首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Chiral determination of various adrenergic drugs by thin-layer chromatography using molecularly imprinted chiral stationary phases prepared with alpha-agonists
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Chiral determination of various adrenergic drugs by thin-layer chromatography using molecularly imprinted chiral stationary phases prepared with alpha-agonists

机译:使用α-激动剂制备的分子印迹手性固定相通过薄层色谱进行手性测定

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Thin-layer chromatography (TLC) based on molecularly imprinted polymers (MIPs) of ol-agonists as chiral stationary phases was applied to the determination of enantiomers of various adrenergic drugs including alpha- and B-agonists and B-antagonists (B-blockers). In this study, three MIPs imprinted with (+)-ephedrine, (+)-pseudoephedrine and (+)-norephedrine plus a non-imprinted polymer (non-MIP) were prepared, processed and coated on a glass support as thin layers. Then enantiomeric determination of adrenergic drugs was carried out by development of their racemates on the TLC plates, using established conditions. From the results, the racemates of the compounds used as print molecules were well separated into two isomers on the MIP-plates, except on the plate based on MIP of (+)-norephedrine. Most adrenergic drugs structurally related to print molecules were completely resolved into two spots with the MIP plates. In general, the retention of (+)-isomers (or 1S-isomers) was greater than that of (-)-isomers (or 1R-isomers), indicating the stereoselectivity of the MIPs with the former isomers. Moreover, the role between the chemical structures of the analytes with chiral recognition of the MIPs has been investigated. The proposed method enables rapid determination of enantiomers and screening of large numbers for optical purity of adrenergic drugs. [References: 32]
机译:将基于分子激动剂分子印迹聚合物(MIP)作为手性固定相的薄层色谱(TLC)用于测定各种肾上腺素能药物的对映异构体,包括α和B激动剂和B拮抗剂(B受体阻滞剂) 。在这项研究中,制备了三个印有(+)-麻黄碱,(+)-伪麻黄碱和(+)-去氧麻黄碱以及非印迹聚合物(non-MIP)的MIP,将其加工并以薄层形式涂布在玻璃载体上。然后,在既定条件下,通过在TLC平板上显影消旋体,进行肾上腺素能药物的对映体测定。根据结果​​,除了在基于(+)-去氧麻黄碱的基于MIP的板上以外,在MIP板上将用作印刷分子的化合物的外消旋物很好地分离成两个异构体。在结构上与印刷分子有关的大多数肾上腺素药物都可以通过MIP板完全分解为两个斑点。通常,(+)-异构体(或1S-异构体)的保留大于(-)-异构体(或1R-异构体),表明MIP与以前的异构体具有立体选择性。此外,已经研究了在分析物的化学结构与手性MIP之间的作用。所提出的方法能够快速确定对映异构体并筛选大量肾上腺素能药物的光学纯度。 [参考:32]

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