1. Academic Validation
  2. A novel 3-arylethynyl-substituted pyrido[2,3,-b]pyrazine derivatives and pharmacophore model as Wnt2/β-catenin pathway inhibitors in non-small-cell lung cancer cell lines

A novel 3-arylethynyl-substituted pyrido[2,3,-b]pyrazine derivatives and pharmacophore model as Wnt2/β-catenin pathway inhibitors in non-small-cell lung cancer cell lines

  • Bioorg Med Chem. 2011 Sep 15;19(18):5639-47. doi: 10.1016/j.bmc.2011.07.028.
Young-Dae Gong 1 Mi-Sook Dong Sang-Bum Lee Nayeon Kim Mi-Seon Bae Nam-Sook Kang
Affiliations

Affiliation

  • 1 Center for Innovative Drug Library Research, Dongguk University, Pil-dong 3-ga, Jung-gu, Seoul 100-715, Republic of Korea. ydgong@dongguk.edu
Abstract

We developed Wnt/β-catenin inhibitors by identifying 13 number of 3-arylethynyl-substituted pyrido[2,3,-b]pyrazine derivatives that were able to inhibit the Wnt/β-catenin signal pathway and Cancer cell proliferation. In the optimization process, a series of 2,3,6-trisubstituted pyrido[2,3,-b]pyrazine core skeletons showed were shown to higher activity than 2,3,6-trisubstituted quinoxaline's and thus hold promise for use as potential small-molecule inhibitors of the Wnt/β-catenin signal pathway in non-small-cell lung Cancer cell (NSCLC) lines. And we have studied the pharmacophore mapping for compound 954, which presented the highest activity with a fit value of 2.81. The pharmacophore mapping for the compounds including 954, pyrido[2,3,-b]pyrazine core had hydrogen-bond acceptor site and hydrophobic center roles.

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