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Published on: August 2, 2024
Girdin silencing enhances mebendazole-mediated anticancer activity: a combinatorial therapeutic strategy for ovarian
Rahul Gupta1, Yasmin Begum1, Dipanjan Ghosh2
1Infectious Diseases & Immunology Division, Lab-254, Council of Scientific and Industrial Research-Indian Institute of Chemical Biology, 4, Raja S.C. Mullick Road, Jadavpur, Kolkata, 700032, India.
Abstract:
Ovarian cancer is among the deadliest gynecological malignancies due to its aggressive nature and limited treatment options. Mebendazole (MBZ), a known antiparasitic drug, has shown anticancer activity in several cancer types, though its mechanisms, particularly in ovarian cancer, remain unclear. Girdin (CCDC88A), a key regulator of Akt signaling and cancer cell invasion, represents a promising therapeutic target. This study explores the combined effect of MBZ and Girdin knockdown in ovarian cancer cell lines OVCAR3 and OAW42. Cells were treated with MBZ and transfected with Girdin-targeting siRNA, either individually or in combination. Biochemical assays (migration, invasion, and clonogenicity) and immunoblotting were used to assess the molecular mechanism and protein expression. Computational techniques, including homology modeling, molecular docking, structural interaction fingerprinting (SIFt), and density functional theory (DFT), were employed to study MBZ-Girdin binding. In addition, protein-protein interaction (PPI) network analysis and KEGG pathway enrichment (visualized using Cytoscape) were conducted to understand broader molecular effects. Our results showed that both MBZ and Girdin knockdown significantly decreased Girdin levels, with the combination yielding a greater inhibitory effect. This dual approach led to marked suppression of ovarian cancer cell migration, invasion, and colony formation. Docking studies confirmed stable MBZ binding to Girdin's catalytic domain, supported by favorable binding energies and molecular interactions. This is the first study to demonstrate that MBZ's anticancer efficacy is significantly enhanced by Girdin silencing, implicating the modulation of critical oncogenic pathways.
Insights
Mebendazole (MBZ) combined with Girdin silencing significantly inhibits ovarian cancer cell growth. This dual approach suppresses migration, invasion, and colony formation, offering a novel therapeutic strategy for this deadly malignancy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Ovarian cancer is a deadly gynecological malignancy with limited treatment options.
- Mebendazole (MBZ), an antiparasitic drug, shows anticancer potential, but its mechanisms in ovarian cancer are unclear.
- Girdin (CCDC88A) is a key regulator of Akt signaling and cancer cell invasion, making it a potential therapeutic target.
Purpose of the Study:
- To investigate the combined effect of Mebendazole (MBZ) and Girdin knockdown in ovarian cancer.
- To elucidate the molecular mechanisms underlying the combined treatment's efficacy.
- To explore the binding interaction between MBZ and Girdin.
Main Methods:
- Ovarian cancer cell lines (OVCAR3, OAW42) were treated with MBZ and Girdin-targeting siRNA.
- Biochemical assays assessed cell migration, invasion, and clonogenicity.
- Immunoblotting, molecular docking, SIfT, DFT, PPI network analysis, and KEGG pathway enrichment were used for mechanistic studies.
Main Results:
- Combined MBZ treatment and Girdin knockdown significantly reduced Girdin levels and suppressed ovarian cancer cell migration, invasion, and colony formation.
- Molecular docking confirmed stable binding of MBZ to Girdin's catalytic domain.
- The study identified modulation of critical oncogenic pathways.
Conclusions:
- Mebendazole's anticancer efficacy is significantly enhanced by Girdin silencing in ovarian cancer.
- This combination therapy represents a promising strategy for ovarian cancer treatment.
- Targeting Girdin alongside MBZ warrants further investigation for gynecological malignancies.
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