Design and Synthesis of Novel Heterocyclic-Based 4 H-benzo[ h]chromene Moieties: Targeting Antitumor Caspase 3/7 Activities and Cell Cycle Analysis

Molecules. 2019 Mar 18;24(6):1060. doi: 10.3390/molecules24061060.

Abstract

Novel fused chromenes (4,711) and pyrimidines (1216) were designed, synthesized, and evaluated for their mammary gland breast cancer (MCF-7), human colon cancer (HCT-116), and liver cancer (HepG-2) activities. The structural identity of the synthesized compounds was established according to their spectroscopic analysis, such as FT-IR, NMR, and mass spectroscopy. The preliminary results of the bioassay disclosed that some of the target compounds were proven to have a significant antiproliferative effect against the three cell lines, as compared to Doxorubicin, Vinblastine, and Colchicine, used as reference drugs. Particularly, compounds 7 and 14 exerted promising anticancer activity towards all cell lines and were chosen for further studies, such as cell cycle analysis, cell apoptosis, caspase 3/7 activity, DNA fragmentation, cell invasion, and migration. We found that these potent cytotoxic compounds induced cell cycle arrest at the S and G2/M phases, prompting apoptosis. Furthermore, these compounds significantly inhibit the invasion and migration of the different tested cancer cells. The structure-activity relationship (SAR) survey highlights that the antitumor activity of the desired compounds was affected by the hydrophobic or hydrophilic nature of the substituent at different positions.

Keywords: DNA fragmentation; SAR; and migration; caspase 3/7 activity; cell apoptosis; cell cycle analysis; cell invasion; fused chromenes and pyrimidines.

MeSH terms

  • Antineoplastic Agents / pharmacology*
  • Apoptosis / drug effects
  • Benzopyrans / chemical synthesis*
  • Benzopyrans / chemistry
  • Benzopyrans / pharmacology
  • Caspase 3 / metabolism*
  • Caspase 7 / metabolism*
  • Caspase Inhibitors / chemical synthesis
  • Caspase Inhibitors / chemistry
  • Caspase Inhibitors / pharmacology*
  • Cell Cycle / drug effects*
  • Cell Line, Tumor
  • Cell Movement / drug effects
  • DNA Fragmentation / drug effects
  • Drug Design*
  • Heterocyclic Compounds / chemical synthesis*
  • Heterocyclic Compounds / chemistry
  • Heterocyclic Compounds / pharmacology
  • Humans
  • Inhibitory Concentration 50
  • Neoplasm Invasiveness
  • Structure-Activity Relationship

Substances

  • Antineoplastic Agents
  • Benzopyrans
  • Caspase Inhibitors
  • Heterocyclic Compounds
  • Caspase 3
  • Caspase 7