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April 8, 2026Bioconjugate Chemistry2 citations

Tandem In Situ Nitro Reduction and Cyclization for the On-DNA Synthesis of Traditionally Privileged Skeletons

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XSXuanjing ShenXWXudong WangZLZijian Liu

Key Points

  • The research aims to enhance DNA-encoded library technology through improved on-DNA synthesis techniques.
  • Developed a copper-mediated tandem reaction under mild, aqueous conditions.
  • Performed in situ reduction of nitro groups followed by reductive amination with aldehydes.
  • Applied the methodology to o-nitroaniline derivatives for scaffold construction.
  • Successfully synthesized secondary amines directly from nitro substrates.
  • Achieved efficient one-pot synthesis of benzimidazole scaffolds.
  • Demonstrated a more streamlined and atom-economical method than conventional stepwise synthesis.

Abstract

The development of DNA-encoded library (DEL) technology is contingent upon robust and DNA-compatible reactions to expand accessible chemical space. Tandem transformations, which combine functional group interconversion and scaffold construction in one step, are particularly attractive for streamlining on-DNA synthesis. Herein, we report a copper-mediated tandem reaction conducted under mild, aqueous conditions that enables the in situ reduction of nitro groups followed by reductive amination with aldehydes. This DNA-compatible protocol efficiently furnishes secondary amines directly from nitro substrates, circumventing the need for prereduction. Moreover, the methodology can be extended to o-nitroaniline derivatives, providing efficient one-pot access to benzimidazole scaffolds through tandem nitro reduction and cyclization with aldehydes. Compared to conventional stepwise sequences requiring isolated intermediates, this strategy provides a more streamlined and atom-economical route for constructing privileged pharmacophores directly on DNA.

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Cite This Study

Shen et al. (2026) studied this question.

synapsesocial.com/papers/69d5f14b74eaea4b11a7ad47https://doi.org/10.1021/acs.bioconjchem.6c00057
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