High‐Throughput Technologies for Targeted Covalent Drug Discovery: Recent Advances and Perspectives

Covalent drugs have attracted increasing attention in modern drug discovery because of their prolonged target engagement, enhanced pharmacological efficacy, and potential to address traditionally challenging protein targets. The rapid development of electrophilic warhead chemistry, chemical biology methods, and high-throughput screening technologies has shifted covalent drug discovery from serendipitous identification to target-oriented and rational design. In recent years, phage display, mRNA display, and DNA-encoded library technologies have enabled the efficient de novo discovery of covalent peptides and small molecules, expanding the accessible chemical space for targeting cysteine, lysine, tyrosine, serine, and other reactive residues. Meanwhile, artificial intelligence has further accelerated covalent drug research by supporting covalent database construction, binding-site prediction, virtual screening, molecular generation, and structure-based ligand optimization. This article reviews recent advances in high-throughput strategies for targeted covalent drug discovery, with a focus on phage display, mRNA display, DNA-encoded libraries, and artificial intelligence (AI)-assisted approaches. We further discuss current challenges and future opportunities in the field and provide our perspectives on emerging directions for next-generation covalent ligand discovery.

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Publication Details

Journal
Chemistry - A European Journal
Published
2026-09-11
DOI
https://doi.org/10.1002/chem.71680
Primary Topic
Click Chemistry and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

High‐Throughput Technologies for Targeted Covalent Drug Discovery: Recent Advances and Perspectives

Yizhen Yin, Haipeng Yu, Xinyu Wang, Xiaoran Wang
Chemistry - A European Journal
Click Chemistry and Applications
article

High‐Throughput Technologies for Targeted Covalent Drug Discovery: Recent Advances and Perspectives

Yizhen Yin, Haipeng Yu, Xinyu Wang, Xiaoran Wang
article en

Abstract

Covalent drugs have attracted increasing attention in modern drug discovery because of their prolonged target engagement, enhanced pharmacological efficacy, and potential to address traditionally challenging protein targets. The rapid development of electrophilic warhead chemistry, chemical biology methods, and high-throughput screening technologies has shifted covalent drug discovery from serendipitous identification to target-oriented and rational design. In recent years, phage display, mRNA display, and DNA-encoded library technologies have enabled the efficient de novo discovery of covalent peptides and small molecules, expanding the accessible chemical space for targeting cysteine, lysine, tyrosine, serine, and other reactive residues. Meanwhile, artificial intelligence has further accelerated covalent drug research by supporting covalent database construction, binding-site prediction, virtual screening, molecular generation, and structure-based ligand optimization. This article reviews recent advances in high-throughput strategies for targeted covalent drug discovery, with a focus on phage display, mRNA display, DNA-encoded libraries, and artificial intelligence (AI)-assisted approaches. We further discuss current challenges and future opportunities in the field and provide our perspectives on emerging directions for next-generation covalent ligand discovery.

Chemistry - A European Journal
Qingdao University of Science and Technology (CN)
National Natural Science Foundation of China, National Key Research and Development Program of China
Openalex Percentile: Top 21%
Click Chemistry and Applications
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High‐Throughput Technologies for Targeted Covalent Drug Discovery: Recent Advances and Perspectives — Yizhen Yin, Haipeng Yu, et al. · Chemistry - A European Journal (2026) | TGRS Research Map | TGRS