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首页> 外文期刊>Analytical methods >Analysis of multiclass cyanotoxins (microcystins, anabaenopeptins, cylindrospermopsin and anatoxins) in lake waters using on-line SPE liquid chromatography high-resolution Orbitrap mass spectrometry
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Analysis of multiclass cyanotoxins (microcystins, anabaenopeptins, cylindrospermopsin and anatoxins) in lake waters using on-line SPE liquid chromatography high-resolution Orbitrap mass spectrometry

机译:在线SPE液相色谱高分辨率壁图质谱法分析湖水中湖水中湖水中多烷氰基毒素(微囊藻,Anabepeptins,Cylindrosmopsin和anaToxins)

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摘要

Harmful algal blooms (HABs) of cyanobacterial origin have the potential to generate hundreds of secondary metabolites referred to as cyanotoxins. Freshwater resources have been threatened by HABs and an increase of these episodes is of major concern worldwide for risk management and ecosystem impacts. To meet the need to rapidly screen a wide range of cyanotoxins, a multi-toxin method based on on-line solid-phase extraction ultra-high performance liquid chromatography high-resolution mass spectrometry (SPE-UHPLC-HRMS) was developed and validated. This method enabled high-throughput screening of cylindrospermopsin, anatoxin-a, homoanatoxin-a, anabaenopeptins A and B, and twelve microcystins (-RR, [Asp(3)]-RR, -YR, -HtyR, -LR, [Asp(3)]-LR, -HilR, -WR, -LA, -LY, -LW and -LF) in recreational lake waters. Extraction and separation were achieved in 8 minutes, with limits of detection between 8 and 53 ng L-1. The method offered suitable precision for environmental samples (generally <20%), accuracy (81-113%), and low relative matrix effects (<29%). The method was used to analyze lake samples collected in Canada through a collaborative citizen-science project (Adopt a Lake campaign). The determination of 8 out of 17 targeted cyanotoxins from low ng L-1 to mu g L-1 levels in these surface water samples showed the versatility of the method. MC-LR was detected in 75% of samples (0.03-3.5 mu g L-1) and anabaenopeptins A and B in 38% of samples at concentrations of up to 10 mu g L-1. A retrospective screening of extracted full scan HRMS chromatograms also suggested the presence of infrequently monitored MCs in these lake samples.
机译:Cyanobacterial来源的有害藻类绽放(HAB)具有产生数百种次级代谢物,称为氰毒素。淡水资源受到危害的威胁,这些事件的增加是全球范围内的主要关注风险管理和生态系统影响。为了满足快速筛选各种氰毒素的需要,开发并验证了一种基于在线固相萃取超高效液相色谱(SPE-UHPLC-HRMS)的多毒素方法。该方法使圆柱植物蛋白,蒽酮-A,均烷蛋白-A,AnabaEnopeptins A和B和12微肾上腺素(-RR,[Asp(3)] - Rr,-Hy,-Htyr,-LR,[ASP (3)] - LR,-HILR,-WR,-LA,-LY,-LW和-LF)在娱乐湖水域。在8分钟内达到提取和分离,具有8-53ng L-1之间的检测限。该方法为环境样品(一般<20%),精度(81-113%)和低相对矩阵效应(<29%)提供了合适的精度。该方法用于通过协作市民科学项目(采用湖泊活动)分析加拿大收集的湖水样本。在这些表面水样中的低Ng L-1至Mu g L-1水平中测定来自17个靶向氰毒素的8个,显示了该方法的多功能性。在75%的样品(0.03-3.5μg1-1)中检测MC-LR,在高达10μg1-1的浓度的38%的样品中检测到75%的样品(0.03-3.5μg1-1)和B.提取的全扫描HRMS色谱图的回顾性筛选还提出了这些湖水样本中不经常监测的MC。

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