Phytochemicals Neogitogenin and Samogenin Hold Potentials for Hepatocyte Growth Factor Receptor-Targeted Cancer
Abdelbaset Mohamed Elasbali1, Farah Anjum2, Bodour Ali Al-Ghabban3
1Department of Clinical Laboratory Science, College of Applied Medical Sciences-Qurayyat, Jouf University, Qurayyat, KSA, Saudi Arabia.
Abstract:
Protein kinases are key targets for cancer therapies, with the c-Met receptor tyrosine kinase (MET) and its ligand, hepatocyte growth factor, playing a role in various cancers, including non-small cell lung cancer, gastric cancer, and hepatocellular carcinoma. Although small-molecule inhibitors have been designed to target MET, the development of drug resistance remains a significant challenge to advancing therapeutic strategies. In this study, we employed virtual screening of plant-based compounds sourced from the IMPPAT 2.0 databank to identify potent inhibitors of MET. Preliminary filtering based on the physicochemical parameters following Lipinski's rule of five and pan-assay interference compounds criteria were applied to prioritize hits. Subsequent molecular docking, pharmacokinetic evaluation, prediction of activity spectra for biologically active substances, and specificity assessments facilitated the identification of two promising phytochemicals, neogitogenin and samogenin. Both phytochemicals exhibited considerable drug-like properties with notable binding affinity and selectivity toward MET. Molecular dynamics simulation studies showed the conformational stability of MET with neogitogenin and samogenin. Taken together, these findings suggest that neogitogenin and samogenin hold potential as lead molecules for the development of MET-targeted therapeutics. We call for further evaluations of these phytochemicals in preclinical and experimental studies for anticancer drug discovery and development.
Insights
Researchers identified two plant-derived compounds, neogitogenin and samogenin, as potential MET inhibitors. These compounds show promise for developing new cancer therapies targeting MET, overcoming drug resistance challenges.
Area of Science:
- Oncology
- Pharmacology
- Computational Chemistry
Background:
- Protein kinases, including the c-Met receptor tyrosine kinase (MET), are crucial in various cancers.
- Drug resistance to existing MET inhibitors necessitates novel therapeutic strategies.
Purpose of the Study:
- To identify novel, plant-derived MET inhibitors using virtual screening.
- To evaluate the potential of identified compounds as lead molecules for MET-targeted cancer therapy.
Main Methods:
- Virtual screening of the IMPPAT 2.0 plant-based compound databank.
- Physicochemical filtering (Lipinski's rule of five, PAINS criteria).
- Molecular docking, pharmacokinetic evaluation, ADMET prediction, specificity assessment, and molecular dynamics simulations.
Main Results:
- Identified neogitogenin and samogenin as potent MET inhibitors with favorable drug-like properties.
- Demonstrated significant binding affinity and selectivity of these phytochemicals toward MET.
- Confirmed the conformational stability of MET-neogitogenin and MET-samogenin complexes via molecular dynamics.
Conclusions:
- Neogitogenin and samogenin show potential as lead compounds for developing novel MET-targeted cancer therapeutics.
- Further preclinical and experimental studies are warranted to explore their anticancer drug discovery potential.
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