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September 10, 2025PharmaceuticalsOpen Access

Design, Synthesis, In Silico Docking, Multitarget Bioevaluation and Molecular Dynamic Simulation of Novel Pyrazolo3,4-dPyrimidinone Derivatives as Potential In Vitro and In Vivo Anti-Inflammatory Agents

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Authors

MRMostafa RoshdiTheodor Bilharz Research InstituteMMMamdouh F. A. MohamedNile Valley UniversityEBEman A. M. BeshrMinia University

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Overview

In vitro experiments showed significant anti-inflammatory effects through COX-2 inhibition, suggesting these compounds may be viable therapeutic options.

Key Points

  • Compound 5k demonstrated substantial anti-inflammatory efficacy by inhibiting COX-2 and reducing TNF-α and IL-6 levels.
  • The most potent compound, 5k, had an IC50 of 2.34 μM and a selectivity index of 95.8 compared to COX-1.
  • Molecular dynamic simulation confirmed that compound 5k showed enhanced binding free energy of -10.57 kcal/mol with COX-2.
  • In vivo testing indicated compound 5j and 5k effectively reduced paw edema compared to indomethacin, showcasing excellent safety profiles.

Cite This Study

Roshdi et al. (2025) studied this question.

synapsesocial.com/papers/68c189d99b7b07f3a06136c0https://doi.org/10.3390/ph18091326
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