首页> 外文期刊>Aquatic Toxicology >Assessing the cytotoxic effect of hexabromocyclododecane (HBCD) on liver tissue cultures from fathead minnow (Pimephales promelas)
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Assessing the cytotoxic effect of hexabromocyclododecane (HBCD) on liver tissue cultures from fathead minnow (Pimephales promelas)

机译:评估六溴环丁癸烷(HBCD)对来自Fathead Minnow的肝组织培养的细胞毒性作用(Pimephales Promelas)

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Hexabromocyclododecane (HBCD) is a ubiquitous environmental contaminant of current concern despite its global ban in 2013 due to its characteristics as a persistent organic pollutant. While the toxicity of HBDC in vertebrates has been extensively studied, the specific molecular mechanisms underlying its toxicity in fish are not fully understood to date. Therefore, the aim of this work was to determine the in vitro cytotoxicity of HBCD in the fathead minnow (Pimephales promelas) using liver explants, and to investigate the molecular mechanisms underlying these effects. Explants were incubated with nine different concentrations of HBCD (0.00032, 0.0016, 0.008, 0.04, 0.2, 1, 5, 25 and 125 mg HBCD/L) for 6 and 24 h, and cytotoxicity was tested by using the Lactate Dehydrogenase (LDH) assay. The expression of genes with a key role in the regulation of apoptosis, oxidative stress, cryoprotective responses to reactive oxygen species (ROS), and xenobiotic metabolism was also measured in liver explants after exposure to 0.00032, 0.0016, 0.008, 0.2, and 25 mg HBCD/L. After 6 h, a concentration-dependent significant increase in cytotoxicity was found between 0.008 and 1 mg/L HBCD, followed by a decrease between 1 and 25 mg/L. Cytotoxicity reached 100 % at a concentration of 125 mg/L HBCD. After 24 h, HBCD showed a biphasic response with a concentration-dependent decrease in cytotoxicity between 0.0016 and 1 mg/L that returned to baseline levels at 5 mg/L. Then, cytotoxicity increased at concentrations greater than 5 mg/L to reach a maximum value at 125 mg/L. Changes in the expression of genes related to apoptosis (apoEn, apoIn, caspase2, caspase9 and bax) were also time- and concentration-dependent. Genes related to antioxidant responses such as gst and catalase were generally decreased after 6 h of incubation and increased after 24 h. The same pattern was observed for cyp1a and cyp3a, both related to xenobiotic metabolism. The expression of genes related to cryoprotective responses anti ROS (akt and pi3k) decreased at almost all HBCD concentrations tested after 6 h but remained unaltered after 24 h. Overall, we demonstrated that the cytotoxic effect of HBCD in fathead minnow liver explant was not proportional to its concentration in the culture media. Cytotoxicity was highly dynamic and did not follow a typical concentration-response pattern, complicating its toxicological characterization.
机译:HexabromocyclodeCane(HBCD)是由于其全球禁令,由于其特征作为持续有机污染物,尽管2013年全球禁令。虽然HBDC在脊椎动物中的毒性已经过度研究,但在鱼类中毒性下面的特定分子机制迄今尚不完全理解。因此,这项工作的目的是使用肝脏外植体测定毛颌骨(Pimephales Promelas)中HBCD的体外细胞毒性,并研究这些效果的分子机制。将外植体与九种不同浓度的HBCd孵育(0.00032,00016,0008,0.04,0.2,1,5,25和125mg HBCD / L),通过使用乳酸脱氢酶(LDH)来测试细胞毒性测定。在暴露于0.00032,0.0016,0008,0.2和25mg后,在肝脏外植体中测量了在细胞凋亡的调节中具有关键作用的基因的表达,氧化应激对反应性氧物质(ROS)和异种乳代谢进行测量HBCD / L.在6小时后,发现细胞毒性的浓度依赖性显着增加在0.008至1mg / L HBCd之间,然后减少1-25mg / L.细胞毒性以125mg / L HBCd的浓度达到100%。在24小时后,HBCD显示出双相反应,其细胞毒性的浓度依赖性降低在0.0016和1mg / L之间,其返回到5mg / L的基线水平。然后,在大于5mg / L的浓度下增加细胞毒性,以达到125mg / L的最大值。与细胞凋亡(Apoen,Apoin,Caspase2,Caspase9和Bax相关的基因表达的变化也是时间和浓度依赖性的。与抗氧化反应如GST和过氧氢酶相关的基因通常在温育6小时后降低,24小时后增加。对于Cyp1a和Cyp3a,观察到与异丙酚代谢相关的CYP1a和Cyp3a相同的模式。与冷冻保护反应抗ROS(akt和pi3k)相关的基因的表达在6小时后测试的几乎所有HBCD浓度下降,但在24小时后保持局限性。总体而言,我们证明了富含钙Min鱼肝外植物中HBCD的细胞毒性效应与其在培养基中的浓度成比例。细胞毒性高度动态,并且没有遵循典型的浓度 - 反应模式,使其毒理学表征复杂化。

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