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April 22, 2026Chemistry & Biodiversity0 citations

Synthesis of 1,2,3‐Triazole and Isoxazole Derivatives of 1,2,4Triazolo3,4‐b1,3,4thiadiazine as Potent EGFR Targeting Antilung Cancer Agents

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AKArvapalli Kiran KumarTRT. Madhukar ReddySKSridhar Kavela

Key Points

  • The research aims to design and synthesize new compounds targeting EGFR for lung cancer treatment.
  • Hybridization of imidazole, triazole, and isoxazole scaffolds for compound synthesis.
  • In vitro testing of synthesized compounds against A-549 and NCI-H460 lung cancer cell lines.
  • In silico molecular docking studies to assess binding efficacy of potent compounds.
  • Compound 6h showed an IC50 of 0.61 µM, outperforming Erlotinib's IC50 of 0.64 µM.
  • Compound 6d exhibited significant EGFR inhibitory action with an IC50 of 0.65 µM.
  • In silico studies confirmed superior binding energies for synthesized compounds compared to the standard.

Abstract

ABSTRACT Imidazole‐1,2,4triazolo3,4‐b1,3,4thiadiazines associated 1,2,3‐triazole and isoxazole hybrids were designed and synthesized using a pharmacophore‐hybridization approach that incorporates physiologically active scaffolds. In vitro anticancer activity of the synthesized compounds was screened against two lung cancer cell lines, A‐549 and NCI‐H460, and results revealed that compounds 6d and 6h had substantial efficacy compared to the standard erlotinib. Furthermore, compound 6h (IC 50 = 0.61 ± 0.12 µM) exhibited greater effectiveness as compared to the conventional Erlotinib (IC 50 = 0.64 ± 0.23 µM) in vitro, as shown by EGFR inhibitory tests, whereas compound 6d (IC 50 = 0.65 ± 0.09 µM) indicated notable EGFR inhibitory action. To confirm the activity findings, five potent compounds underwent in silico molecular docking studies, with all compounds demonstrating superior binding energies relative to the standard.

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Cite This Study

Kumar et al. (2026) studied this question.

synapsesocial.com/papers/69e866f16e0dea528ddeb51dhttps://doi.org/10.1002/cbdv.202502795
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