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Full utilization of a mass spectrometer using on-demand sharing with multiple LC units

机译:通过与多个LC单元按需共享来充分利用质谱仪

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摘要

The applicability of liquid chromatography-mass spectrometry (LC/MS) is often limited by throughput. The sharing of a mass spectrometer with multiple LCs significantly improves throughput; however, the reported systems have not been designed to fully utilize the MS duty cycle, and as a result to achieve maximum throughput. To fully utilize the mass spectrometer, the number of LC units that a MS will need to recruit is application dependent and could be significantly larger than the current commercial or published implementations. For the example of a single analyte, the number may approach the peak capacity to a first degree approximation. Here, the construction of a MS system that flexibly recruits any number of LC units demanded by the application is discussed, followed by the method to port a previously developed LC/MS method to the system to fully utilize a mass spectrometer. To demonstrate the performance and operation, a prototypical MS system of eight LC units was constructed. When 1-min chromatographic separations were performed in parallel on the eight LCs of the system, the average LC/MS analysis time per sample was 10.5 s when applied to the analysis of samples in 384-well plate format. This system has been successfully used to conduct large-volume biochemical assays with the analysis of a variety of molecular entities in support of drug discovery efforts. Allowing the recruitment of the number of LC units appropriate for a given application, this system has the potential to be a plug-and-play system to fully utilize a mass spectrometer.
机译:液相色谱-质谱联用(LC / MS)的适用性通常受到通量的限制。与多个LC共享的质谱仪可显着提高通量;但是,报告的系统尚未设计为充分利用MS占空比,因此无法实现最大的吞吐量。为了充分利用质谱仪,质谱仪需要招募的LC单元数量取决于应用程序,并且可能远远大于当前的商业或公开实施方案。对于单个分析物的例子,数量可以接近峰值容量至第一程度的近似值。在此,将讨论可灵活使用该应用程序所需的任何数量的LC单元的MS系统的结构,然后讨论将先前开发的LC / MS方法移植到系统中以充分利用质谱仪的方法。为了演示性能和操作,构建了一个由八个LC单元组成的原型MS系统。当在系统的八个LC上并行进行1分钟色谱分离时,将其应用于384孔板格式的样品分析时,每个样品的平均LC / MS分析时间为10.5 s。该系统已成功用于进行大量生化分析,并对各种分子实体进行了分析,以支持药物发现工作。允许招募适合给定应用的LC单元数量,该系统有可能成为即插即用系统,以充分利用质谱仪。

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