Design, Synthesis, Anti-Inflammatory Activity, DFT Modeling and Docking Study of New Ibuprofen Derivatives.
Abbas M AbbasHossam H NasrallahAbouelmagd ASafaa M KishkWarren Christopher BoydHaitham KalilAdel S OrabiPublished in: International journal of molecular sciences (2024)
A new ibuprofen derivative, ( E )-2-(4-isobutylphenyl)-N'-(4-oxopentan-2-ylidene) propane hydrazide (IA), was synthesized, along with its metal complexes with Co, Cu, Ni, Gd, and Sm, to investigate their anti-inflammatory efficacy and COX-2 inhibition potential. Comprehensive characterization, including 1 H NMR, MS, FTIR, UV-vis spectroscopy, and DFT analysis, were employed to determine the structural configurations, revealing unique motifs for Gd/Sm (capped square antiprismatic/tricapped trigonal prismatic) and Cu/Ni/Co (octahedral) complexes. Molecular docking with the COX-2 enzyme (PDB code: 5IKT) and pharmacokinetic assessments through SwissADME indicated that these compounds have superior binding energies and pharmacokinetic profiles, including BBB permeability and gastrointestinal absorption, compared to the traditional ibuprofen standalone. Their significantly lower IC50 values further suggest a higher efficacy as anti-inflammatory agents and COX-2 inhibitors. These research findings not only introduce promising ibuprofen derivatives for therapeutic applications but also set the stage for future validation and exploration of this new generation of ibuprofen compounds.
Keyphrases
- molecular docking
- anti inflammatory
- molecular dynamics simulations
- postoperative pain
- density functional theory
- high resolution
- molecular dynamics
- multiple sclerosis
- magnetic resonance
- metal organic framework
- blood brain barrier
- mass spectrometry
- ms ms
- endothelial cells
- small molecule
- solid state
- aqueous solution
- transcription factor
- binding protein
- dna binding
- climate change
- protein protein
- crystal structure
- clinical evaluation