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水力压裂化学品的内分泌干扰活性及雄性小鼠产前暴露后的不良健康结局

Endocrine-Disrupting Activity of Hydraulic Fracturing Chemicals and Adverse Health Outcomes After Prenatal Exposure in Male Mice.

作者信息

Kassotis Christopher D, Klemp Kara C, Vu Danh C, Lin Chung-Ho, Meng Chun-Xia, Besch-Williford Cynthia L, Pinatti Lisa, Zoeller R Thomas, Drobnis Erma Z, Balise Victoria D, Isiguzo Chiamaka J, Williams Michelle A, Tillitt Donald E, Nagel Susan C

机构信息

Nicholas School of the Environment (C.D.K.), Duke University, Durham, North Carolina 27708; Department of Obstetrics, Gynecology, and Women's Health (K.C.K., C.-X.M., E.Z.D., V.D.B., C.J.I., S.C.N.), Department of Forestry (D.C.V., C.-H.L.), Division of Biological Sciences (V.D.B., M.A.W., S.C.N.), University of Missouri, Columbia, Missouri 65211; IDEXX RADIL Pathology Services (C.L.B.-W.), Columbia, Missouri 65201; Department of Biology (L.P., R.T.Z.), University of Massachusetts Amherst, Amherst, Massachusetts 01003; and US Geological Survey (D.E.T.), Columbia Environmental Research Center, Columbia, Missouri 65201.

出版信息

Endocrinology. 2015 Dec;156(12):4458-73. doi: 10.1210/en.2015-1375. Epub 2015 Oct 14.

Abstract

Oil and natural gas operations have been shown to contaminate surface and ground water with endocrine-disrupting chemicals. In the current study, we fill several gaps in our understanding of the potential environmental impacts related to this process. We measured the endocrine-disrupting activities of 24 chemicals used and/or produced by oil and gas operations for five nuclear receptors using a reporter gene assay in human endometrial cancer cells. We also quantified the concentration of 16 of these chemicals in oil and gas wastewater samples. Finally, we assessed reproductive and developmental outcomes in male C57BL/6J mice after the prenatal exposure to a mixture of these chemicals. We found that 23 commonly used oil and natural gas operation chemicals can activate or inhibit the estrogen, androgen, glucocorticoid, progesterone, and/or thyroid receptors, and mixtures of these chemicals can behave synergistically, additively, or antagonistically in vitro. Prenatal exposure to a mixture of 23 oil and gas operation chemicals at 3, 30, and 300 μg/kg · d caused decreased sperm counts and increased testes, body, heart, and thymus weights and increased serum testosterone in male mice, suggesting multiple organ system impacts. Our results suggest possible adverse developmental and reproductive health outcomes in humans and animals exposed to potential environmentally relevant levels of oil and gas operation chemicals.

摘要

石油和天然气作业已被证明会用内分泌干扰化学物质污染地表水和地下水。在当前的研究中,我们填补了对与该过程相关的潜在环境影响认识上的几个空白。我们使用人子宫内膜癌细胞中的报告基因测定法,测量了石油和天然气作业使用和/或产生的24种化学物质对五种核受体的内分泌干扰活性。我们还对石油和天然气废水样本中其中16种化学物质的浓度进行了定量。最后,我们评估了雄性C57BL/6J小鼠在产前暴露于这些化学物质混合物后的生殖和发育结局。我们发现,23种常用的石油和天然气作业化学物质可激活或抑制雌激素、雄激素、糖皮质激素、孕激素和/或甲状腺受体,并且这些化学物质的混合物在体外可表现出协同、相加或拮抗作用。在雄性小鼠中,产前暴露于23种石油和天然气作业化学物质的混合物,剂量为3、30和300μg/kg·d,导致精子数量减少,睾丸、身体、心脏和胸腺重量增加,血清睾酮升高,表明对多个器官系统有影响。我们的结果表明,暴露于潜在环境相关水平的石油和天然气作业化学物质的人类和动物可能会出现不良的发育和生殖健康后果。

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