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在体暴露于文拉法辛的海洋贻贝:生物浓缩和代谢。

In vivo exposure of marine mussels to venlafaxine: bioconcentration and metabolization.

机构信息

HydroSciences Montpellier, Université Montpellier, IRD, CNRS, 15 Avenue Charles Flahault, BP 14491, 34093, Montpellier cedex 5, France.

Residuos De Plaguicidas, Departamento de Fisica y Quimica, Almeria University, Almería, Spain.

出版信息

Environ Sci Pollut Res Int. 2021 Dec;28(48):68862-68870. doi: 10.1007/s11356-021-14893-4. Epub 2021 Jul 19.

Abstract

Pharmaceuticals are present in natural waters, thus contributing to the general exposure of aquatic organisms, but few data are available on the accumulation of these substances in marine organisms. The present study evaluated the in vivo bioconcentration of an antidepressant-venlafaxine (VLF)-in marine mussels (Mytilus galloprovincialis) during 7 days of exposure at nominal 10 μg/L concentration, followed by a 7-day depuration period. The bioconcentration factor (BCF) was 265 mL/g dry weight (dw). VLF accumulation reached an average tissue concentration of 2146 ± 156 ng/g dw within 7 days, showing a first-order kinetics process. N-desmethylvenlafaxine (N-VLF) and O-desmethylvenlafaxine (O-VLF) metabolites were quantified in mussel tissues, whereas N,N-didesmethylvenlafaxine (NN-VLF) was only recorded as being detected. These three metabolites were also quantified in water, indicating an active metabolism and VLF excretion in Mediterranean mussels. Complementary experiments conducted at nominal concentrations of 1, 10, and 100 μg/L for 7 days confirmed the VLF bioconcentration and metabolism and allowed us to quantify a supplementary metabolite, i.e., N,O-didesmethylvenlafaxine (NO-VLF), in mussel tissues. These results encourage further research on a more complete characterization of metabolism and on any disturbances linked to bioconcentration of VLF on bivalves.

摘要

药品存在于天然水中,从而导致水生生物普遍暴露于这些物质中,但关于这些物质在海洋生物中的积累的数据很少。本研究评估了在 10μg/L 浓度下暴露 7 天后,海洋贻贝(Mytilus galloprovincialis)体内文拉法辛(VLF)的生物浓缩情况,随后进行了 7 天的净化期。生物浓缩系数(BCF)为 265 mL/g 干重(dw)。VLF 积累在 7 天内达到平均组织浓度 2146±156ng/g dw,表现出一级动力学过程。在贻贝组织中定量检测到 N-去甲基文拉法辛(N-VLF)和 O-去甲基文拉法辛(O-VLF)代谢物,而 N,N-二去甲基文拉法辛(NN-VLF)仅被记录为检测到。这三种代谢物也在水中进行了定量检测,表明文拉法辛在 Mediterranean 贻贝中存在活跃的代谢和排泄。在 1、10 和 100μg/L 三个浓度下进行的补充实验,进一步证实了 VLF 的生物浓缩和代谢作用,并允许我们在贻贝组织中定量检测到一种补充代谢物,即 N,O-二去甲基文拉法辛(NO-VLF)。这些结果鼓励进一步研究文拉法辛在双壳类动物中的生物浓缩对代谢的更全面的特征化,以及任何与生物浓缩相关的干扰。

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