Authors
Reyana Begam R, Gheena Sukumaran, Abilasha Ramasubramaniam
Published in
Asian Pacific journal of cancer prevention : APJCP. Volume 27. Issue 9. Pages 3193-3201. Sep 01, 2026. Epub Sep 01, 2026.
Abstract
Oral squamous cell carcinoma (OSCC) remains a significant health burden with limited therapeutic options and high mortality. Sesbania grandiflora, a medicinal plant rich in phytochemicals, has been traditionally used for its medicinal properties and is emerging as a potential anticancer agent.
This study aimed to investigate the anticancer mechanisms of S. grandiflora against OSCC using an integrated approach, combining network pharmacology, molecular docking, ADME profiling, and in vitro validation.
Network pharmacology was employed to identify hub genes and pathways associated with S. grandiflora bioactives. Molecular docking was performed to evaluate binding interactions of D-glucuronic acid, a major phytoconstituent, with key cancer-related targets. ADME profiling assessed drug-likeness and pharmacokinetic properties. in vitro assays, including MTT, flow cytometry, and Western blotting, were conducted on KB oral cancer cells to validate mechanistic insights.
Key hub genes identified included AKT1, BCL2, PIK3CA, MTOR, and CASP8, which were enriched in pathways such as the PI3K-Akt, p53, HIF-1, and EGFR-mediated apoptosis pathways. Molecular docking revealed strong and stable interactions of D-glucuronic acid with target proteins, supporting its multi-targeted activity. ADME analysis indicated favorable pharmacokinetic properties, including high GI absorption, BBB permeability, and minimal CYP450 inhibition. Experimental validation demonstrated significant cytotoxicity (IC₅₀: 250-300 µg/mL), dose-dependent G1-phase cell cycle arrest, downregulation of BCL-2, and upregulation of BAX, confirming the induction of apoptosis.
S. grandiflora exerts anticancer effects through modulation of PI3K-AKT-mTOR and apoptotic pathways. D-glucuronic acid emerges as a promising bioactive compound, supporting further in vivo studies and clinical exploration for OSCC management.
PMID:
42808385
Bibliographic data and abstract were imported from PubMed on 29 Sep 2026.
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