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In Silico Molecular Docking of 2-Hydroxyanthraquinone-Substituted Spiro-/Ansa Cyclotriphosphazenes: Targeting
Seda Mesci1, Burak Yazgan2, Gizem Demir Demirel3
1Project Coordination and Guidance Office, Rectorate, Hitit University, Corum, Turkey.
Abstract:
Cancer research takes a long time and is complex. Preclinical studies prove that compounds can be potential anticancer agents and contribute to cancer studies. Overexpression of survivin may cause decreased sensitivity of anticancer agents and antiapoptotic activation through its excretion from cells via MDR. Anthraquinones and phosphazene compounds, which are among the active biological compounds and identified in many studies on cancer, come to the fore in biochemical, microbiological, and pharmacological studies. In this study, it was aimed to investigate the effect of 2-hydroxyanthraquinone-substituted spiro-/ansa cyclotriphosphazene compounds (II-VIII) on multidrug resistance, ER stress, and apoptotic cell death pathways in breast and colon cancer cells. mRNA expressions of multidrug resistance transporter, ER stress, heat shock, and apoptotic genes assessed by qPCR. Besides protein levels of apoptosis, cell cycle and related signaling pathways (CASP3, BCL-w, sTNF-R, cIAP-2, TRAILRs, IGFBPs, Survivin, XIAP, etc.) were determined by antibody membrane array method in MCF-7 and DLD-1 cell lines. To elucidate the activities of Survivin protein-related compounds, in silico-mediated molecular docking studies were evaluated. ABCs, HSPs, and GRPs gene expressions in MCF-7 and DLD-1 cells were decreased by these compounds. Besides, in gene regulations of apoptosis and signaling pathways, it was observed that the compounds induce overexpression of BAX and underexpression BCL-2. In addition, especially survivin expression was downregulated by all the compounds. It has been determined that the compounds eliminate multidrug resistance in breast and colon cancer cells, suppress HSPs and GRPs genes, and lead the cells to death, especially through the antiapoptotic pathway Survivin. These compounds can be evaluated and developed as Survivin inhibitor agents in anticancer studies.
Insights
New anticancer compounds targeting survivin were found to overcome multidrug resistance in breast and colon cancer cells. These novel phosphazene derivatives effectively downregulate survivin, promoting cancer cell death.
Area of Science:
- Medicinal Chemistry
- Molecular Biology
- Cancer Research
Background:
- Cancer research is lengthy and complex, with preclinical studies essential for identifying potential anticancer agents.
- Survivin overexpression is linked to reduced sensitivity to anticancer drugs and promotes anti-apoptotic signaling.
- Anthraquinones and phosphazene compounds show significant biological activity relevant to cancer studies.
Purpose of the Study:
- To investigate the effects of novel 2-hydroxyanthraquinone-substituted spiro-/ansa cyclotriphosphazene compounds (II-VIII) on cancer cells.
- To evaluate the impact of these compounds on multidrug resistance, ER stress, and apoptotic pathways in breast and colon cancer.
- To explore their potential as survivin inhibitor agents.
Main Methods:
- Quantitative PCR (qPCR) to assess mRNA expression of multidrug resistance, ER stress, heat shock, and apoptotic genes.
- Antibody membrane array to determine protein levels of apoptosis, cell cycle, and related signaling pathways.
- In silico molecular docking studies to elucidate survivin protein-compound interactions.
Main Results:
- The tested cyclotriphosphazene compounds decreased the gene expression of ABCs, HSPs, and GRPs in MCF-7 and DLD-1 cells.
- Compounds induced overexpression of BAX and underexpression of BCL-2, promoting apoptosis.
- Survivin expression was significantly downregulated by all tested compounds, indicating their potential as survivin inhibitors.
Conclusions:
- The novel 2-hydroxyanthraquinone-substituted spiro-/ansa cyclotriphosphazene compounds effectively eliminate multidrug resistance in breast and colon cancer cells.
- These compounds suppress HSPs and GRPs, inducing cell death primarily through the anti-apoptotic pathway involving survivin.
- The compounds demonstrate potential for development as survivin inhibitor agents in anticancer therapeutic strategies.
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