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January 25, 2026Mini-Reviews in Organic Chemistry1 citations

An Overview of Pyridazine Derivatives: Various Approaches to Synthesis,Reactivity, and Biological Activity

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AAAbdulrahman S. Alharbi

Key Points

  • To review recent advancements in the synthesis and biological activity of pyridazine derivatives.
  • Comprehensive literature review on synthesis approaches including microwave and sonication.
  • Analysis of reactivity patterns and functional group changes.
  • Examination of medicinal properties across various biological activities.
  • Pyridazine derivatives exhibit extensive biological activities such as antibacterial, antifungal, and anticancer properties.
  • Innovative synthesis techniques enhance the production of pharmacologically active compounds.
  • Identified structural motifs suggest promising avenues for future medicinal research.

Abstract

Pyridazine derivatives have garnered considerable attention due to their remarkable chemical reactivity and extensive biological applications. This study presents a comprehensive review of recent advancements in the synthesis of pyridazine derivatives, with a focus on both conventional and innovative approaches (e.g., microwave and sonication), which include cyclocondensation, cycloaddition, addition, transition metal-catalyzed reactions, ring-opening and closure, coupling, nucleophilic cyclization, Knoevenagel condensation, hydrogenation, oxidation, aldol condensation, Diels-Alder, acylation, bromination, lithiation, and acid hydrolysis reactions. The distinctive characteristics of the pyridazine ring enhance its versatility in chemical reactions, facilitating its utilization in the synthesis of pharmacologically active compounds. Furthermore, the reactivity patterns are clearly delineated, emphasizing changes in functional groups and ring fusion strategies. This study examines the significant biological potential of pyridazine derivatives, encompassing antibacterial, antifungal, anticancer, anti-inflammatory, antiviral, antioxidant, antidiabetic, anticoagulant, analgesic, and cardiovascular properties. It aims to guide future research by identifying appealing structural motifs and synthesis pathways that may lead to the development of innovative medicinal molecules.

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Abdulrahman S. Alharbi (2026) studied this question.

synapsesocial.com/papers/6975b1a9feba4585c2d6d321https://doi.org/10.2174/0118756298421529251030163718
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