International Journal of Molecular Sciences (Jan 2023)

Design and Synthesis of New Quinazolin-4-one Derivatives with Negative mGlu<sub>7</sub> Receptor Modulation Activity and Antipsychotic-Like Properties

  • Katarzyna Kaczorowska,
  • Anna Stankiewicz,
  • Ryszard Bugno,
  • Maria H. Paluchowska,
  • Grzegorz Burnat,
  • Piotr Brański,
  • Paulina Cieślik,
  • Joanna M. Wierońska,
  • Mariusz Milik,
  • Mateusz Nowak,
  • Agnieszka Przybyłowicz,
  • Aneta Kozioł,
  • Agata Hogendorf,
  • Adam S. Hogendorf,
  • Justyna Kalinowska-Tłuścik,
  • Beata Duszyńska,
  • Andrzej Pilc,
  • Andrzej J. Bojarski

DOI
https://doi.org/10.3390/ijms24031981
Journal volume & issue
Vol. 24, no. 3
p. 1981

Abstract

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Following the glutamatergic theory of schizophrenia and based on our previous study regarding the antipsychotic-like activity of mGlu7 NAMs, we synthesized a new compound library containing 103 members, which were examined for NAM mGlu7 activity in the T-REx 293 cell line expressing a recombinant human mGlu7 receptor. Out of the twenty-two scaffolds examined, active compounds were found only within the quinazolinone chemotype. 2-(2-Chlorophenyl)-6-(2,3-dimethoxyphenyl)-3-methylquinazolin-4(3H)-one (A9-7, ALX-171, mGlu7 IC50 = 6.14 µM) was selective over other group III mGlu receptors (mGlu4 and mGlu8), exhibited satisfactory drug-like properties in preliminary DMPK profiling, and was further tested in animal models of antipsychotic-like activity, assessing the positive, negative, and cognitive symptoms. ALX-171 reversed DOI-induced head twitches and MK-801-induced disruptions of social interactions or cognition in the novel object recognition test and spatial delayed alternation test. On the other hand, the efficacy of the compound was not observed in the MK-801-induced hyperactivity test or prepulse inhibition. In summary, the observed antipsychotic activity profile of ALX-171 justifies the further development of the group of quinazolin-4-one derivatives in the search for a new drug candidate for schizophrenia treatment.

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