Artonin E and Structural Analogs from Artocarpus Species Abrogates Estrogen Receptor Signaling in Breast Cancer

Imaobong Etti1,2, Rasedee Abdullah3, Najihah Mohd Hashim4

  • 1Pharmacology and Toxicology, Faculty of Veterinary Medicine, Universiti Putra Malaysia, Serdang 43400, Malaysia. ettiimaobong@gmail.com.

Insights

Researchers explored Artocarpus species compounds for breast cancer therapy. Artonin E showed significant potential, inhibiting estrogen receptor-positive breast cancer cell growth more effectively than Tamoxifen in preliminary studies.

Area of Science:

  • Pharmacology
  • Medicinal Chemistry
  • Computational Biology

Background:

  • Breast cancer mortality rates necessitate novel therapeutic strategies.
  • The human Estrogen Receptor alpha (ERα) is a key target in many breast cancers.
  • Phytochemicals offer a promising avenue for drug discovery.

Purpose of the Study:

  • To investigate the anti-breast cancer potential of Artocarpus species compounds.
  • To evaluate the binding affinity of these compounds to the human ERα using molecular docking.
  • To assess the drug-like properties and in vitro efficacy of promising candidates.

Main Methods:

  • Molecular docking simulations using Glide (Schrodinger suite 2015).
  • Retrieval of ERα ligand-binding domain structure from Protein Data Bank.
  • Collection and analysis of Artocarpus compound structures from PubChem.
  • In vitro evaluation of cell growth inhibition for selected compounds.

Main Results:

  • Artonin E exhibited the highest binding affinity to ERα with a glide score of -12.72 Kcal.
  • Artonin E demonstrated potent growth inhibition of ERα-positive breast cancer cells (3.8-6.9 µM).
  • Most studied Artocarpus compounds possessed favorable drug-like properties, comparable to 95% of oral drugs.

Conclusions:

  • Artonin E is a promising lead compound for developing novel anti-breast cancer therapies targeting ERα.
  • The Artocarpus species represent a valuable source of potential anti-cancer drug candidates.
  • In silico and in vitro findings support the anti-breast cancer relevance of these phytomolecules.

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