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DryLab®优化二维高效液相色谱法以区分基于麻黄碱和伪麻黄碱的甲基苯丙胺样品。

DryLab® optimised two-dimensional high performance liquid chromatography for differentiation of ephedrine and pseudoephedrine based methamphetamine samples.

作者信息

Andrighetto Luke M, Stevenson Paul G, Pearson James R, Henderson Luke C, Conlan Xavier A

机构信息

Centre For Chemistry and Biotechnology, School of Life and Environmental Sciences Deakin University, Geelong 3216, Australia.

出版信息

Forensic Sci Int. 2014 Nov;244:302-5. doi: 10.1016/j.forsciint.2014.09.018.

Abstract

In-silico optimised two-dimensional high performance liquid chromatographic (2D-HPLC) separations of a model methamphetamine seizure sample are described, where an excellent match between simulated and real separations was observed. Targeted separation of model compounds was completed with significantly reduced method development time. This separation was completed in the heart-cutting mode of 2D-HPLC where C18 columns were used in both dimensions taking advantage of the selectivity difference of methanol and acetonitrile as the mobile phases. This method development protocol is most significant when optimising the separation of chemically similar chemical compounds as it eliminates potentially hours of trial and error injections to identify the optimised experimental conditions. After only four screening injections the gradient profile for both 2D-HPLC dimensions could be optimised via simulations, ensuring the baseline resolution of diastereomers (ephedrine and pseudoephedrine) in 9.7 min. Depending on which diastereomer is present the potential synthetic pathway can be categorized.

摘要

本文描述了对一个甲基苯丙胺缉获模型样品进行计算机模拟优化的二维高效液相色谱(2D-HPLC)分离,其中观察到模拟分离与实际分离之间有很好的匹配。目标化合物的分离在显著减少方法开发时间的情况下完成。这种分离是在2D-HPLC的中心切割模式下完成的,两个维度均使用C18柱,利用甲醇和乙腈作为流动相的选择性差异。当优化化学结构相似化合物的分离时,该方法开发方案最为重要,因为它消除了为确定优化实验条件而可能需要的数小时试错进样。仅经过四次筛选进样,就可以通过模拟优化2D-HPLC两个维度的梯度曲线,确保在9.7分钟内实现非对映异构体(麻黄碱和伪麻黄碱)的基线分离。根据存在的非对映异构体,可以对潜在的合成途径进行分类。

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