Chromenones as Multineurotargeting Inhibitors of Human Enzymes
Author(s) -
Carina Lemke,
Joscha Christmann,
Jiafei Yin,
José M. Alonso,
Estefanía Serrano,
Mourad Chioua,
Lhassane Ismaïli,
A. MARTINEZGRAU,
Christopher D. Beadle,
Tatiana Vetman,
Florian M. Dato,
Ulrike Bartz,
Paul W. Elsinghorst,
Markus Pietsch,
Christa E. Müller,
Isabel Iriepa,
Timo Wille,
José MarcoContelles,
Michael Gütschow
Publication year - 2019
Publication title -
acs omega
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.779
H-Index - 40
ISSN - 2470-1343
DOI - 10.1021/acsomega.9b03409
Subject(s) - monoamine oxidase , moiety , enzyme , chemistry , linker , stereochemistry , acetylcholinesterase , small molecule , biochemistry , monoamine oxidase b , combinatorial chemistry , computer science , operating system
The complex nature of multifactorial diseases, such as Morbus Alzheimer, has produced a strong need to design multitarget-directed ligands to address the involved complementary pathways. We performed a purposive structural modification of a tetratarget small-molecule, that is contilisant, and generated a combinatorial library of 28 substituted chromen-4-ones. The compounds comprise a basic moiety which is linker-connected to the 6-position of the heterocyclic chromenone core. The syntheses were accomplished by Mitsunobu- or Williamson-type ether formations. The resulting library members were evaluated at a panel of seven human enzymes, all of which being involved in the pathophysiology of neurodegeneration. A concomitant inhibition of human acetylcholinesterase and human monoamine oxidase B, with IC 50 values of 5.58 and 7.20 μM, respectively, was achieved with the dual-target 6-(4-(piperidin-1-yl)butoxy)-4 H -chromen-4-one ( 7 ).
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