4.5 Article

In vitro multitarget activity of sulfadiazine substituted triazenes as antimicrobial, cytotoxic, and larvicidal agents

Journal

Publisher

WILEY
DOI: 10.1002/jbt.23467

Keywords

1; 3-diaryl triazenes; antibacterial; antifungal; antiviral activity; sulfa drugs

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Multidrug resistance (MDR) poses challenges in the treatment of infections and cancer. Research and development studies are crucial in preventing MDR. This study focused on investigating the effects of multi-target triazene compounds on various activities related to bacteria, fungi, viruses, cytotoxicity, and larvicidal efficacy. Novel derivatives of 1,3-diaryltriazene-substituted sulfadiazine (SDZ) were synthesized and characterized, showing potential as multitargeted agents. These compounds exhibited antibacterial, antifungal, antiviral, cytotoxic, and larvicidal activities.
Multidrug resistance (MDR) causes difficulties in the treatment of infections and cancer. Research and development studies have become increasingly important for the strategy of preventing MDR. There is a need for new multitarget drug research and advancement to reduce the development of drug resistance in drug-drug interactions and reduce cost and toxic effects. This study aimed to determine the effects of multi-target triazene compounds on antibacterial, antifungal, antiviral, cytotoxic, and larvicidal activities were investigated in vitro. A series of 12 novel of 1,3-diaryltriazene-substituted sulfadiazine (SDZ) derivatives were synthesized, and the obtained pure products characterized in detail by spectroscopic and analytic methods (FT-IR, H-1-NMR, C-13-NMR, and melting points). The antibacterial and antifungal activities of these derivatives (AH1-12) were determined by broth microdilution method. All derivatives have been evaluated in cell-based assays for cytotoxic and antiviral activities against Modified Vaccinia Virus Ankara. The larvicidal efficacy of these chemical compounds was also investigated by using Lucilia sericata (L. sericata) larvae. Twelve 1,3-diaryltriazene-substituted SDZ derivatives (AH1-12) were designed and developed as potent multitargeted compounds. Among them, the AH1 derivative showed the most antibacterial and antifungal activity. Besides, synthesized derivatives AH2, AH3, AH5, and AH7 showed higher antiviral activity than SDZ. All synthesized derivatives showed higher cytotoxic activity than SDZ. Also, they showed larvicidal activity at 72 h of the experiment. As a result, these compounds might be great leads for the development of next-generation multitargeted agents.

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