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本文引用的文献

1
Formaldehyde-Assisted Isolation of Regulatory Elements (FAIRE) analysis uncovers broad changes in chromatin structure resulting from hexavalent chromium exposure.甲醛辅助调控元件分离(FAIRE)分析揭示了六价铬暴露导致的染色质结构广泛变化。
PLoS One. 2014 May 16;9(5):e97849. doi: 10.1371/journal.pone.0097849. eCollection 2014.
2
Long-term exposure to low-concentrations of Cr(VI) induce DNA damage and disrupt the transcriptional response to benzo[a]pyrene.长期接触低浓度六价铬会导致 DNA 损伤,并破坏苯并[a]芘的转录反应。
Toxicology. 2014 Feb 28;316:14-24. doi: 10.1016/j.tox.2013.12.001. Epub 2013 Dec 26.
3
Disruption of aryl hydrocarbon receptor homeostatic levels during embryonic stem cell differentiation alters expression of homeobox transcription factors that control cardiomyogenesis.在胚胎干细胞分化过程中破坏芳香烃受体的内稳态水平会改变控制心肌发生的同源盒转录因子的表达。
Environ Health Perspect. 2013 Nov-Dec;121(11-12):1334-43. doi: 10.1289/ehp.1307297. Epub 2013 Sep 20.
4
Toxicogenomic outcomes predictive of forestomach carcinogenesis following exposure to benzo(a)pyrene: relevance to human cancer risk.苯并(a)芘暴露致大鼠前胃肿瘤发生的毒代动力学及基因组学预测指标及其对人类癌症风险的相关性。
Toxicol Appl Pharmacol. 2013 Dec 1;273(2):269-80. doi: 10.1016/j.taap.2013.05.027. Epub 2013 Jun 2.
5
Physiologically based pharmacokinetic model for humans orally exposed to chromium.人体经口暴露于铬的基于生理学的药代动力学模型。
Chem Biol Interact. 2013 Jun 25;204(1):13-27. doi: 10.1016/j.cbi.2013.04.003. Epub 2013 Apr 17.
6
Assessment of the mode of action underlying development of rodent small intestinal tumors following oral exposure to hexavalent chromium and relevance to humans.评估经口接触六价铬后诱发啮齿类动物小肠肿瘤的作用机制及其与人类的相关性。
Crit Rev Toxicol. 2013 Mar;43(3):244-74. doi: 10.3109/10408444.2013.768596.
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Long-term exposure to hexavalent chromium inhibits expression of tumor suppressor genes in cultured cells and in mice.长期接触六价铬会抑制培养细胞和小鼠中肿瘤抑制基因的表达。
J Trace Elem Med Biol. 2012 Jun;26(2-3):188-91. doi: 10.1016/j.jtemb.2012.04.009. Epub 2012 May 19.
8
Carcinogenic activity of benzo[a]pyrene in a 2 year oral study in Wistar rats.苯并[a]芘在 Wistar 大鼠为期 2 年的口服研究中的致癌活性。
Food Chem Toxicol. 2012 Mar;50(3-4):927-35. doi: 10.1016/j.fct.2011.12.003. Epub 2011 Dec 9.
9
Genome-wide gene expression effects in B6C3F1 mouse intestinal epithelia following 7 and 90days of exposure to hexavalent chromium in drinking water.饮用水中六价铬暴露 7 天和 90 天后 B6C3F1 小鼠肠上皮的全基因组基因表达效应。
Toxicol Appl Pharmacol. 2012 Feb 15;259(1):13-26. doi: 10.1016/j.taap.2011.11.012. Epub 2011 Dec 1.
10
Comparison of the effects of hexavalent chromium in the alimentary canal of F344 rats and B6C3F1 mice following exposure in drinking water: implications for carcinogenic modes of action.饮水中六价铬染毒对 F344 大鼠和 B6C3F1 小鼠消化道影响的比较:对致癌作用机制的启示。
Toxicol Sci. 2012 Jan;125(1):79-90. doi: 10.1093/toxsci/kfr280. Epub 2011 Oct 19.

