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Synthesis, anti-microbial, and docking studies of functionalized chromenyl phosphonates using ionic liquid catalyst. | LitMetric

AI Article Synopsis

  • The study presents a method for synthesizing functionalized chromenyl phosphonates using 2-hydroxybenzaldehydes, dicyanoethane, and dialkyl phosphonates, catalyzed by choline hydroxide ionic liquid at room temperature.
  • This approach enables multiple chemical reactions (Knoevenagel, Pinner, and phospha-Michael) to occur simultaneously without the need for extraction or chromatography, making it cost-effective.
  • The resulting compounds showed promising antimicrobial activity against DNA Gyrase B and Aspergillus niger endoglucanase, with certain compounds identified as strong candidates for treatment based on their binding affinities.

Article Abstract

Synthesis of functionalized chromenyl phosphonates by the reaction among 2-hydorxybenzaldehydes, dicyanoethane, and dialkyl phosphonates that was promoted by choline hydroxide ionic liquid catalyzes the simultaneous, Knoevenagel, Pinner, and phospha-Michael reactions, under neat condition at room temperature. Important phosphorus-containing compounds can be produced at a reasonable cost because of the mild reaction conditions and the inexpensive promoter choline hydroxide. Furthermore, the desired products can be obtained without the need for any extraction or chromatography steps. An alternate technique for the simple and high-yield synthesis of functionalized chromenyl phosphonates is offered by this protocol. The synthesized compounds were studied by anti-microbial activity and docking studies. The title compounds molecular docking investigations demonstrated their efficacy as therapeutic agents against DNA Gyrase B and Aspergillus niger endoglucanase in both antibacterial and antifungal inhibition, and they identified compounds 4a, 4d, 4l, 4p, and 4q as promising candidates for microbial treatment, with binding affinities ranging from - 6.9 to - 7.4 kcal/mol.

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Source
http://dx.doi.org/10.1007/s11030-024-10941-6DOI Listing

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