different etiologic factors including excessive food intake and reduced physical activity have been well identified, they cannot explain the kinetics of epidemic evolution of obesity and diabetes with prevalence rates reaching pandemic proportions. Interestingly, convincing data have shown that environmental pollutants, specifically those endowed with endocrine disrupting activities, could contribute to the etiology of these multifactorial metabolic disorders. Within this review, we will recapitulate characteristics of endocrine disruption. We will demonstrate that metabolic disorders could originate from endocrine disruption with a particular focus on convincing data from the literature. Eventually, we will present how handling an original mouse model of chronic exposition to a mixture of pollutants allowed demonstrating that a mixture of pollutants each at doses beyond their active dose could induce substantial deleterious effects on several metabolic end-points. This proof-of-concept study, as well as other studies on mixtures of pollutants, stresses the needs for revisiting the current threshold model used in risk assessment which does not take into account potential effects of mixtures containing pollutants at environmental doses, e.g., the real life exposure. Certainly, more studies are necessary to better determine the nature of the chemicals to which humans are exposed and at which level, and their health impact. As well, research studies on substitute products are essential to identify harmless molecules.

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