Lau Chester, Lu Xiufen, Hoy Karen S, Davydiuk Tetiana, Graydon Jennifer A, Reichert Megan, Le X Chris
Department of Chemistry, Faculty of Science, University of Alberta, 11227 Saskatchewan Dr NW, Edmonton, Alberta, T6G 2G2, Canada.
Division of Analytical and Environmental Toxicology, Department of Laboratory Medicine and Pathology, Faculty of Medicine and Dentistry, University of Alberta, 10-102 Clinical Sciences Building, Edmonton, Alberta, T6G 2G3, Canada.
J Environ Sci (China). 2025 Jul;153:302-315. doi: 10.1016/j.jes.2024.12.010. Epub 2024 Dec 15.
Arsenic speciation in freshwater fish is crucial for providing meaningful consumption guidelines that allow the public to make informed decisions regarding its consumption. While marine fish have attracted much research interest due to their higher arsenic content, research on freshwater fish is limited due to the challenges in quantifying and identifying arsenic species present at trace levels. We describe here a sensitive method and its application to the quantification of arsenic species in freshwater fish. Arsenic species from fish tissues were extracted using a methanol/water mixture (1:1 vol. ratio) and ultrasound sonication. Anion-exchange high-performance liquid chromatography (HPLC) enabled separation of arsenobetaine (AsB), inorganic arsenite (iAs), dimethylarsinic acid (DMA), monomethylarsonic acid (MMA), inorganic arsenate (iAs), and three new arsenic species. Inductively coupled plasma mass spectrometry (ICPMS) provided highly sensitive and specific detection of arsenic. A limit of detection of 0.25 µg/kg (wet weight fish tissue) was achieved for the five target arsenic species: AsB, iAs, DMA, MMA, and iAs. A series of experiments were conducted to ensure the accuracy and validity of the analytical method. The method was successfully applied to the determination of arsenic species in lake whitefish, northern pike, and walleye, with AsB, DMA, and iAs being frequently detected. Three new arsenic species were detected, but their chromatographic retention times did not match with those of any available arsenic standards. Future research is necessary to elucidate the identity of these new arsenic species detected in freshwater fish.
淡水鱼中的砷形态对于制定有意义的消费指南至关重要,该指南能让公众在食用淡水鱼时做出明智的决策。虽然海鱼因其较高的砷含量吸引了众多研究兴趣,但由于在定量和鉴定痕量水平存在的砷形态方面面临挑战,关于淡水鱼的研究有限。我们在此描述一种灵敏的方法及其在定量淡水鱼中砷形态的应用。鱼组织中的砷形态用甲醇/水混合物(体积比1:1)通过超声提取。阴离子交换高效液相色谱(HPLC)能够分离砷甜菜碱(AsB)、无机亚砷酸盐(iAs)、二甲基砷酸(DMA)、一甲基砷酸(MMA)、无机砷酸盐(iAs)以及三种新的砷形态。电感耦合等离子体质谱(ICPMS)对砷提供了高灵敏度和高特异性的检测。对于五种目标砷形态:AsB、iAs、DMA、MMA和iAs,实现了0.25 μg/kg(湿重鱼组织)的检测限。进行了一系列实验以确保分析方法的准确性和有效性。该方法成功应用于湖白鲑、白斑狗鱼和大眼狮鲈中砷形态的测定,经常检测到AsB、DMA和iAs。检测到三种新的砷形态,但其色谱保留时间与任何现有的砷标准品均不匹配。有必要开展进一步研究以阐明在淡水鱼中检测到的这些新砷形态的身份。