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Therapy Testing in a Spheroid-based 3D Cell Culture Model for Head and Neck Squamous Cell Carcinoma
Published on: April 20, 2018
Network predictions to cellular evidence: Exploring Hemidesmus indicus as a multi-target modulator in head and neck
Chandini Rajkumar1, Saranya Ramsridhar2, Vishnu Priya Veeraraghavan3
1Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, 600 077, India.; Department of Oral Pathology and Microbiology, Sathyabama Dental College and Hospital, Chennai, India..
Background:
Head and neck squamous cell carcinoma (HNSCC) involves complex dysregulation of metabolic, inflammatory, and proliferative pathways, limiting the effectiveness of single target therapies. Medicinal plants containing multiple bioactive compounds may provide complementary strategies to modulate cancer related networks. Hemidesmus indicus (H. indicus) has been reported to have anticancer activity, but its relevance to HNSCC remains insufficiently defined.
Methods:
HNSCC-related targets of H. indicus phytochemicals were identified using an integrated network pharmacology approach. Drug-likeness, pharmacokinetics, and toxicity were assessed, followed by protein-protein interaction analysis, functional enrichment, gene expression, survival, and druggability evaluation. Molecular docking was performed against prioritized hub targets. Experimental validation was performed in KB cells using an MTT cytotoxicity assay, acridine orange/ethidium bromide staining, Rhodamine 123 mitochondrial membrane potential analysis, and quantitative real-time PCR.
Results:
Eighty-five overlapping targets between H. indicus phytochemicals and HNSCC genes were identified, with PPARG, PTGS2, PPARA, HMGCR, and MAPK3 emerging as hub genes. Enrichment analyses highlighted roles in metabolic regulation, inflammatory signaling, and cancer-associated pathways. Docking studies demonstrated moderate to favorable binding of selected phytochemicals to PPARA and PTGS2. In vitro assays showed concentration-dependent cytotoxicity, apoptotic morphological changes, and mitochondrial membrane depolarization in KB cells. qPCR revealed increased PPARA expression and reduced PTGS2 expression.
Conclusion:
These findings provide preliminary support for the potential relevance of H. indicus in HNSCC research and emphasize the need for further in vivo and mechanistic investigations.
Insights
Hemidesmus indicus shows potential for head and neck squamous cell carcinoma (HNSCC) treatment by targeting key metabolic and inflammatory pathways. Further research is needed to confirm its efficacy in vivo.
Area of Science:
- Phytochemistry
- Network Pharmacology
- Cancer Biology
Background:
- Head and neck squamous cell carcinoma (HNSCC) exhibits complex pathway dysregulation, hindering single-target therapies.
- Medicinal plants offer multi-compound strategies to modulate cancer networks.
- Hemidesmus indicus (H. indicus) has known anticancer properties, but its role in HNSCC requires definition.
Purpose of the Study:
- To identify H. indicus phytochemical targets relevant to HNSCC using network pharmacology.
- To evaluate the drug-likeness, pharmacokinetics, and toxicity of identified compounds.
- To experimentally validate the effects of H. indicus on HNSCC cells.
Main Methods:
- Network pharmacology integrated H. indicus compounds with HNSCC genes.
- Protein-protein interaction, enrichment, and survival analyses were performed.
- In vitro assays (MTT, AO/EB, MMP, qPCR) validated findings in KB cells.
Main Results:
- Eighty-five overlapping targets were identified, with PPARG, PTGS2, PPARA, HMGCR, and MAPK3 as key hub genes.
- Enrichment analysis revealed involvement in metabolic and inflammatory pathways.
- In vitro studies demonstrated H. indicus cytotoxicity, apoptosis induction, and modulation of PPARA and PTGS2 expression.
Conclusions:
- H. indicus shows preliminary potential for HNSCC research.
- Further in vivo and mechanistic studies are warranted to explore its therapeutic relevance.
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