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Sulfadiazine Exerts Potential Anticancer Effect in HepG2 and MCF7 Cells by Inhibiting TNFα, IL1b, COX-1, COX-2, 5-LOX
Mohamed Gomaa1, Wael Gad2, Dania Hussein3
1Department of Pharmaceutical Chemistry, College of Clinical Pharmacy, Imam Abdulrahman Bin Faisal University, P.O. Box 1982, Dammam 31441, Saudi Arabia.
Abstract:
Drug repurposing is a promising approach that has the potential to revolutionize the drug discovery and development process. By leveraging existing drugs, we can bring new treatments to patients more quickly and affordably. Anti-inflammatory drugs have been shown to target multiple pathways involved in cancer development and progression. This suggests that they may be more effective in treating cancer than drugs that target a single pathway. Cell viability was measured using the MTT assay. The expression of genes related to inflammation (TNFa, IL1b, COX-1, COX-2, and 5-LOX) was measured in HepG2, MCF7, and THLE-2 cells using qPCR. The levels of TNFα, IL1b, COX-1, COX-2, and 5-LOX were also measured in these cells using an ELISA kit. An enzyme binding assay revealed that sulfadiazine expressed weaker inhibitory activity against COX-2 (IC50 = 5.27 μM) in comparison with the COX-2 selective reference inhibitor celecoxib (COX-2 IC50 = 1.94 μM). However, a more balanced inhibitory effect was revealed for sulfadiazine against the COX/LOX pathway with greater affinity towards 5-LOX (IC50 = 19.1 μM) versus COX-1 (IC50 = 18.4 μM) as compared to celecoxib (5-LOX IC50 = 16.7 μM, and COX-1 IC50 = 5.9 μM). MTT assays revealed the IC50 values of 245.69 ± 4.1 µM and 215.68 ± 3.8 µM on HepG2 and MCF7 cell lines, respectively, compared to the standard drug cisplatin (66.92 ± 1.8 µM and 46.83 ± 1.3 µM, respectively). The anti-inflammatory effect of sulfadiazine was also depicted through its effect on the levels of inflammatory markers and inflammation-related genes (TNFα, IL1b, COX-1, COX-2, 5-LOX). Molecular simulation studies revealed key binding interactions that explain the difference in the activity profiles of sulfadiazine compared to celecoxib. The results suggest that sulfadiazine exhibited balanced inhibitory activity against the 5-LOX/COX-1 enzymes compared to the selective COX-2 inhibitor, celecoxib. These findings highlight the potential of sulfadiazine as a potential anticancer agent through balanced inhibitory activity against the COX/LOX pathway and reduction in the expression of inflammatory genes.
Insights
Sulfadiazine shows potential as an anticancer agent by inhibiting inflammation pathways. This repurposed drug demonstrated balanced activity against 5-LOX/COX-1 enzymes, reducing inflammatory markers and gene expression in cancer cells.
Area of Science:
- Pharmacology and Drug Discovery
- Oncology
- Molecular Biology
Background:
- Drug repurposing offers a faster, more affordable route to new cancer treatments.
- Anti-inflammatory drugs show promise in targeting multiple cancer-related pathways.
- Understanding the mechanism of action of existing drugs can reveal new therapeutic potentials.
Purpose of the Study:
- To evaluate sulfadiazine, an anti-inflammatory drug, as a potential anticancer agent.
- To investigate sulfadiazine's inhibitory effects on inflammation-related enzymes (COX/LOX pathway).
- To assess the impact of sulfadiazine on inflammatory markers and gene expression in cancer cell lines.
Main Methods:
- Cell viability was assessed using MTT assays on HepG2 and MCF7 cancer cell lines.
- Enzyme binding assays (ELISA, enzyme inhibition) were performed to determine IC50 values for COX-1, COX-2, and 5-LOX inhibition.
- Quantitative PCR (qPCR) was used to measure the expression of inflammation-related genes (TNFα, IL1b, COX-1, COX-2, 5-LOX).
Main Results:
- Sulfadiazine exhibited balanced inhibitory activity against 5-LOX and COX-1 enzymes, with IC50 values of 19.1 μM and 18.4 μM, respectively.
- MTT assays showed IC50 values for sulfadiazine on HepG2 and MCF7 cells at 245.69 ± 4.1 µM and 215.68 ± 3.8 µM, respectively.
- Sulfadiazine effectively reduced the levels of inflammatory markers and the expression of inflammation-related genes.
Conclusions:
- Sulfadiazine demonstrates potential as an anticancer agent due to its balanced inhibitory activity on the 5-LOX/COX-1 pathway.
- The drug's ability to reduce inflammatory markers and gene expression supports its therapeutic potential in cancer.
- Further research into sulfadiazine's anticancer mechanisms and efficacy is warranted.
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