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使用按需滴液分配器系统进行色谱定量分析时的小体积剂量。

The dosage of small volumes for chromatographic quantifications using a drop-on-demand dispenser system.

作者信息

Englmann Matthias, Fekete Agnes, Gebefügi Istvan, Schmitt-Kopplin Philippe

机构信息

Institute of Ecological Chemistry, GSF National Research Center for Environment and Health, Ingolstädter Landstrasse 1, Neuherberg, Germany.

出版信息

Anal Bioanal Chem. 2007 Jul;388(5-6):1109-16. doi: 10.1007/s00216-007-1335-7. Epub 2007 Jun 5.

Abstract

A commercially available piezo-driven drop-on-demand dispenser was tested for its suitability for the preparation of analytical calibration standards and in a standard addition approach prior to quantitative ultra performance liquid chromatography (UPLC) analysis of homoserines. The reproducibility of the drop-on-demand dosing system was tested and the verification of the droplet volume was performed by preparing a series of 1.0 mg/L caffeine standard solutions from a 1,000.0 mg/L stock solution and analysis of the concentrations obtained by UPLC. The reproducibility was better than 1% relative standard deviation from measurement to measurement and the highest was 1.6% from day to day. The results were compared with the conventional way of generating standard solutions (pipetting). A gravimetric method and a photography-based method for the determination of the average single droplet volume were compared and found to be in very good agreement. The system was employed for the quantification of N-decanoyl homoserine by standard addition in bacterial culture supernatants containing this analyte. The agreement with conventional quantification techniques was high. The paper shows the feasibility of the approach with advantages in low sample and solvent volume consumption and very good reproducibility and reliability combined with easy usage. Figure Ejected droplet, 60 mus after application of the pulse.

摘要

对一种市售的压电驱动按需滴液分配器进行了测试,以评估其是否适用于制备分析校准标准品,以及在对高丝氨酸进行定量超高效液相色谱(UPLC)分析之前采用标准加入法时的适用性。测试了按需滴液给药系统的重现性,并通过从1000.0 mg/L储备溶液制备一系列1.0 mg/L咖啡因标准溶液并分析通过UPLC获得的浓度来进行液滴体积的验证。测量之间的重现性优于1%相对标准偏差,最高的日间重现性为1.6%。将结果与生成标准溶液的传统方法(移液)进行了比较。比较了用于测定平均单滴体积的重量法和基于摄影的方法,发现两者非常吻合。该系统用于通过标准加入法对含有该分析物的细菌培养上清液中的N-癸酰高丝氨酸进行定量。与传统定量技术的一致性很高。本文展示了该方法的可行性及其优点,即样品和溶剂量消耗低、重现性和可靠性非常好且使用简便。图施加脉冲60微秒后的喷射液滴。

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