首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Xenobiotic metabolism in the fish hepatic cell lines Hepa-E1 and RTH-149, and the gill cell lines RTgill-W1 and G1B: Biomarkers of CYP450 activity and oxidative stress
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Xenobiotic metabolism in the fish hepatic cell lines Hepa-E1 and RTH-149, and the gill cell lines RTgill-W1 and G1B: Biomarkers of CYP450 activity and oxidative stress

机译:鱼肝细胞系HEPA-E1和RTH-149中的异丙酚代谢,以及鳃细胞系RTGILL-W1和G1B:CYP450活性和氧化应激的生物标志物

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The use of fish cell cultures has proven to be an effective tool in the study of environmental and aquatic toxicology. Valuable information can be obtained from comparisons between cell lines from different species and organs. In the present study, specific chemicals were used and biomarkers (e.g. 7-Ethoxyresorufin-O-deethylase (EROD) activity and reactive oxygen species (ROS)) were measured to assess the metabolic capabilities and cytotoxicity of the fish hepatic cell lines Hepa-E1 and RTH-149, and the fish gill cell lines RTgill-W1 and G1B. These cell lines were exposed to beta-naphthoflavone (BNF) and benzo[a]pyrene (BaP), the pharmaceutical tamoxifen (TMX), and the organic peroxide tert-butylhydroperoxide (tBHP). Cytotoxicity in gill cell lines was significantly higher than in hepatic cells, with BNF and TMX being the most toxic compounds. CYP1-like associated activity, measured through EROD activity, was only detected in hepatic cells; Hepa-El cells showed the highest activity after exposure to both BNF and BaP. Significantly higher levels of CYP3A-like activity were also observed in Hepa-El cells exposed to TMX, while gill cell lines presented the lowest levels. Measurements of ROS and antioxidant enzymes indicated that peroxide levels were higher in gill cell lines in general. However, levels of superoxide were significantly higher in RTH-149 cells, where no distinctive increase of superoxide-related antioxidants was observed. The present study demonstrates the importance of selecting adequate cell lines in measuring specific metabolic parameters and provides strong evidence for the fish hepatocarcinoma Hepa-El cells to be an excellent alternative in assessing metabolism of xenobiotics, and in expanding the applicability of fish cell lines for in vitro studies.
机译:已经证明使用鱼细胞培养物的使用是对环境和水生毒理学研究的有效工具。可以从来自不同物种和器官的细胞系之间的比较中获得有价值的信息。在本研究中,使用特定的化学品,并测量生物标志物(例如7-乙醇磺酰-O-脱甲基化酶(EROD)活性和反应性氧物质(ROS),以评估鱼肝细胞系HEPA-E1的代谢能力和细胞毒性和Rth-149,以及鱼鳃细胞系RTGILL-W1和G1B。将这些细胞系暴露于β-萘酚(BNF)和苯并[a]芘(BAP),药物Tamoxifen(TMX),以及有机过氧化物叔丁基氧化氢(TBHP)。鳃细胞系中的细胞毒性显着高于肝细胞,BNF和TMX是最有毒的化合物。通过EROD活性测量的CYP1样相关活动仅在肝细胞中检测到; Hepa-el细胞在暴露于BNF和BAP后呈现最高的活性。在暴露于TMX的HEPA-EL细胞中也观察到显着较高的CYP3A样活性,而鳃细胞系呈现最低水平。 ROS和抗氧化酶的测量表明,一般鳃细胞系中过氧化物水平较高。然而,RTH-149细胞中超氧化物的水平显着较高,观察到无氧化物相关抗氧化剂的独特增加。本研究表明,在测量特异性代谢参数中选择适当细胞系的重要性,并为鱼肝癌HEPA-EL细胞提供了强有力的证据,以评估异种学代谢的优异替代方案,以及扩大鱼细胞系的适用性体外研究。

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