1. Academic Validation
  2. Structural simplification of bioactive natural products with multicomponent synthesis. 3. Fused uracil-containing heterocycles as novel topoisomerase-targeting agents

Structural simplification of bioactive natural products with multicomponent synthesis. 3. Fused uracil-containing heterocycles as novel topoisomerase-targeting agents

  • J Med Chem. 2011 Apr 14;54(7):2012-21. doi: 10.1021/jm1009428.
Nikolai M Evdokimov 1 Severine Van Slambrouck Petra Heffeter Lee Tu Benjamin Le Calvé Delphine Lamoral-Theys Carla J Hooten Pavel Y Uglinskii Snezna Rogelj Robert Kiss Wim F A Steelant Walter Berger Jeremy J Yang Cristian G Bologa Alexander Kornienko Igor V Magedov
Affiliations

Affiliation

  • 1 Department of Chemistry, New Mexico Institute of Mining and Technology, Socorro, New Mexico 87801, United States.
Abstract

After the initial discovery of antiproliferative and apoptosis-inducing properties of a camptothecin-inspired pentacycle based on a 1H-indeno[2',1':5,6]dihydropyrido[2,3-d]pyrimidine scaffold, a library of its analogues as well as their oxidized planar counterparts were prepared utilizing a practical multicomponent synthetic protocol. The synthesized compounds exhibited submicromolar to low micromolar antiproliferative potencies toward a panel of human Cancer cell lines. Biochemical experiments are consistent with the dihydropyridine library members undergoing intracellular oxidation to the corresponding planar pyridines, which then inhibit Topoisomerase II activity, leading to inhibition of proliferation and cell death. Because of facile synthetic preparation and promising antitopoisomerase activity, both the dihydropyridine and planar pyridine-based compounds represent a convenient starting point for Anticancer drug discovery.

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