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首页> 外文期刊>Journal of environmental sciences >Exposure to endocrine disrupting chemicals perturbs lipid metabolism and circadian rhythms
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Exposure to endocrine disrupting chemicals perturbs lipid metabolism and circadian rhythms

机译:暴露于内分泌扰乱化学品Perturbs脂质代谢和昼夜节律

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A growing body of evidence indicates that exposure to environmental chemicals can contribute to the etiology of obesity by inappropriately stimulating adipogenesis as well as perturbing lipid metabolism and energy balance. One potential mechanism by which chemical exposure can influence lipid metabolism is through disturbance of circadian rhythms, endogenously-driven cycles of roughly 24hr in length that coordinate biochemical, physiological, and behavioral processes in all organisms. Here we show for the first time that exposure to endocrine disrupting compounds (EDCs), including the pesticide tributyltin, two commercial flame retardants, and a UV-filter chemical found in sunscreens, can perturb both circadian clocks and lipid metabolism in vertebrates. Exposure of developing zebrafish to EDCs affects core clock activity and leads to a remarkable increase in lipid accumulation that is reminiscent of the effects observed for longdaysin, a known disruptor of circadian rhythms. Our data reveal a novel obesogenic mechanism of action for environmental chemicals, an observation which warrants further research. Because circadian clocks regulate a wide variety of physiological processes, identification of environmental chemicals capable of perturbing these systems may provide important insights into the development of environmentally-induced metabolic disease. (C) 2017 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:越来越多的证据表明,通过不恰当地刺激脂肪发生以及脂质代谢和能量平衡,暴露于环境化学品可以促进肥胖的病因。化学暴露可以影响脂质代谢的一种潜在机制是通过昼夜节律的干扰,大约24小时的内源性驱动的循环,其在所有生物中协调生物化学,生理和行为过程。在这里,我们首次显示暴露于内分泌破坏的化合物(EDC),包括农药致法菌素,两种商业阻燃剂和在阳光中发现的紫外线过滤器化学品,可以在脊椎动物中扰乱昼夜节律和脂质代谢。将斑马鱼发育到EDC的暴露会影响核心时钟活性,并导致脂质积累的显着增加,这些脂质积累是让人想起对伦敦人类的效果,是昼夜节律的已知破坏者。我们的数据揭示了一种新的环境化学品的占用行动机制,这是一个认证进一步研究的观察。由于昼夜节奏调节各种生理过程,因此鉴定能够扰动这些系统的环境化学品可以对环境诱导的代谢疾病的发展提供重要的见解。 (c)2017中国科学院生态环境科学研究中心。 elsevier b.v出版。

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