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Novel Approach to Optimization of a High-Throughput Semipreparative LC/MS System

机译:高通量半制备LC / MS系统优化的新方法

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Automated semipreparative LC/MS systems are now well established commercially and commonly used for purification of early stage drug discovery compounds. A number of vendors have instruments on the market that are capable of reliably purifying compounds with good water/acetonitrile solubility. However, these systems often fail when the sample has poor solubility, extreme polarity, and/or poor ionization. Even in cases when substantial optimization has been done prior to purification, a certain percent of failures to recover the desired product is unavoidable. In the past, when the majority of samples run on LC/MS semipreparative systems were large combinatorial libraries, some losses in this high throughput mode were acceptable. However, now that more chemistry laboratories are making smaller more focused libraries with higher purity requirements, reliability and recovery are more crucial. This paper describes modifications made to customize an MS-triggered semipreparative LC/MS system in order to ensure improved reliability and recovery of products from traditional medicinal chemistry as well as combinatorial libraries.
机译:如今,自动化的半制备型LC / MS系统在商业上已经很完善,通常用于纯化早期药物发现化合物。市场上有许多供应商的仪器能够可靠地纯化具有良好水/乙腈溶解度的化合物。但是,当样品的溶解度差,极性极端和/或电离差时,这些系统通常会失效。即使在纯化前已进行了实质性优化的情况下,也无法避免一定百分比的回收所需产物的失败。过去,当在LC / MS半制备系统上运行的大多数样品是大型组合库时,这种高通量模式下的某些损失是可以接受的。但是,现在越来越多的化学实验室正在制作更小,更集中,对纯度有更高要求的文库,可靠性和回收率变得更加重要。本文介绍了为定制MS触发的半制备型LC / MS系统而进行的修改,以确保提高可靠性和从传统药物化学以及组合库中回收产品。

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