长期同时暴露于六价铬和苯并[a]芘会在小鼠肝脏和胃肠道中引起组织特异性的差异生物学效应。

Long-term Coexposure to Hexavalent Chromium and B[a]P Causes Tissue-Specific Differential Biological Effects in Liver and Gastrointestinal Tract of Mice.

作者信息

Sánchez-Martín Francisco Javier, Fan Yunxia, Carreira Vinicius, Ovesen Jerald L, Vonhandorf Andrew, Xia Ying, Puga Alvaro

机构信息

Department of Environmental Health and Center for Environmental Genetics, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267.

Department of Environmental Health and Center for Environmental Genetics, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267

出版信息

Toxicol Sci. 2015 Jul;146(1):52-64. doi: 10.1093/toxsci/kfv070. Epub 2015 Mar 29.

DOI:10.1093/toxsci/kfv070
PMID:25820237
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4476460/
Abstract

Complex mixtures of environmental agents often cause mixture-specific health effects that cannot be accounted for by a single mechanism. To study the biological effects of exposure to a mixture of chromium-VI and benzo[a]pyrene (B[a]P), often found together in the environment, we exposed mice for 60 days to 0, 55, 550, or 5500 ppb Cr(VI) in drinking water followed by 90 days of coexposure to B[a]P at 0, 1.25, 12.5, or 125 mg/kg/day and examined liver and gastrointestinal (GI) tract for exposure effects. In the liver, the mixture caused more significant histopathology than expected from the sum of effects of the individual components, while in the GI tract, Cr(VI) alone caused significant enterocyte hypertrophy and increases in cell proliferation and DNA damage that were also observed in mice coexposed to B[a]P. Expression of genes involved in drug metabolism, tumor suppression, oxidative stress, and inflammation was altered in mixed exposures relative to control and to singly exposed mice. Drug metabolism and oxidative stress genes were upregulated and tumor suppressor and inflammation genes downregulated in the proximal GI tract, whereas most markers were upregulated in the distal GI tract and downregulated in the liver. Oral exposure to Cr(VI) and B[a]P mixtures appears to have tissue-specific differential consequences in liver and GI tract that cannot be predicted from the effects of each individual toxicant. Tissue specificity may be particularly critical in cases of extended exposure to mixtures of these agents, as may happen in the occupational setting or in areas where drinking water contains elevated levels of Cr(VI).

摘要

环境因子的复杂混合物常常会引发特定混合物所特有的健康效应,而这些效应无法用单一机制来解释。为了研究暴露于环境中常同时存在的六价铬和苯并[a]芘(B[a]P)混合物的生物学效应,我们让小鼠饮用含0、55、550或5500 ppb六价铬的水60天,随后让其以0、1.25、12.5或125 mg/kg/天的剂量共同暴露于B[a]P 90天,并检查肝脏和胃肠道(GI)的暴露效应。在肝脏中,该混合物引起的组织病理学变化比各单一成分效应之和预期的更为显著,而在胃肠道中,单独的六价铬就会导致明显的肠上皮细胞肥大以及细胞增殖和DNA损伤增加,在同时暴露于B[a]P的小鼠中也观察到了这些现象。与对照组和单独暴露的小鼠相比,混合暴露时参与药物代谢、肿瘤抑制、氧化应激和炎症的基因表达发生了改变。在近端胃肠道中,药物代谢和氧化应激基因上调,而肿瘤抑制和炎症基因下调,而在远端胃肠道中,大多数标志物上调,在肝脏中下调。经口暴露于六价铬和B[a]P混合物似乎在肝脏和胃肠道中具有组织特异性的不同后果,无法从每种单一毒物的效应中预测。在长期暴露于这些物质混合物的情况下,组织特异性可能尤为关键,如在职业环境或饮用水中六价铬含量升高的地区可能发生的情况。