Literature DB >> 33412987

Selecting Approaches for Hit Identification and Increasing Options by Building the Efficient Discovery of Actionable Chemical Matter from DNA-Encoded Libraries.

Timothy L Foley1, Woodrow Burchett2, Qiuxia Chen3, Mark E Flanagan1, Brendon Kapinos1, Xianyang Li3, Justin I Montgomery1, Anokha S Ratnayake1, Hongyao Zhu4, Marie-Claire Peakman1.   

Abstract

Over the past 20 years, the toolbox for discovering small-molecule therapeutic starting points has expanded considerably. Pharmaceutical researchers can now choose from technologies that, in addition to traditional high-throughput knowledge-based and diversity screening, now include the screening of fragment and fragment-like libraries, affinity selection mass spectrometry, and selection against DNA-encoded libraries (DELs). Each of these techniques has its own unique combination of advantages and limitations that makes them more, or less, suitable for different target classes or discovery objectives, such as desired mechanism of action. Layered on top of this are the constraints of the drug-hunters themselves, including budgets, timelines, and available platform capacity; each of these can play a part in dictating the hit identification strategy for a discovery program. In this article, we discuss some of the factors that we use to govern our building of a hit identification roadmap for a program and describe the increasing role that DELs are playing in our discovery strategy. Furthermore, we share our learning during our initial exploration of DEL and highlight the approaches we have evolved to maximize the value returned from DEL selections. Topics addressed include the optimization of library design and production, reagent validation, data analysis, and hit confirmation. We describe how our thinking in these areas has led us to build a DEL platform that has begun to deliver tractable matter to our global discovery portfolio.

Entities:  

Keywords:  DEL; DNA-encoded library; affinity selection; hit identification; library screening

Mesh:

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Year:  2021        PMID: 33412987     DOI: 10.1177/2472555220979589

Source DB:  PubMed          Journal:  SLAS Discov        ISSN: 2472-5552            Impact factor:   3.341


  1 in total

1.  DNA-Encoded Library Hit Confirmation: Bridging the Gap Between On-DNA and Off-DNA Chemistry.

Authors:  Bing Xia; G Joseph Franklin; Xiaojie Lu; Katie L Bedard; LaShadric C Grady; Jennifer D Summerfield; Eric X Shi; Bryan W King; Kenneth E Lind; Cynthia Chiu; Eleanor Watts; Vera Bodmer; Xiaopeng Bai; Lisa A Marcaurelle
Journal:  ACS Med Chem Lett       Date:  2021-06-03       Impact factor: 4.632

  1 in total

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