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首页> 外文期刊>Environmental pollution >Effects of carbamazepine and cetirizine under an ocean acidification scenario on the biochemical and transcriptome responses of the clan Ruditapes philippinarum
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Effects of carbamazepine and cetirizine under an ocean acidification scenario on the biochemical and transcriptome responses of the clan Ruditapes philippinarum

机译:海洋酸化情景下卡马西平和西替利嗪对菲律宾蛤仔生化和转录组反应的影响

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Several works evaluated the toxicity of pharmaceutical drugs and climate related changes in invertebrates but few explored the combined effects of both stressors, namely considering their mode of action (MoA). Carbamazepine (CBZ) and cetirizine (CTZ) are pharmaceutical drugs detected in the environment and the toxicity derived from the combined effects of these drugs with ocean acidification (OA) is poorly explored. Thus, the present study investigated the biochemical parameters related to an oxidative stress response and the transcription of genes related to the MoA of CBZ (1.0 mu g/L) and CTZ (0.6 mu g/L) in the clam Ruditapes philippinarum chronically exposed (28 days) to control (7.8) and low (7.5) pH conditions. The results obtained showed that despite the clams accumulated both drugs, at low pH the clams exposed to CTZ decreased drug concentration and BCF values (CTZ uptake: 2.0 +/- 0.5 ng/g fresh weight; BCF: 3.8 +/- 0.9) in comparison with clams exposed to control pH (CTZ uptake: 2.9 +/- 0.3 ng/g fresh weight; BCF: 5.5 +/- 0.6). No oxidative stress was induced by the exposure to CBZ or CTZ at each pH level, but the transcription of several genes related with the MoA (neurotransmission, immunity and biomineralization) was altered by low pH, drug exposure and the combination of both stressors. At both pH conditions, CBZ increased the transcription of GABA receptor gene (neurotransmission) and CTZ led to a decrease of Perlucin gene (biomineralization) transcription. The transcription of MyD88 gene (immunity) decreased at low pH (7.5) combined with drug exposure (CBZ or CTZ). Thus, it was highlighted that the interaction of drug exposure and low pH conditions can change bivalves' sensitivity to drugs or alter drugs toxicity. (C) 2018 Elsevier Ltd. All rights reserved.
机译:几项工作评估了药物的毒性以及无脊椎动物与气候相关的变化,但很少探讨这两种压力源的综合作用,即考虑其作用方式(MoA)。卡马西平(CBZ)和西替利嗪(CTZ)是在环境中检测到的药物,而对这些药物与海洋酸化(OA)的联合作用所产生的毒性研究很少。因此,本研究调查了慢性暴露在菲律宾蛤仔中的与氧化应激反应有关的生化参数以及与CBZ(1.0μg / L)和CTZ(0.6μg / L)的MoA相关的基因的转录( 28天)以控制(7.8)和低(7.5)pH条件。获得的结果表明,尽管蛤accumulated积聚了两种药物,但在低pH条件下,暴露于CTZ的蛤c会降低药物浓度和BCF值(CTZ吸收:2.0 +/- 0.5 ng / g新鲜重量; BCF:3.8 +/- 0.9)。与暴露在控制pH下的蛤比较(CTZ摄取:2.9 +/- 0.3 ng / g新鲜重量; BCF:5.5 +/- 0.6)。通过在低pH,药物暴露以及两种应激源的组合下,在每个pH水平下暴露于CBZ或CTZ都不会诱导氧化应激,但是与MoA相关的几个基因(神经传递,免疫和生物矿化)的转录被改变。在两种pH条件下,CBZ均会增加GABA受体基因的转录(神经传递),而CTZ会导致Perlucin基因的减少(生物矿化)转录。在低pH(7.5)结合药物暴露(CBZ或CTZ)时,MyD88基因的转录(免疫性)降低。因此,强调了药物暴露和低pH条件的相互作用可以改变双壳类动物对药物的敏感性或改变药物毒性。 (C)2018 Elsevier Ltd.保留所有权利。

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