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使用 ADE-OPI-MS 从相分离的液体样品中直接分析:用于二酰基甘油酰基转移酶 2 抑制剂高通量筛选的适用性。

Direct Analysis from Phase-Separated Liquid Samples using ADE-OPI-MS: Applicability to High-Throughput Screening for Inhibitors of Diacylglycerol Acyltransferase 2.

机构信息

Merck & Company, Incorporated, 2000 Galloping Hill Road, Kenilworth, New Jersey 07033, United States.

SCIEX, 71 Four Valley Drive, Concord, Ontario L4K 4 V8, Canada.

出版信息

Anal Chem. 2021 Apr 20;93(15):6071-6079. doi: 10.1021/acs.analchem.0c04312. Epub 2021 Apr 5.

Abstract

The primary goal of high-throughput screening (HTS) is to rapidly survey a broad collection of compounds, numbering from tens of thousands to millions of members, and identify those that modulate the activity of a therapeutic target of interest. For nearly two decades, mass spectrometry has been used as a label-free, direct-detection method for HTS and is widely acknowledged as being less susceptible to interferences than traditional optical techniques. Despite these advantages, the throughput of conventional MS-based platforms like RapidFire or parallel LC-MS, which typically acquire data at speeds of 6-30 s/sample, can still be limiting for large HTS campaigns. To overcome this bottleneck, the field has recently turned to chromatography-free approaches including MALDI-TOF-MS and acoustic droplet ejection-MS, both of which are capable of throughputs of 1 sample/second or faster. In keeping with these advances, we report here on our own characterization of an acoustic droplet ejection, open port interface (ADE-OPI)-MS system as a platform for HTS using the membrane-associated, lipid metabolizing enzyme diacylglycerol acyltransferase 2 (DGAT2) as a model system. We demonstrate for the first time that the platform is capable of ejecting droplets from phase-separated samples, allowing direct coupling of liquid-liquid extraction with OPI-MS analysis. By applying the platform to screen a 6400-member library, we further demonstrate that the ADE-OPI-MS assay is suitable for HTS and also performs comparably to LC-MS, but with an efficiency gain of >20-fold.

摘要

高通量筛选 (HTS) 的主要目标是快速筛选大量化合物,化合物数量从数万到数百万个不等,并鉴定出那些能调节目标治疗靶点活性的化合物。近二十年来,质谱已被用作 HTS 的无标记、直接检测方法,并且被广泛认为比传统的光学技术更不易受到干扰。尽管有这些优势,但 RapidFire 或平行 LC-MS 等传统基于 MS 的平台的通量通常在 6-30 s/sample 之间,对于大型 HTS 活动来说仍然可能受到限制。为了克服这个瓶颈,该领域最近转向了无色谱方法,包括 MALDI-TOF-MS 和声波喷射式液滴萃取-MS,这两种方法的通量都可以达到 1 个样品/秒或更快。在此背景下,我们报告了我们自己对声波喷射式、开放式端口接口 (ADE-OPI)-MS 系统的特征描述,该系统作为使用膜相关的脂质代谢酶二酰基甘油酰基转移酶 2 (DGAT2)作为模型系统进行 HTS 的平台。我们首次证明该平台能够从相分离的样品中喷射液滴,从而允许与 OPI-MS 分析直接耦合液-液萃取。通过将该平台应用于筛选一个包含 6400 个成员的文库,我们进一步证明 ADE-OPI-MS 测定法适用于 HTS,并且与 LC-MS 性能相当,但效率提高了 >20 倍。

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