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不同种类的对羟基苯甲酸酯进入海洋环境:对海洋细菌发光杆菌和贻贝的生物影响。

Different isoforms of parabens into marine environment: Biological effects on the bacterium Aliivibrio fischeri and the marine mussel Mytilus galloprovincialis.

机构信息

Department of Biology, School of Natural Sciences, University of Patras, GR-26500 Rio, Patras, Greece.

Department of Biology, School of Natural Sciences, University of Patras, GR-26500 Rio, Patras, Greece.

出版信息

Sci Total Environ. 2023 Nov 20;900:165902. doi: 10.1016/j.scitotenv.2023.165902. Epub 2023 Jul 29.

Abstract

Different isoforms of alkyl esters of p-Hydroxybenzoic acid, also known as parabens, are of great concern due to their widespread presence into the aquatic environment, their high concentrations in wastewater discharges, as well as their ability to induce adverse effects on aquatic organisms. Considering the imperative need for assessing their fate and risk to aquatic environment, the present study investigated the biological effects of two isoforms of parabens, methyl- (MeP) and propyl- (PrP), on the bacterium Aliivibrio fischeri (using the Bioluminescence Inhibition/Microtox® bioassay) and the mussel Mytilus galloprovincialis (in terms of mussel mortality, cellular, oxidative and genotoxic stress indices). The assessment of MeP and PrP behavior into aquatic media (artificial sea water/ASW and 2 % NaCl), primarily performed by UHPLC-UV-MS analysis, showed only a slight hydrolysis of PrP to 4-Hydrobenzoic acid (4-HBA). Furthermore, exposure of both species to different concentrations of each paraben revealed differences among their toxic potential, as well as their ability to cause cellular, oxidative and genotoxic effects on hemocytes of challenged mussels. Interestingly, the Microtox® bioassay showed that PrP mediated toxicity in A. fischeri were more pronounced than MeP, as revealed by the estimated toxic endpoints (in terms of concentration that promote 50 % of bioluminescence inhibition, EC). Similarly, in challenged mussels, a significant disturbance of mussel hemocytes' lysosomal membrane integrity, as well as enhanced levels of superoxides, nitric oxides, lipid peroxidation byproducts, and micronuclei formation were observed. These findings are of great interest, since MeP and PrP differential toxic potential, as well their ability to induce pre-pathological alterations in marine species, like mussels, give new evidence for their risk to aquatic biota.

摘要

对羟基苯甲酸的不同烷基酯异构体,也称为对苯二甲酸酯,由于其广泛存在于水生环境中、在废水排放中的高浓度以及对水生生物产生不利影响的能力而备受关注。考虑到评估其对水生环境的命运和风险的必要性,本研究调查了两种对苯二甲酸酯异构体,即甲基(MeP)和丙基(PrP)对细菌发光菌(使用生物发光抑制/ Microtox®生物测定法)和贻贝贻贝(在贻贝死亡率、细胞、氧化和遗传毒性应激指数方面)的生物学效应。通过超高效液相色谱-紫外-质谱分析(UHPLC-UV-MS)主要对 MeP 和 PrP 在水生介质(人工海水/ASW 和 2%NaCl)中的行为进行了评估,结果仅显示 PrP 略有水解为 4-羟基苯甲酸(4-HBA)。此外,两种物种暴露于不同浓度的每种对苯二甲酸酯中,显示出它们的毒性潜力以及对受挑战贻贝的血细胞造成细胞、氧化和遗传毒性影响的能力存在差异。有趣的是,Microtox®生物测定法表明,PrP 介导的发光菌毒性比 MeP 更为明显,这反映在估计的毒性终点(以促进 50%生物发光抑制的浓度表示,EC)中。同样,在受挑战的贻贝中,观察到贻贝血细胞溶酶体膜完整性明显受到干扰,以及超氧化物、一氧化氮、脂质过氧化产物和微核形成水平升高。这些发现非常有趣,因为 MeP 和 PrP 的毒性潜力存在差异,以及它们在像贻贝这样的海洋物种中诱导前病理改变的能力,为它们对水生生物群的风险提供了新的证据。

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