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首页> 外文期刊>Frontiers in Marine Science >Evaluation of Immobilized Metal-Ion Affinity Chromatography and Electrospray Ionization Tandem Mass Spectrometry for Recovery and Identification of Copper(II)-Binding Ligands in Seawater Using the Model Ligand 8-Hydroxyquinoline
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Evaluation of Immobilized Metal-Ion Affinity Chromatography and Electrospray Ionization Tandem Mass Spectrometry for Recovery and Identification of Copper(II)-Binding Ligands in Seawater Using the Model Ligand 8-Hydroxyquinoline

机译:固定化金属离子亲和色谱法和电喷雾电离串联质谱法对配体8-羟基喹啉配体中铜(II)结合配体的回收和鉴定的评价

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Complexation by organic ligands dominates the speciation of iron (Fe), copper (Cu), and other bioactive trace metals in seawater, controlling their bioavailability and distribution in the marine environment. Several classes of high-affinity Fe-binding ligands (siderophores) have been identified in seawater but the chemical structures of marine Cu-complexing ligands remain unknown. Immobilized metal-ion affinity chromatography (IMAC) allows Cu ligands to be isolated from bulk dissolved organic matter (DOM) in seawater and separated into fractions which can be characterized independently using electrochemical and spectroscopic techniques. Attempts have been made to combine IMAC with electrospray ionization mass spectrometry (ESI-MS) to characterize marine Cu ligands, but results have proven inconclusive due to the lack of tandem mass spectrometry (MS/MS) data to confirm ligand recovery. We used 8-hydroxyquinoline (8-HQ), a well-characterized model ligand that forms strong 1:2 metal:ligand complexes with Cu2+ at pH 8 (log β2 = 18.3), to evaluate Cu(II)-IMAC and ESI-MS/MS for recovery and identification of copper(II)-complexing ligands in seawater. One-litre samples of 0.45μm-filtered surface seawater were spiked with 8-HQ at low concentrations (up to 100 nM) and fractionated by IMAC. Fractions eluted with acidified artificial seawater were desalted and re-suspended in methanol via solid-phase extraction (SPE) to obtain extracts suitable for ESI-MS analysis. Recovery of 8-HQ by Cu(II)-IMAC was confirmed unambiguously by MS/MS and found to average 81% based upon accurate quantitation via multiple reaction monitoring (MRM). Cu(II)-IMAC fractionation of unspiked seawater using multiple UV detection wavelengths suggests an optimal fraction size of 2 mL for isolating and analyzing Cu ligands with similar properties.
机译:有机配体的络合控制了海水中铁(Fe),铜(Cu)和其他生物活性痕量金属的形态,控制了它们在海洋环境中的生物利用度和分布。在海水中已鉴定出几类高亲和力的Fe结合配体(铁载体),但海洋铜络合配体的化学结构仍然未知。固定的金属离子亲和色谱(IMAC)可以从海水中的大量溶解有机物(DOM)中分离出铜配体,然后将其分离成可以使用电化学和光谱技术独立表征的馏分。曾尝试将IMAC与电喷雾电离质谱(ESI-MS)结合以表征海洋铜配体,但由于缺乏用于确定配体回收的串联质谱(MS / MS)数据,因此结果尚无定论。我们使用了8-羟基喹啉(8-HQ)(一种表征良好的模型配体,可在pH 8下与Cu2 +形成强1:2的金属:配体配合物(对数β2= 18.3)来评估Cu(II)-IMAC和ESI- MS / MS用于回收和鉴定海水中复杂的铜(II)配体。将一升0.45μm滤过的表面海水样品以低浓度(最高100 nM)的8-HQ加标,并通过IMAC分离。将用酸化的人造海水洗脱的馏分脱盐,然后通过固相萃取(SPE)重悬在甲醇中,以获得适用于ESI-MS分析的萃取液。 MS / MS明确确认了通过Cu(II)-IMAC回收8-HQ,根据多反应监测(MRM)的准确定量,回收率平均为81%。使用多个紫外检测波长对未加标海水进行Cu(II)-IMAC分馏,建议分离和分析具有相似特性的Cu配体的最佳分馏大小为2 mL。

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