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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Coupling of acetonitrile deproteinization and salting-out extraction with acetonitrile stacking for biological sample clean-up and the enrichment of hydrophobic compounds (porphyrins) in capillary electrophoresis
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Coupling of acetonitrile deproteinization and salting-out extraction with acetonitrile stacking for biological sample clean-up and the enrichment of hydrophobic compounds (porphyrins) in capillary electrophoresis

机译:乙腈脱蛋白和盐析萃取与乙腈堆叠的耦合,用于生物样品的净化和毛细管电泳中疏水化合物(卟啉)的富集

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摘要

A new sample pretreatment approach in CE was developed for concurrent biological sample clean-up and the concentration of hydrophobic compounds based on the combination of ACN deproteinization with salting-out extraction. Further enhancement in concentration detection sensitivity was achieved by coupling (off line) salting-out extraction with an online CE sample enrichment technique known as "ACN stacking". By optimizing the pH of salting-out extraction, a number of model compounds (hydrophobic porphyrins with clinical significances), i.e. zinc-protoporphyrin, protoporphyrin, and coproporphyrin (CP) III and I, can be efficiently extracted from the aqueous sample into a smaller volume organic solvent (ACN) phase and an enrichment factor of ca. 100 can be obtained. The pressure injection of the enriched ACN phase (containing ca. 1% NaCI) into the CE capillary at 10% capillary volume resulted in additional concentration of the various hydrophobic porphyrins, allowing for a combined enrichment factor of ca. 1000 to be obtained. Calibration curves obtained for the determination of a pair of positional isomers with significant diagnostic value, urinary CPIII and CPI, were found to be linear between 10-300 ng/mL (with R-2 = 0.999), and LODs (absorbance detection at 400 nm) were ca. 0.8 ng/mL (1.1 nmol/L of CPIII or CPI). Based on a single salting-out extraction, intraday precisions (nine consecutive injections) for both CPIII and CPI (at spiked concentrations of 10-300 ng/mL into urine) in terms of migration time and peak area were found to be within the range of 0.2-0.5 and 0.8-2.9%, respectively.
机译:CE的一种新的样品预处理方法被开发出来,用于同时进行生物样品净化和基于ACN脱蛋白与盐析萃取相结合的疏水化合物浓缩。通过与在线CE样品富集技术(称为“ ACN叠加”)耦合(离线)盐析提取,可以进一步提高浓度检测的灵敏度。通过优化盐析提取物的pH,可以有效地从水性样品中提取许多模型化合物(具有临床意义的疏水性卟啉),例如锌-原卟啉,原卟啉和辅卟啉(CP)III和I。体积有机溶剂(ACN)相的富集系数约为可以获得100。将富集的ACN相(含约1%NaCl)以10%的毛细管体积压力注入到CE毛细管中,导致各种疏水性卟啉的浓度进一步增加,从而使总的富集系数达到约3。要获得1000。发现用于测定具有重大诊断价值的一对位置异构体,尿液CPIII和CPI的校准曲线在10-300 ng / mL(R-2 = 0.999)和LOD(400吸光度检测)之间呈线性关系nm)约。 0.8 ng / mL(1.1 nmol / L的CPIII或CPI)。基于一次盐析提取,发现CPIII和CPI(在尿液中的浓度为10-300 ng / mL的加标浓度)的日内精度(连续注入九次)在迁移时间和峰面积方面都在该范围内分别为0.2-0.5%和0.8-2.9%。

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