Pro-Apoptotic Activity of Epi-Obtusane against Cervical Cancer: Nano Formulation, In Silico Molecular Docking, and

Omnia Hesham Abdelhafez1, Islam M Abdel-Rahman2, Eman Alaaeldin3,4

  • 1Department of Pharmacognosy, Faculty of Pharmacy, Deraya University, Universities Zone, New Minia 61111, Egypt.

PubMed

Insights

Marine-derived epi-obtusane shows potent anticancer effects against cervical cancer cells. Liposomal encapsulation enhanced its antiproliferative activity, suggesting STAT3 as a potential molecular target.

Area of Science:

  • Marine natural products chemistry
  • Cancer biology
  • Nanomedicine

Background:

  • Marine ecosystems are rich sources of bioactive compounds with therapeutic potential.
  • Cervical cancer remains a significant global health challenge.
  • Developing effective drug delivery systems is crucial for optimizing natural product efficacy.

Purpose of the Study:

  • To investigate the anticancer potential of epi-obtusane, a marine sesquiterpene, against human cervical cancer (HeLa) cells.
  • To evaluate the effect of liposomal encapsulation on the antiproliferative activity of epi-obtusane.
  • To elucidate the potential molecular mechanism of action of epi-obtusane.

Main Methods:

  • In vitro antiproliferative assays (MTT assay) using HeLa cells.
  • Liposomal formulation and characterization of epi-obtusane.
  • Cell cycle arrest and apoptosis analysis (flow cytometry).
  • Pharmacological network analysis and molecular docking studies targeting STAT3.

Main Results:

  • Epi-obtusane demonstrated significant antiproliferative activity against HeLa cells.
  • Liposomal encapsulation of epi-obtusane enhanced its in vitro anticancer efficacy.
  • Analysis suggested STAT3 as a potential molecular target, supported by molecular docking.
  • The compound's mechanism involves pathways related to endometrial cancer, DNA transcription, and nitric oxide synthase.

Conclusions:

  • Epi-obtusane is a promising marine-derived compound with anticancer properties against cervical cancer.
  • Liposomal nanocarriers can improve the delivery and efficacy of epi-obtusane.
  • Targeting STAT3 represents a potential therapeutic strategy for epi-obtusane's anticancer effects.