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脉冲光降低了藻类毒素冈田酸对淡水甲壳类动物大型蚤的毒性。

Pulsed light reduces the toxicity of the algal toxin okadaic acid to freshwater crustacean Daphnia pulex.

机构信息

Department of Life & Physical Science, Athlone Institute of Technology, Dublin Road, Athlone, Co. Westmeath, Ireland.

Bioscience Research Institute, Athlone Institute of Technology, Dublin Road, Athlone, Co. Westmeath, Ireland.

出版信息

Environ Sci Pollut Res Int. 2018 Jan;25(1):607-614. doi: 10.1007/s11356-017-0472-6. Epub 2017 Oct 19.

Abstract

This constitutes the first study to report on the reduction in toxicity of the dinoflagellate algal toxin okadaic acid after novel pulsed light (PL) treatments where ecotoxicological assessment was performed using a miniaturised format of the conventional in vivo freshwater crustacean Daphnia sp. acute toxicity test. Bivalves accumulate this toxin, which can then enter the human food chain causing deleterious health effects such as diarrhetic shellfish poisoning. This miniaturised toxicological bioassay used substantially less sample volume and chemical reagents. Findings revealed a 24-h EC of 25.87 μg/L for PL-treated okadaic acid at a UV dose of 12.98 μJ/cm compared to a 24-h EC of 1.68 μg/L for the untreated okadaic acid control, suggesting a 15-fold reduction in toxicity to Daphnia pulex. The bioassay was validated in this study and correlated well with the "classic" ISO format (r = 0.98) using the traditional reference chemical potassium dichromate (KCrO). Reduction by up to 65% in PL-treated okadaic acid concentration was confirmed by LC-MS/MS analysis. Findings from this study have positive ecological, societal and enterprise implications, such as the development of PL technology for the prevention or reduce algal contamination of fisheries and aquaculture industries.

摘要

这是第一项报告新型脉冲光 (PL) 处理后甲藻毒素 okadaic 酸毒性降低的研究,该研究采用改良的常规淡水甲壳类动物急性毒性试验对其进行了生态毒理学评估。贝类会积累这种毒素,而毒素会进入人类食物链,从而对健康造成有害影响,如腹泻性贝类中毒。这种微型毒理学生物测定法使用的样本量和化学试剂要少得多。研究结果表明,在 12.98 μJ/cm 的紫外线剂量下,经 PL 处理的 okadaic 酸的 24 小时 EC 为 25.87 μg/L,而未经处理的 okadaic 酸对照物的 24 小时 EC 为 1.68 μg/L,表明对 Daphnia pulex 的毒性降低了 15 倍。本研究对生物测定法进行了验证,与使用传统参考化学物质重铬酸钾 (KCrO) 的“经典” ISO 格式相关性良好(r = 0.98)。LC-MS/MS 分析证实,经 PL 处理的 okadaic 酸浓度降低了高达 65%。本研究的结果具有积极的生态、社会和企业意义,例如开发 PL 技术来预防或减少渔业和水产养殖业的藻类污染。

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