Literature DB >> 32633095

Chemoselective Hydrogenation of 6-Alkynyl-3-fluoro-2-pyridinaldoximes: Access to First-in-Class 6-Alkyl-3-Fluoro-2-pyridinaldoxime Scaffolds as New Reactivators of Sarin-Inhibited Human Acetylcholinesterase with Increased Blood-Brain Barrier Permeability.

Jagadeesh Yerri1, José Dias2, Mallikajurna Reddy Nimmakayala1, Franck Razafindrainibe1, Charlotte Courageux2, Anne-Julie Gastellier2, Johanne Jegoux2, Caroline Coisne3, Christophe Landry3, Fabien Gosselet3, Johan Hachani3, Jean-François Goossens4, Marie-Pierre Dehouck3, Florian Nachon2, Rachid Baati1.   

Abstract

Novel 6-alkyl- and 6-alkenyl-3-fluoro-2-pyridinaldoximes have been synthesised by using a mild and efficient chemoselective hydrogenation of 6-alkynyl-3-fluoro-2-pyridinaldoxime scaffolds, without altering the reducible, unprotected, sensitive oxime functionality and the C-F bond. These novel 6-alkyl-3-fluoro-2-pyridinaldoximes may find medicinal application as antidotes to organophosphate poisoning. Indeed, one low-molecular-weight compound exhibited increased affinity for sarin-inhibited acetylcholinesterase (hAChE) and greater reactivation efficiency or resurrection for sarin-inhibited hAChE, compared with those of 2-pyridinaldoxime (2-PAM) and 1-({[4-(aminocarbonyl)pyridinio]methoxy}methyl)-2-[(hydroxyimino)methyl]pyridinium chloride (HI-6), two pyridinium salts currently used as antidote by several countries. In addition, the uncharged 3-fluorinated bifunctional hybrid showed increased in vitro blood-brain barrier permeability compared with those of 2-PAM, HI-6 and obidoxime. These promising features of novel low-molecular-weight alkylfluoropyridinaldoxime open up a new era for the design, synthesis and discovery of central non-quaternary broad spectrum reactivators for organophosphate-inhibited cholinesterases.
© 2020 Wiley-VCH GmbH.

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Keywords:  3-fluoro-2-pyridinaldoximes; blood-brain barrier permeability; chemical warfare agents; chemoselective hydrogenation; synthesis design

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Year:  2020        PMID: 32633095     DOI: 10.1002/chem.202002012

Source DB:  PubMed          Journal:  Chemistry        ISSN: 0947-6539            Impact factor:   5.236


  1 in total

1.  Charged pyridinium oximes with thiocarboxamide moiety are equally or less effective reactivators of organophosphate-inhibited cholinesterases compared to analogous carboxamides.

Authors:  Zuzana Kohoutova; David Malinak; Rudolf Andrys; Jana Svobodova; Miroslav Psotka; Monika Schmidt; Lukas Prchal; Kamil Musilek
Journal:  J Enzyme Inhib Med Chem       Date:  2022-12       Impact factor: 5.051

  1 in total

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