Anticancer properties of thiophene derivatives in breast cancer MCF-7 cells

Flaviana Alves Dos Santos1, Michelly Cristiny Pereira, Tiago Bento de Oliveira

  • 1aLaboratory for Immunomodulation and New Therapeutic Approaches bLaboratory for Planning and Drug Synthesis, Federal University of Pernambuco (UFPE), Recife, Pernambuco cLaboratory Synthesis and Vectoring Molecules, Department of Biological Sciences, State University of Paraíba (UFPB), João Pessoa, Paraíba, Brazil.

Anti-Cancer Drugs
|December 20, 2017
PubMed

Insights

New thiophene derivatives exhibit significant anticancer potential against breast cancer cells. These compounds demonstrate cytotoxicity and induce cell cycle arrest, with SB-200 showing promise in both 2D and 3D cultures.

Area of Science:

  • Medicinal Chemistry
  • Pharmacology
  • Cancer Biology

Background:

  • Thiophene derivatives offer diverse biological activities.
  • Understanding novel anticancer agents is crucial for breast cancer treatment.

Purpose of the Study:

  • To investigate the cytotoxicity of thiophene derivatives against breast cancer cells.
  • To evaluate the anticancer mechanisms, including apoptosis and cell cycle arrest.
  • To compare efficacy in 2D and 3D cell culture models.

Main Methods:

  • Cytotoxicity assays on MCF-7 and untransformed cells.
  • Apoptosis analysis using acridine orange/Hoechst staining.
  • In-vitro migration assays.
  • Cell cycle analysis (G0/G1 phase arrest).

Main Results:

  • Thiophene derivatives exhibited cytotoxic activity (IC50 < 30 µmol/l) against breast cancer cells.
  • SB-200 showed a superior selectivity index in 2D culture compared to doxorubicin.
  • Compounds induced G0/G1 cell cycle arrest; SB-83 inhibited MCF-7 cell motility.
  • SB-200 induced apoptosis-like morphological changes independent of caspase 7.
  • Cells in 3D culture were less responsive, but SB-200 maintained better efficacy than doxorubicin.

Conclusions:

  • Thiophene derivatives possess significant anticancer potential against breast cancer.
  • SB-200 demonstrates promising selective cytotoxicity and apoptosis induction.
  • Further research is warranted to elucidate the precise mechanisms of action.