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Olive oil-derived oleocanthal as potent inhibitor of mammalian target of rapamycin: biological evaluation and molecular modeling studies
Prof. Mohammed Khanfar
Olive oil-derived oleocanthal as potent inhibitor of mammalian target of rapamycin: biological evaluation and molecular modeling studies
Prof. Mohammed Khanfar
Discovery of check point kinase 1 (Chk1) inhibitors as potential anticancer agents using ligand-based modelling and virtual screening
Prof. Mohammed Khanfar
Discovery of check point kinase 1 (Chk1) inhibitors as potential anticancer agents using ligand-based modelling and virtual screening
Prof. Mohammed Khanfar
Multiple Targeting Approaches on Histamine H3 Receptor Antagonists
Prof. Mohammed Khanfar
Multiple targeting approaches on histamine H3 receptor antagonists
Prof. Mohammed Khanfar
Discovery of potent adenosine A2a antagonists as potential anti-Parkinson disease agents. Non-linear QSAR analyses integrated with pharmacophore modeling
Prof. Mohammed Khanfar
Discovery of potent adenosine A2a antagonists as potential anti-Parkinson disease agents. Non-linear QSAR analyses integrated with pharmacophore modeling
Prof. Mohammed Khanfar
Modified Hummel–Dreyer Method and Molecular Modeling Studies Iden-tified Nicotinic Acid Analogues as Carbonic Anhydrase III Ligands
Prof. Mohammed Khanfar
Modified Hummel–Dreyer Method and Molecular Modeling Studies Iden-tified Nicotinic Acid Analogues as Carbonic Anhydrase III Ligands
Prof. Mohammed Khanfar

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