Parallel purification of microscale libraries via automated solid phase extraction

IF 2.5 4区 医学 Q3 BIOCHEMICAL RESEARCH METHODS
Michael Wleklinski , Paige M. Carpenter , Kevin D. Dykstra , Anthony Donofrio , Timothy Nowak , Shane W. Krska , Ronald D. Ferguson
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引用次数: 0

Abstract

High-throughput experimentation (HTE) has become more widely utilized in drug discovery for rapid reaction optimization and generation of large synthetic compound arrays. While this has accelerated medicinal chemistry design, make, test (DMT) iterations, the bottleneck of purification persists, consuming time and resources. Herein we describe a general parallel purification approach based on solid phase extraction (SPE) that provides a more efficient and sustainable workflow producing compound libraries with significantly upgraded purity. This robust, user-friendly workflow is fully automated and integrated with HTE library synthesis, as demonstrated by its application to a diverse parallel library compound array generated via amide-bond coupling in HTE microscale format.

通过自动固相萃取平行纯化微尺度库。
高通量实验(HTE)已越来越广泛地应用于药物发现,以快速优化反应和生成大型合成化合物阵列。虽然这加快了药物化学设计、制造和测试(DMT)的迭代速度,但纯化的瓶颈依然存在,耗费了大量的时间和资源。在此,我们介绍一种基于固相萃取(SPE)的通用并行纯化方法,它提供了一种更高效、更可持续的工作流程,能生产出纯度显著提高的化合物库。这种稳健、用户友好的工作流程完全自动化,并与 HTE 文库合成集成,其在 HTE 微尺度格式下通过酰胺键偶联生成的多种平行文库化合物阵列中的应用就证明了这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
SLAS Technology
SLAS Technology Computer Science-Computer Science Applications
CiteScore
6.30
自引率
7.40%
发文量
47
审稿时长
106 days
期刊介绍: SLAS Technology emphasizes scientific and technical advances that enable and improve life sciences research and development; drug-delivery; diagnostics; biomedical and molecular imaging; and personalized and precision medicine. This includes high-throughput and other laboratory automation technologies; micro/nanotechnologies; analytical, separation and quantitative techniques; synthetic chemistry and biology; informatics (data analysis, statistics, bio, genomic and chemoinformatics); and more.
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