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Discovery of (R)- N-Benzyl-2-(2,5-dioxopyrrolidin-1-yl)propanamide [ (R)-AS-1 ], a Novel Orally Bioavailable EAAT2 Modulator with Drug-like Properties and Potent Antiseizure Activity in Vivo

  • Michał Abram
  • , Marcin Jakubiec
  • , Katelyn Reeb
  • , Mary Hongying Cheng
  • , Robin Gedschold
  • , Anna Rapacz
  • , Szczepan Mogilski
  • , Katarzyna Socała
  • , Dorota Nieoczym
  • , Małgorzata Szafarz
  • , Gniewomir Latacz
  • , Bartłomiej Szulczyk
  • , Justyna Kalinowska-Tłuścik
  • , Kinga Gawel
  • , Camila V. Esguerra
  • , Elżbieta Wyska
  • , Christa E. Müller
  • , Ivet Bahar
  • , Andréia C.K. Fontana
  • , Piotr Wlaź
  • Rafał M. Kamiński, Krzysztof Kamiński
  • Jagiellonian University Medical College
  • Drexel University
  • University of Pittsburgh
  • University of Bonn
  • Maria Curie-Skłodowska University in Lublin
  • Medical University of Warsaw
  • Jagiellonian University in Kraków
  • Medical University of Lublin
  • University of Oslo

Research output: Contribution to journalArticlepeer-review

23 Scopus citations

Abstract

(R)-7 [(R)-AS-1] showed broad-spectrum antiseizure activity across in vivo mouse seizure models: maximal electroshock (MES), 6 Hz (32/44 mA), acute pentylenetetrazol (PTZ), and PTZ-kindling. A remarkable separation between antiseizure activity and CNS-related adverse effects was also observed. In vitro studies with primary glia cultures and COS-7 cells expressing the glutamate transporter EAAT2 showed enhancement of glutamate uptake, revealing a stereoselective positive allosteric modulator (PAM) effect, further supported by molecular docking simulations. (R)-7 [(R)-AS-1] was not active in EAAT1 and EAAT3 assays and did not show significant off-target activity, including interactions with targets reported for marketed antiseizure drugs, indicative of a novel and unprecedented mechanism of action. Both in vivo pharmacokinetic and in vitro absorption, distribution, metabolism, excretion, toxicity (ADME-Tox) profiles confirmed the favorable drug-like potential of the compound. Thus, (R)-7 [(R)-AS-1] may be considered as the first-in-class small-molecule PAM of EAAT2 with potential for further preclinical and clinical development in epilepsy and possibly other CNS disorders.

Original languageEnglish
Pages (from-to)11703-11725
Number of pages23
JournalJournal of Medicinal Chemistry
Volume65
Issue number17
DOIs
StatePublished - Sep 8 2022

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