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通过高通量解吸电喷雾电离质谱快速探索化学空间

Rapid Exploration of Chemical Space by High-Throughput Desorption Electrospray Ionization Mass Spectrometry.

作者信息

Huang Kai-Hung, Morato Nicolás M, Feng Yunfei, Toney Alexis, Cooks R Graham

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, United States.

出版信息

J Am Chem Soc. 2024 Dec 4;146(48):33112-33120. doi: 10.1021/jacs.4c11037. Epub 2024 Nov 19.

Abstract

This study leverages accelerated reactions at the solution/air interface of microdroplets generated by desorption electrospray ionization (DESI) to explore the chemical space. DESI is utilized to synthesize drug analogs at an overall rate of 1 reaction mixture per second, working on the low-nanogram scale. Transformations of multiple drug molecules at specific functionalities (phenol, hydroxyl, amino, carbonyl, phenyl, thiophenyl, and alkenyl) are achieved using electrophilic/nucleophilic, redox, C-H functionalization, and coupling reactions. These transformations occur under ambient conditions on the millisecond time scale with direct detection of products being successful in all but three of the reaction types studied. The large scope (22 bioactive compounds, >20 chemical transformations, and >300 functionalization reagents) and high speed (>3000 reactions/hour) provide access to a wide array of drug analogs that can be used for bioactivity testing. A total of ∼6800 unique reactions were examined through a data-driven workflow, and more than 3000 unique derivatives (∼44%) were identified tentatively by the / value and signal-to-control ratio in single-stage mass spectrometry (MS) analysis, with over 1000 being further characterized by tandem MS. The speed of the DESI-MS reaction screen provides potential advantages for emerging machine learning-based predictions of organic synthesis, and it sets the stage for future online DESI-MS bioassays and scaled-up microdroplet synthesis before formal characterization of hit compounds is sought using traditional methods of drug discovery.

摘要

本研究利用解吸电喷雾电离(DESI)产生的微滴在溶液/空气界面的加速反应来探索化学空间。DESI用于以每秒1个反应混合物的总速率合成药物类似物,工作规模为低纳克级。利用亲电/亲核、氧化还原、C-H官能化和偶联反应实现了多种药物分子在特定官能团(酚羟基、羟基、氨基、羰基、苯基、噻吩基和烯基)上的转化。这些转化在环境条件下于毫秒时间尺度上发生,在所研究的所有反应类型中,除了三种反应类型外,其他反应类型均成功直接检测到产物。其广泛的范围(22种生物活性化合物、>20种化学转化和>300种官能化试剂)和高速度(>3000个反应/小时)使得能够获得可用于生物活性测试的各种药物类似物。通过数据驱动的工作流程总共检查了约6800个独特反应,在单级质谱(MS)分析中,根据/值和信号与对照比初步鉴定出超过3000个独特衍生物(约44%),其中1000多个通过串联MS进一步表征。DESI-MS反应筛选的速度为基于机器学习的有机合成预测提供了潜在优势,并为未来的在线DESI-MS生物测定和放大的微滴合成奠定了基础,之后再使用传统药物发现方法对命中化合物进行正式表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d46c/11622223/69a68500fadf/ja4c11037_0001.jpg

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