Antiproliferative and genotoxic potential of xanthen-3-one derivatives

Elma Veljović1, Selma Špirtović-Halilović1, Samija Muratović1

  • 1University of Sarajevo, Faculty of Pharmacy, 71000Sarajevo, Bosnia and Herzegovina.

Insights

Novel xanthen-3-one derivatives show potent antiproliferative activity against various cancer cell lines. A trifluormethyl-substituted compound demonstrated significant inhibition with no observed genotoxic or cytotoxic effects, supported by molecular docking studies.

Area of Science:

  • Medicinal Chemistry
  • Pharmacology
  • Cancer Biology

Background:

  • Xanthen-3-one derivatives are a class of compounds with known biological activities.
  • Exploring novel derivatives for enhanced therapeutic potential is crucial in cancer research.

Purpose of the Study:

  • To evaluate the in vitro antiproliferative activity of twelve synthesized 2,6,7-trihydroxyxanthen-3-one derivatives.
  • To identify specific structural features correlating with potent anticancer effects.
  • To assess the safety profile (cytotoxicity and genotoxicity) of promising candidates.

Main Methods:

  • In vitro screening of compounds against HeLa, SW620, HepG2, and A549 tumor cell lines.
  • Determination of half-maximal inhibitory concentration (IC50) values.
  • Cytotoxicity and genotoxicity assessment using the cytokinesis-block micronucleus cytome assay.
  • Molecular docking simulations to analyze target binding interactions.

Main Results:

  • A derivative with a trifluormethyl group at the C-4' position exhibited strong inhibition against HeLa (IC50: 0.7 µmol L-1) and A549 (IC50: 4.1 µmol L-1) cells.
  • Compounds with chlorine and fluorine substituents showed significant activity against SW620 (IC50: 4.1 µmol L-1) and HepG2 (IC50: 4.2 µmol L-1) cells.
  • The trifluormethyl derivative displayed no genotoxic or cytotoxic effects in human lymphocyte cultures.
  • Molecular docking revealed important hydrogen bond interactions between potent compounds and molecular targets.

Conclusions:

  • Specific 2,6,7-trihydroxyxanthen-3-one derivatives possess significant antiproliferative potential against multiple cancer types.
  • The trifluormethyl derivative is a promising candidate for further anticancer drug development due to its efficacy and favorable safety profile.
  • Structure-activity relationships and target interactions provide insights for designing more potent anticancer agents.