Turner Andrew D, Waack Julia, Lewis Adam, Edwards Christine, Lawton Linda
Centre for Environment, Fisheries and Aquaculture Science, Barrack Road, The Nothe, Weymouth, Dorset DT4 8UB, United Kingdom.
Centre for Environment, Fisheries and Aquaculture Science, Barrack Road, The Nothe, Weymouth, Dorset DT4 8UB, United Kingdom; Robert Gordon University, School of Pharmacy and Life Sciences, Sir Ian Wood Building, Garthdee Road, Aberdeen AB10 7QB, United Kingdom.
J Chromatogr B Analyt Technol Biomed Life Sci. 2018 Feb 1;1074-1075:111-123. doi: 10.1016/j.jchromb.2017.12.032. Epub 2017 Dec 28.
A simple, rapid UHPLC-MS/MS method has been developed and optimised for the quantitation of microcystins and nodularin in wide variety of sample matrices. Microcystin analogues targeted were MC-LR, MC-RR, MC-LA, MC-LY, MC-LF, LC-LW, MC-YR, MC-WR, [Asp3] MC-LR, [Dha7] MC-LR, MC-HilR and MC-HtyR. Optimisation studies were conducted to develop a simple, quick and efficient extraction protocol without the need for complex pre-analysis concentration procedures, together with a rapid sub 5min chromatographic separation of toxins in shellfish and algal supplement tablet powders, as well as water and cyanobacterial bloom samples. Validation studies were undertaken on each matrix-analyte combination to the full method performance characteristics following international guidelines. The method was found to be specific and linear over the full calibration range. Method sensitivity in terms of limits of detection, quantitation and reporting were found to be significantly improved in comparison to LC-UV methods and applicable to the analysis of each of the four matrices. Overall, acceptable recoveries were determined for each of the matrices studied, with associated precision and within-laboratory reproducibility well within expected guidance limits. Results from the formalised ruggedness analysis of all available cyanotoxins, showed that the method was robust for all parameters investigated. The results presented here show that the optimised LC-MS/MS method for cyanotoxins is fit for the purpose of detection and quantitation of a range of microcystins and nodularin in shellfish, algal supplement tablet powder, water and cyanobacteria. The method provides a valuable early warning tool for the rapid, routine extraction and analysis of natural waters, cyanobacterial blooms, algal powders, food supplements and shellfish tissues, enabling monitoring labs to supplement traditional microscopy techniques and report toxicity results within a short timeframe of sample receipt. The new method, now accredited to ISO17025 standard, is simple, quick, applicable to multiple matrices and is highly suitable for use as a routine, high-throughout, fast turnaround regulatory monitoring tool.
已开发并优化了一种简单、快速的超高效液相色谱-串联质谱法,用于定量分析多种样品基质中的微囊藻毒素和节球藻毒素。所针对的微囊藻毒素类似物包括MC-LR、MC-RR、MC-LA、MC-LY、MC-LF、LC-LW、MC-YR、MC-WR、[Asp3]MC-LR、[Dha7]MC-LR、MC-HilR和MC-HtyR。开展了优化研究,以制定一种简单、快速且高效的提取方案,无需复杂的分析前浓缩程序,同时能在不到5分钟的时间内对贝类和藻类补充剂片剂粉末以及水和蓝藻水华样品中的毒素进行快速色谱分离。按照国际指南,对每种基质-分析物组合进行了验证研究,以确定整个方法的性能特征。结果发现,该方法在整个校准范围内具有特异性和线性。与液相色谱-紫外检测法相比,该方法在检测限、定量限和报告限方面的灵敏度有显著提高,且适用于四种基质中每种基质的分析。总体而言,所研究的每种基质的回收率均可接受,相关精密度和实验室内重现性均在预期指导范围内。对所有可用蓝藻毒素进行的正式耐用性分析结果表明,该方法对所研究的所有参数均具有稳健性。此处给出的结果表明,优化后的蓝藻毒素液相色谱-串联质谱法适用于检测和定量贝类、藻类补充剂片剂粉末、水和蓝藻中的一系列微囊藻毒素和节球藻毒素。该方法为天然水、蓝藻水华、藻类粉末、食品补充剂和贝类组织的快速常规提取和分析提供了有价值的预警工具,使监测实验室能够补充传统显微镜技术,并在收到样品后的短时间内报告毒性结果。这种新方法现已获得ISO17025标准认可,操作简单、快速,适用于多种基质,非常适合用作常规、高通量、快速周转的监管监测工具。