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S, D. P.

Publications and source records attributed to S, D. P..

2 recordsLinked to original sources

Dynamics of repurposing synthetic and natural compounds against WNT/β-Catenin signaling in glioma- An in vivo approach

BackgroundGlioblastomas arise from multistep tumorigenesis of the glial cells and are associated with poor prognosis. Despite the current state-of-art treatment, tumor recurrence is inevitable. Thus, there exists a desperate need for effective therapeutic alternatives to improve glioblastoma outcome. Among the innovations blooming up, drug repurposing could provide a profound premises for glioblastoma treatment enhancement. While considering this strategy, the efficacy of the repurposed drugs as monotherapies were not up to par; hence, the focus has now shifted to investigate the multi-drug combinations to target glioblastomas. In line with this concept, we investigated the efficacy of a quadruple-combinatorial treatment comprising temozolomide (the benchmark drug) along with chloroquine (a synthetic drug), naringenin (a flavonoid) and phloroglucinol (a marine derivative) in an orthotopic glioma-induced xenograft model. MethodsAnti-proliferative effect of the drugs was assessed by immunostaining. The expression profiles of WNT/{beta}-catenin and apoptotic markers were evaluated by qRT-PCR, immunoblotting and ELISA. Patterns of mitochondrial depolarization was determined by flow cytometry. TUNEL assay was performed to affirm apoptosis induction. In vivo drug detection study was carried out by ESI-Q-TOF MS analysis. ResultsThe quadruple-drug treatment had significantly hampered GB proliferation and had induced apoptosis by modulating the WNT/{beta}-catenin signalling. Flow cytometric analysis revealed that the induction of apoptosis was associated with mitochondrial depolarization. Further the quadruple-drug cocktail, had breached the blood brain barrier and was detected in the brain tissue and plasma samples from various experimental groups. ConclusionThe quadruple-drug combination served as a promising adjuvant therapy to combat glioma lethality in vivo and can be probed for translation from bench to bedside.

cancer biology↗

A combination of Metformin and Epigallocatechin Gallate Potentiates Glioma Chemotherapy in vivo

Glioma is the most devastating high-grade tumor of the central nervous system, with dismal prognosis. Existing treatment modality does not provide substantial benefit to patients and demands novel strategies. One of the first-line treatments for glioma, temozolomide, provides marginal benefit to glioma patients. Repurposing of existing non-cancer drugs to treat oncology patients is gaining momentum in recent years. In this study, we investigated the therapeutic benefits of combining three repurposed drugs, namely, metformin (anti-diabetic) and epigallocatechin gallate (green tea-derived antioxidant) together with temozolomide in a glioma-induced xenograft rat model. Our triple-drug combination therapy significantly inhibited tumor growth in vivo and increased the survival rate (50%) of rats when compared with individual or dual treatments. Molecular and cellular analyses revealed that our triple-drug cocktail treatment inhibited glioma tumor growth in rat model through ROS-mediated inactivation of PI3K/AKT/mTOR pathway, arrest of the cell cycle at G1 phase and induction of molecular mechanisms of caspases-dependent apoptosis. In addition, the docking analysis and quantum mechanics studies performed here hypothesize that the effect of triple-drug combination could have been attributed by their difference in molecular interactions, that maybe due to varying electrostatic potential. Thus, repurposing metformin and epigallocatechin gallate and concurrent administration with temozolomide would serve as a prospective therapy in glioma patients.

cancer biology↗