有机和无机污染物及其混合物对发育暴露斑马鱼代谢健康和基因表达的影响。

IF 3.6 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Roxanne Bérubé, Matthew K LeFauve, Aicha Khalaf, Darya Aminioroomi, Christopher D Kassotis
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引用次数: 0

摘要

有机和无机化学物质共同出现在家庭灰尘中,这些化学物质已被确定具有内分泌和代谢干扰作用。虽然对化学混合物的研究越来越多,但模拟家庭灰尘和其他环境基质的复杂混合物的影响尚未得到很好的研究,因此对其潜在的代谢破坏作用知之甚少。以前的研究已经证明了高效的成脂效果住宅家用粉尘提取物使用体外脂肪生成测定。最近的研究将其简化为与家庭灰尘相关的混合物,并由常见的有机和无机污染物组成,发现这些复杂的组合在细胞模型中经常表现出相加甚至协同效应。本研究旨在将我们之前的体外观察转化为体内模型,即发育中的斑马鱼,以评估早期暴露于有机和无机化学品(单独和混合)的代谢影响。将斑马鱼胚胎暴露于受精后1天至6天,测量其代谢能量消耗、游泳行为和基因表达。在全球范围内,我们观察到大多数混合物并不反映单个化学品的影响;与单个化学物质相比,BFR混合物产生的效果较弱,而PFAS和无机混合物似乎比单个化学物质具有更强的效果。最后,环境混合物,模仿家庭灰尘的比例,比单独的无机化学混合物更弱。为了更好地了解无机和有机化学物质的混合效应,还需要做更多的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of organic and inorganic contaminants and their mixtures on metabolic health and gene expression in developmentally exposed zebrafish.

Organic and inorganic chemicals co-occur in household dust, and these chemicals have been determined to have endocrine and metabolic disrupting effects. While there is increasing study of chemical mixtures, the effects of complex mixtures mimicking household dust and other environmental matrices have not been well studied and their potential metabolism disrupting effects are thus poorly understood. Previous research has demonstrated high potency adipogenic effects of residential household dust extracts using in vitro adipogenesis assays. More recent research simplified this to a mixture relevant to household dust and comprised of common co-occurring organic and inorganic contaminants, finding that these complex combinations often exhibited additive or even synergistic effects in cell models. This study aimed to translate our previous in vitro observation to an in vivo model, the developing zebrafish, to evaluate the metabolic effects of early exposure to organic and inorganic chemicals, individually and in mixtures. Zebrafish embryos were exposed from 1 day post fertilization (dpf) to 6 dpf, then metabolic energy expenditure, swimming behavior and gene expression were measured. Globally, we observed that most mixtures did not reflect the effects of individual chemicals; the BFR mixture produced a less potent effect when compared to the individual chemicals, while the PFAS and the inorganic mixtures seemed to have a more potent effect than the individual chemicals. Finally, the environmental mixture, mimicking household dust proportions, was less potent than the inorganic chemical mix alone. Additional work is necessary to better understand the mixture effect of inorganic and organic chemicals combined.

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来源期刊
CiteScore
7.40
自引率
9.80%
发文量
265
审稿时长
3.4 months
期刊介绍: The Society of Environmental Toxicology and Chemistry (SETAC) publishes two journals: Environmental Toxicology and Chemistry (ET&C) and Integrated Environmental Assessment and Management (IEAM). Environmental Toxicology and Chemistry is dedicated to furthering scientific knowledge and disseminating information on environmental toxicology and chemistry, including the application of these sciences to risk assessment.[...] Environmental Toxicology and Chemistry is interdisciplinary in scope and integrates the fields of environmental toxicology; environmental, analytical, and molecular chemistry; ecology; physiology; biochemistry; microbiology; genetics; genomics; environmental engineering; chemical, environmental, and biological modeling; epidemiology; and earth sciences. ET&C seeks to publish papers describing original experimental or theoretical work that significantly advances understanding in the area of environmental toxicology, environmental chemistry and hazard/risk assessment. Emphasis is given to papers that enhance capabilities for the prediction, measurement, and assessment of the fate and effects of chemicals in the environment, rather than simply providing additional data. The scientific impact of papers is judged in terms of the breadth and depth of the findings and the expected influence on existing or future scientific practice. Methodological papers must make clear not only how the work differs from existing practice, but the significance of these differences to the field. Site-based research or monitoring must have regional or global implications beyond the particular site, such as evaluating processes, mechanisms, or theory under a natural environmental setting.
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