Kaempferols from Echinacea purpurea demonstrate anti-cancer potential by targeting anexelekto in breast cancer

Saviour God'swealth Usin1,2, Daniel Ogbonnaya Nwankwo3,4, Anas Haruna Ruggah5

  • 1Cancer Research and Molecular Biology Laboratories, Department of Biochemistry, Faculty of Basic Medical Sciences, College of Medicine, University of Ibadan, Ibadan, Oyo, Nigeria. savioladausin@gmail.com.

Discover Oncology
|October 22, 2025
PubMed
Abstract

Insights

Bioactive compounds from Echinacea purpurea show promise as affordable and effective inhibitors of the Anexelekto (AXL) protein, a target in breast cancer therapy. These natural compounds demonstrate superior inhibitory potential and favorable pharmacokinetics compared to existing drugs.

Area of Science:

  • Biochemistry and Molecular Biology
  • Computational Chemistry
  • Pharmacology

Background:

  • Breast cancer is a prevalent malignancy globally, particularly in low-income nations.
  • Anexelekto (AXL) receptor tyrosine kinase is a key oncogene in various cancers, including breast cancer.
  • Existing AXL inhibitors present challenges related to toxicity and cost, necessitating the search for alternatives.

Purpose of the Study:

  • To investigate the potential of Echinacea purpurea bioactive compounds as AXL inhibitors for breast cancer treatment.
  • To identify novel, cost-effective, and safer AXL inhibitors from natural sources.

Main Methods:

  • Utilized structural bioinformatics, including molecular docking and Density Functional Theory (DFT) analysis.
  • Performed pharmacokinetic and drug-likeness assessments.
  • Conducted 100 ns molecular dynamics (MD) simulations to evaluate protein-ligand complex stability.

Main Results:

  • Several E. purpurea compounds, notably Kaempferol 3-o-beta-d-glucopyranosyl-7-o-alpha-L-rhamnopyranoside, exhibited higher binding affinity to AXL than the standard inhibitor Foretinib.
  • DFT analysis indicated favorable electronic properties and reactivity for Kaempferol 3-o-beta-d-glucopyranosyl-7-o-alpha-L-rhamnopyranoside.
  • MD simulations confirmed the stability of AXL-compound complexes, suggesting robust inhibition.

Conclusions:

  • E. purpurea-derived compounds, particularly Kaempferol 3-o-beta-d-glucopyranosyl-7-o-alpha-L-rhamnopyranoside, show significant potential as novel AXL inhibitors.
  • These natural compounds offer a promising alternative to synthetic drugs for breast cancer therapy, with improved efficacy and safety profiles.
  • Further in vivo studies are warranted to validate these in silico findings.