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首页> 外文期刊>Analytical and Bioanalytical Chemistry >LC-MS-MS aboard ship: tandem mass spectrometry in the search for phycotoxins and novel toxigenic plankton from the North Sea
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LC-MS-MS aboard ship: tandem mass spectrometry in the search for phycotoxins and novel toxigenic plankton from the North Sea

机译:船上LC-MS-MS:串联质谱法从北海寻找藻毒素和新型产毒浮游生物

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Phycotoxins produced by various species of toxigenic microalgae occurring in the plankton are a global threat to the security of seafood resources and the health of humans and coastal marine ecosystems. This has necessitated the development and application of advanced methods in liquid chromatography coupled to mass spectrometry (LC-MS) for monitoring of these compounds, particularly in plankton and shellfish. Most such chemical analyses are conducted in land-based laboratories on stored samples, and thus much information on the near real-time biogeographical distribution and dynamics of phycotoxins in the plankton is unavailable. To resolve this problem, we conducted ship-board analysis of a broad spectrum of phycotoxins collected directly from the water column on an oceanographic cruise along the North Sea coast of Scotland, Norway, and Denmark. We equipped the ship with a triple-quadrupole linear ion-trap hybrid LC-MS-MS system for detection and quantitative analysis of toxins, such as domoic acid, gymnodimine, spirolides, dinophysistoxins, okadaic acid, pectenotoxins, yessotoxins, and azaspiracids (AZAs). We focused particular attention on the detection of AZAs, a group of potent nitrogenous polyether toxins, because the culprit species associated with the occurrence of these toxins in shellfish has been controversial. Marine toxins were analyzed directly from size-fractionated plankton net tows (20 μm mesh size) and Niskin bottle samples from discrete depths, after rapid methanolic extraction but without any further clean-up. Almost all expected phycotoxins were detected in North Sea plankton samples, with domoic acid and 20-methylspirolide G being most abundant. Although AZA was the least abundant of these toxins, the high sensitivity of the LC-MS-MS enabled detailed quantification, indicating that the highest amounts of AZA-1 were present in the southern Skagerrak in the 3–20 μm size-fraction. The direct on-board toxin measurements enabled isolation of plankton from stations with high AZA-1 levels and from the most suspicious size-fraction, i.e. most likely to contain the AZA-producer. A large number (>100) of crude cultures were established by serial dilution and later screened for the presence of AZAs after several weeks growth. From one crude culture containing AZA, a small dinoflagellate was subsequently isolated and brought into pure culture. We have thus proved that even sophisticated mass spectrometers can be operated in ship laboratories without any limitation caused by vibrations of the ship’s engine or by wave movement during heavy seas at wind forces up to nine Beaufort. On-board LC–MS–MS is a valuable method for near real-time analysis of phycotoxins in plankton for studies on bloom dynamics and the fate of toxins in the food web, and for characterization and isolation of putatively toxigenic organisms.
机译:浮游生物中各种产毒微藻产生的藻毒素是对海鲜资源安全以及人类和沿海海洋生态系统健康的全球威胁。这就需要开发和应用先进的方法在液相色谱与质谱联用(LC-MS)中监测这些化合物,特别是在浮游生物和贝类中。大多数此类化学分析是在陆上实验室对储存的样品进行的,因此无法获得有关浮游生物中藻毒素的近实时生物地理分布和动态的大量信息。为解决此问题,我们在沿苏格兰,挪威和丹麦的北海海岸进行的海洋航行中,对从水柱中直接收集到的多种藻毒素进行了船上分析。我们为该船配备了三重四极杆线性离子阱混合LC-MS-MS系统,用于检测和定量分析毒素,例如多摩酸,裸子甲胺,螺内酯,狄诺氏物理毒素,冈田酸,果胶毒素,耶索毒素和氮杂spiracids(AZAs) )。我们特别关注AZA(一种有效的含氮聚醚毒素)的检测,因为与贝类中这些毒素的发生有关的罪魁祸首种类一直存在争议。快速甲醇萃取后,无需进一步净化,即可直接从大小不一的浮游生物网状丝束(20μm筛孔尺寸)和Niskin瓶样品中分析海洋毒素。在北海浮游生物样品中几乎检测到了所有预期的藻毒素,其中海藻酸和20-甲基螺内酯G含量最高。尽管AZA是这些毒素中含量最少的,但LC-MS-MS的高灵敏度可以进行详细的定量分析,这表明Skagerrak南部3-20μm大小的馏分中AZA-1的含量最高。船上毒素的直接测量可将浮游生物与AZA-1水平高的站以及最可疑的尺寸分数(即最可能包含AZA产生剂的部位)隔离。通过连续稀释建立大量(> 100)的粗培养物,然后在生长数周后筛选是否存在AZA。随后从一种含有AZA的粗培养物中分离出少量的鞭毛鞭毛藻,并进行纯培养。因此,我们证明,即使在复杂的质谱仪中,也可以在船上实验室中操作,而不受船发动机振动或在波涛汹涌的9级风力中在强海中波动引起的任何限制。板载LC-MS-MS是一种有价值的方法,可用于近实时分析浮游生物中的藻毒素,用于研究开花动力学和食物网中毒素的命运,以及表征和分离推定的产毒素生物。

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