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Pyridazinone-based derivatives as anticancer agents endowed with anti-microbial activity: molecular design,
Mohamed K S El-Nagar1, Mai I Shahin2, Mohammed F El-Behairy1
1Department of Organic and Medicinal Chemistry, Faculty of Pharmacy, University of Sadat City Sadat City Menoufia 32897 Egypt.
Abstract:
Cancer patients undergoing chemotherapy are highly susceptible to infections owing to their compromised immune system, which also promotes cancer progression through inflammation. Thus, this study aimed to develop novel chemotherapeutic agents with both anticancer and antimicrobial properties. A series of diarylurea derivatives based on pyridazinone scaffolds were designed, synthesized, and characterized as surrogates for sorafenib. The synthesized compounds were tested for their antimicrobial activity and screened against 60 cancer cell lines at the National Cancer Institute (NCI). Compound 10h exhibited potent antibacterial activity against Staphylococcus aureus (MIC = 16 μg mL-1), whereas compound 8g showed significant antifungal activity against Candida albicans (MIC = 16 μg mL-1). Additionally, ten compounds were further evaluated for VEGFR-2 inhibition, with compound 17a showing the best inhibitory activity. Compounds 8f, 10l, and 17a demonstrated significant anticancer activity against melanoma, NSCLC, prostate cancer, and colon cancer, with growth inhibition percentages (GI%) ranging from 62.21% to 100.14%. Compounds 10l and 17a were selected for five-dose screening, displaying GI50 values of 1.66-100 μM. Compound 10l induced G0-G1 phase cell cycle arrest in the A549/ATCC cell line, increasing the cell population from 85.41% to 90.86%. Gene expression analysis showed that compound 10l upregulated pro-apoptotic genes p53 and Bax and downregulated the anti-apoptotic gene Bcl-2. Molecular docking studies provided insights into the binding modes of the compounds to the VEGFR-2 enzyme. In conclusion, the pyridazinone-based diarylurea derivatives developed in this study show promise as dual-function antimicrobial and anticancer agents, warranting further investigation.
Insights
This study developed novel pyridazinone-based diarylurea compounds with both anticancer and antimicrobial properties. These agents show promise in fighting infections and inhibiting cancer cell growth, offering a dual therapeutic approach for cancer patients.
Area of Science:
- Medicinal Chemistry
- Pharmacology
- Oncology
Background:
- Chemotherapy patients face increased infection risk and inflammation-driven cancer progression.
- There is a need for novel agents with combined anticancer and antimicrobial effects.
Purpose of the Study:
- To design and synthesize novel pyridazinone-based diarylurea derivatives.
- To evaluate these compounds for dual anticancer and antimicrobial activities.
- To identify potential surrogates for sorafenib with improved therapeutic profiles.
Main Methods:
- Synthesis and characterization of diarylurea derivatives.
- Antimicrobial activity testing against Staphylococcus aureus and Candida albicans.
- Anticancer screening against 60 cancer cell lines via the National Cancer Institute (NCI).
- VEGFR-2 inhibition assays and molecular docking studies.
- Cell cycle analysis and gene expression profiling (p53, Bax, Bcl-2).
Main Results:
- Compounds 10h and 8g displayed potent antibacterial and antifungal activities, respectively.
- Compound 17a showed significant VEGFR-2 inhibitory activity.
- Compounds 8f, 10l, and 17a exhibited broad-spectrum anticancer activity (62.21%-100.14% GI%).
- Compound 10l induced G0-G1 cell cycle arrest and modulated apoptosis-related gene expression.
- Molecular docking supported the binding of compounds to VEGFR-2.
Conclusions:
- Pyridazinone-based diarylurea derivatives possess dual antimicrobial and anticancer potential.
- These compounds represent promising candidates for further development as novel chemotherapeutic agents.
- The findings support a new strategy for treating cancer patients susceptible to infections.
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