Design, characterization, DFT studies, and molecular docking of new benzofuran–pyrazol-acrylamide hybrids as insecticidal agents against Spodoptera littoralis and Tribolium castaneum
Ghada G. El-Bana, Mohamed R. Fouad, Ahmed D. H. Deeb, Ahmed M. Wahba, Ahmed F. El-Sayed, Ghada E. Abd el-Ghani

TL;DR
This study develops new insecticidal compounds based on benzofuran-pyrazole hybrids, showing strong activity against two pests and potential as acetylcholinesterase inhibitors.
Contribution
The paper introduces novel benzofuran-pyrazole cyanoacrylamide hybrids with insecticidal activity and evaluates their stereochemistry and binding to acetylcholinesterase.
Findings
Compounds 3b, 3c, and 3a showed the highest insecticidal activity against Spodoptera littoralis with LC50 values of 79.58, 106.37, and 226.17 ppm.
Molecular docking showed strong binding affinities (−8.0 to −8.8 kcal/mol) of compounds 3a, 3b, and 3c to acetylcholinesterase from two pests.
Compound 3b exhibited the highest binding affinity and stable interactions in molecular dynamics simulations.
Abstract
This study discusses the synthesis and structural characterization of a new series of benzofuran-pyrazole cyanoacrylamide derivatives 3a–f and 5 utilizing spectroscopic analyses involving IR, NMR, and ESI-MS spectrometry. The insecticidal activity of benzofuran-pyrazole cyanoacrylamide derivatives 3a–f and 5 against Spodoptera littoralis and Tribolium castaneum was evaluated. The benzofuran-pyrazole cyanoacrylamide derivatives on Spodoptera littoralis and Tribolium castaneum revealed that 3b, 3c, and 3a were the most effective compounds, respectively, while compounds 3d, 3e, 3f, and 5 were not lethal to S. littoralis. The LC50 values for compounds 3b, 3c, and 3a were 79.58, 106.37, and 226.17 ppm at 72 h, respectively; while in contrast, compounds 1, 3d, 3e, 3f, and 5 exhibited very low or no contact toxicity against T. castaneum. Density Functional Theory (DFT) calculations were…
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Taxonomy
TopicsSynthesis and biological activity · Insect Pest Control Strategies · Fungal Plant Pathogen Control
