A novel indenone derivative selectively induces senescence in MDA-MB-231 (breast adenocarcinoma) cells

J Priyanga1, B Sharan Kumar1, R Mahalakshmi1

  • 1Cellular Dyshomeostasis Laboratory, Department of Biotechnology, School of Chemical and Bio Technology, SASTRA University, Thanjavur, Tamil Nadu, India.

Insights

A novel indenone derivative (nID) effectively targets triple-negative breast cancer cells, inducing senescence and cell cycle arrest. This compound shows promise as a selective cancer therapeutic with minimal impact on normal cells.

Area of Science:

  • Oncology
  • Medicinal Chemistry
  • Molecular Biology

Background:

  • Triple-negative breast cancer (TNBC) is aggressive with limited treatment options.
  • Current therapies for TNBC often cause severe side effects.
  • There is a critical need for targeted chemotherapeutics for TNBC.

Purpose of the Study:

  • To evaluate the efficacy of a novel indenone derivative (nID) against TNBC cells.
  • To investigate the mechanism of action of nID in cancer cells.
  • To assess the selectivity of nID for cancer cells versus normal cells.

Main Methods:

  • Synthesis of nID via palladium-catalyzed cascade reaction.
  • Treatment of MDA-MB-231, MDA-MB-468 (TNBC), and WRL-68 (epithelial-like) cells with nID.
  • Assessment of cell viability, proliferation, p53 expression, p21Cip1/WAF1, p65/NF-κB, and survivin levels.
  • Cell cycle analysis to determine cell cycle arrest.

Main Results:

  • nID significantly reduced viability of TNBC cells (MDA-MB-231, MDA-MB-468) but not WRL-68 cells.
  • nID induced p53 expression and p53-dependent senescence in TNBC cells.
  • nID caused G1 cell cycle arrest, reduced proliferation, downregulated p65/NF-κB and survivin in TNBC cells.
  • Selective targeting of TNBC cells by nID was observed.

Conclusions:

  • The novel indenone derivative (nID) demonstrates significant anti-cancer activity against triple-negative breast cancer cells.
  • nID selectively induces senescence and cell cycle arrest in TNBC cells.
  • nID holds potential for development as a targeted cancer therapeutic.

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