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Rapid method development for chiral separation in drug discovery using multi-column parallel screening and circular dichroism signal pooling

机译:利用多柱平行筛选和圆二色性信号池快速开发药物发现中的手性分离方法

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A novel strategy for rapid chiral method development has been developed using multi-column parallel screening and circular dichroism (CD) signal pooling. Described is the first use of a customized HPLC system that integrates an HPLC auto-sampler, one pump and five divided channels with five columns and five UV detectors to screen five chiral stationary phases (CSPs) simultaneously in parallel. A high-pressure semi-prep on-line pre-filter, a six-port manifold and five individually adjusted backpressure restrictors were installed in the system which allowed the sample and mobile phase to be evenly distributed over the five columns and UV detectors. The five CSPs, namely Chiralpak AD and AS, Chiralcel OJ and OD and Whelk-O1, were screened. The system guarantees a five-fold increase in speed for chiral column scouting compared with the widely used automated sequential column switching approach, and does not have the limitations of the coupled column screening approach for enantiomers whose elution order could be reversed on CSPs. Furthermore, the five channels after the UV detectors were recombined using a reversed flow splitter into a CD detector. The pooled CD signal from the five channels was recorded to track the elution order of the resolved enantiomers and to determine their sign, positive or negative. The signal pooling allows for the effective use of a single CD detector for multiple columns since unresolved racemate has little CD signal, and observing the sign of CD signal for one of the two enantiomer UV peaks is sufficient for tracking the enantiomeric elution order. (C) 2004 Elsevier B.V. All rights reserved.
机译:使用多柱平行筛选和圆二色性(CD)信号池已开发出一种快速手性方法开发的新策略。描述的是首次使用定制的HPLC系统,该系统集成了HPLC自动进样器,一个泵和五个带五个色谱柱的通道和五个紫外检测器,以同时并行筛选五个手性固定相(CSP)。系统中安装了高压半制备在线预滤器,六通歧管和五个单独调节的背压限流器,使样品和流动相均匀分布在五根色谱柱和紫外检测器上。筛选了五个CSP,即Chiralpak AD和AS,Chiralcel OJ和OD和Whelk-O1。与广泛使用的自动顺序色谱柱切换方法相比,该系统可确保手性色谱柱侦查速度提高五倍,并且不存在对映体偶联柱筛选方法的局限性,其对映体在CSP上的洗脱顺序可以颠倒。此外,使用反向分流器将UV检测器后的五个通道重组为CD检测器。记录来自五个通道的合并CD信号,以追踪拆分的对映异构体的洗脱顺序并确定其符号(阳性或阴性)。由于未解析的外消旋体几乎没有CD信号,因此信号池可将单个CD检测器有效地用于多列,并且观察两个对映异构体UV峰之一的CD信号的信号足以跟踪对映体洗脱顺序。 (C)2004 Elsevier B.V.保留所有权利。

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