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采用声学喷射质谱法对极性分析物进行超高通量和无色谱生物分析。

Ultrahigh-Throughput and Chromatography-Free Bioanalysis of Polar Analytes with Acoustic Ejection Mass Spectrometry.

作者信息

Wagner Andrew, Zhang Jun, Liu Chang, Covey Thomas R, Olah Timothy V, Weller Harold Bud N, Shou Wilson Z

机构信息

Bristol-Myers Squibb, 3551 Lawrenceville Princeton Road, Princeton, New Jersey 08648, United States.

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

出版信息

Anal Chem. 2020 Oct 6;92(19):13525-13531. doi: 10.1021/acs.analchem.0c03006. Epub 2020 Sep 25.

Abstract

Bioanalysis of polar analytes using liquid chromatography-tandem mass spectrometry (LC-MS/MS) remains a significant challenge because of their poor chromatographic retention on the commonly used reversed-phase LC columns and the resulting severe ionization suppression from coeluting matrix components. Here we present a novel approach to perform ultrahigh-throughput and chromatography-free bioanalysis of polar compounds using a prototype acoustic ejection mass spectrometer (AEMS) platform. Previously developed for direct analysis of solid or liquid samples by MS, the open port interface (OPI) has recently been modified and coupled to an acoustic nanoliter dispenser to enable high-speed direct MS analysis from 384-well plates with a reported speed as fast as 0.5 s/sample. Ionization suppression was reduced due to the >1000 fold dilution of the original sample by the carrier solvent in the AE-OPI-MS operation. Taking full advantage of the chromatography-free and suppression-reducing features of this prototype instrument, we successfully demonstrated the ultrahigh-throughput bioanalysis of metformin, a small polar substrate commonly used in high-throughput in vitro transporter inhibition assays in the early ADME profiling space in drug discovery. The AEMS platform achieved a speed of 2.2 s/sample using only 10 nL of sample volume. Similar bioanalytical and biological results from actual assay samples were obtained by AEMS when compared to those obtained by the fastest LC-MS/MS method previously reported, along with a 15-fold speed advantage and ∼500-fold less sample consumption to enable future assay miniaturization. The general applicability of this novel approach to bioanalysis of several classes of polar analytes including ethambutol, isoniazid, ephedrine, and gemcitabine in biological matrices was further demonstrated.

摘要

使用液相色谱 - 串联质谱法(LC-MS/MS)对极性分析物进行生物分析仍然是一项重大挑战,因为它们在常用的反相LC柱上的色谱保留性较差,并且共洗脱基质成分会导致严重的电离抑制。在此,我们提出了一种新颖的方法,使用原型声控喷射质谱仪(AEMS)平台对极性化合物进行超高通量且无需色谱分离的生物分析。开放端口接口(OPI)先前是为通过质谱直接分析固体或液体样品而开发的,最近已进行了改进,并与声学纳升分配器耦合,以实现从384孔板进行高速直接质谱分析,报告的速度高达0.5秒/样品。在AE-OPI-MS操作中,由于载体溶剂对原始样品进行了>1000倍的稀释,电离抑制得以降低。充分利用该原型仪器无需色谱分离和减少抑制的特性,我们成功展示了二甲双胍的超高通量生物分析,二甲双胍是一种小极性底物,常用于药物发现早期ADME分析空间中的高通量体外转运体抑制试验。AEMS平台仅使用10 nL的样品体积,实现了2.2秒/样品的速度。与先前报道的最快的LC-MS/MS方法相比,AEMS从实际测定样品中获得了相似的生物分析和生物学结果,同时具有15倍的速度优势和约500倍的更少样品消耗,以实现未来测定的小型化。这种新方法对生物基质中包括乙胺丁醇、异烟肼、麻黄碱和吉西他滨在内的几类极性分析物进行生物分析的普遍适用性得到了进一步证明。

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