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Effects of triclosan on antioxidant- and apoptosis-related genes expression in the gill and ovary of zebrafish

机译:三氯烷对斑马鱼鳃和卵巢抗氧化剂和凋亡相关基因表达的影响

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Triclosan (TCS) is a broad-spectrum antibacterial and anti-fungal agent used in a broad variety of personal care products (PCPs) throughout the world. However, the molecular mechanism of TCS’s effects on the gill and ovary of fish is not clear. In this study, the effects of TCS exposure on expression of antioxidant- and apoptosis-related genes were investigated in the gill and ovary of zebrafish ( Danio rerio ). Zebrafish were exposed to 0, 17, 34, or 68 μ g/l TCS for 42 days. Antioxidant-related genes ( SOD , GPx1a , CAT , sMT-B , and MT-2 ) in the gill were significantly downregulated in the 34 (except GPx1a ) and 68 μ g/l TCS groups, and these genes (except MT-2 ) in the ovary were significantly downregulated in the 68 μ g/l TCS group. Apoptosis-related gene ( Bax and p53 ) expression level in the gill were significantly downregulated in the 68 μ g/l TCS group, while the ratios of BCL-2 to Bax and MDM2 gene were significantly upregulated. The Bax gene in the ovary was significantly upregulated in the 34 and 68 μ g/l TCS groups, while the ratio of BCL -2 to Bax was significantly downregulated. Moreover, the p53 gene in the ovary in the 34 μ g/l TCS group was significantly upregulated. In addition, the MDA contents in the gill in the 34 and 68 μ g/l TCS treated groups and in the ovary in 68 μg/l group were significantly increased. The results showed that the higher dose of TCS might cause oxidative damage in the gills and ovaries and accelerate ROS-dependent ovary apoptosis in zebrafish.
机译:Triclosan(TCS)是一种广谱抗菌剂和抗真菌剂,用于全球各种各样的个人护理产品(PCP)。然而,TCS对鱼鳃和卵巢的影响的分子机制尚不清楚。在这项研究中,在斑马鱼(Danio Rerio)的鳃和卵巢中研究了TCS暴露对抗氧化和凋亡相关基因表达的影响。斑马鱼暴露于0,17,34,或68μg/ L TCS 42天。鳃中的抗氧化剂相关基因(SOD,GPX1A,CAT,SMT-B和MT-2)在34(GPX1A除外)和68μg/ L TCS组和这些基因中显着下调(MT-2除外) )在68μg/ L TCS组中,卵巢中显着下调。在68μg/ L TCS组中,鳃中的凋亡相关基因(BAX和P53)表达水平显着下调,而BCL-2对BAX和MDM2基因的比率显着上调。卵巢中的BAX基因在34和68μg/ L TCS组中显着上调,而BCL -2与Bax的比例显着下调。此外,34μg/ L TCS组中卵巢中的P53基因显着上调。另外,在68μg/ L组中,34和68μg/ L TCS处理基团和卵巢中鳃中的MDA含量显着增加。结果表明,较高剂量的TCS可能导致鳃和卵巢中的氧化损伤,并加速斑马鱼的ROS依赖性卵巢凋亡。

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