Journal of Medicinal Chemistry · 2018 · 17 citations · 33 references
Studies indicate that MAO-B is induced in peripheral inflammatory diseases. To target peripheral tissues using MAO-B inhibitors that do not permeate the blood-brain barrier (BBB) the MAO-B-selective inhibitor deprenyl was remodeled by replacing the terminal acetylene with a CO<sub>2</sub>H function, and incorporating a para-OCH<sub>2</sub>Ar motif (compounds 10a-s). Further, in compound 32 the C-2 side chain corresponded to CH<sub>2</sub>CN. In vitro, 10c, 10j, 10k, and 32 were identified as potent reversible MAO-B inhibitors, and all four compounds were more stable than deprenyl in plasma, liver microsomal, and hepatocyte stability assays. In vivo, they demonstrated greater plasma bioavailability. Assessment of in vitro BBB permeability showed that compound 10k is a P-glycoprotein (P-gp) substrate and 10j displayed mild interaction. Importantly, compounds 10c, 10j, 10k, and 32 displayed significantly reduced BBB permeability after intravenous, subcutaneous, and oral administration. These polar MAO-B inhibitors are pertinent leads for evaluation of efficacy in noncentral nervous system (CNS) inflammatory disease models.
33
Paul C. D. Hawkins, A. Geoffrey Skillman, Gregory L. Warren et al. · Journal of Chemical Information and Modeling · 2010 · 1.6K citations · Full text
Structural Bioinformatics, Biomolecular Structure Prediction, Molecular Biology +16