In vitro ADME characterization of a very potent 3-acylamino-2-aminopropionic acid-derived GluN2C-NMDA receptor agonist and its ester prodrugs

Author:

Bechthold Elena12,Grey Lucie2ORCID,Diamant Emil3,Schmidt Judith2,Steigerwald Ruben12,Zhao Fabao4,Hansen Kasper B.5,Bunch Lennart3,Clausen Rasmus P.3,Wünsch Bernhard12ORCID

Affiliation:

1. Westfälische Wilhelms-Universität Münster, GRK 2515, Chemical Biology of Ion Channels (Chembion) , Corrensstraße 48, D-48149 Münster , Germany

2. Westfälische Wilhelms-Universität Münster, Institut für Pharmazeutische und Medizinische Chemie , Corrensstraße 48, D-48149 Münster , Germany

3. Department of Drug Design and Pharmacology , Faculty of Health and Medical Sciences, University of Copenhagen , Universitetsparken 2, DK-2100 Copenhagen , Denmark

4. Department of Medicinal Chemistry , Key Laboratory of Chemical Biology (Ministry of Education), School of Pharmaceutical Sciences, Shandong University , No. 44, Wenhua West Road, Lixia District , Ji’nan , Shandong , 250012 , China

5. Center for Structural and Functional Neuroscience, Center for Biomolecular Structure and Dynamics, Division of Biological Sciences, University of Montana , 32 Campus Drive , Missoula , MT 59812 , USA

Abstract

Abstract The GluN2C subunit exists predominantly, but not exclusively in NMDA receptors within the cerebellum. Antagonists such as UBP1700 and positive allosteric modulators including PYD-106 and 3-acylamino-2-aminopropionic acid derivatives such as UA3-10 ((R)-2-amino-3-{[5-(2-bromophenyl)thiophen-2-yl]carboxamido}propionic acid) represent promising tool compounds to investigate the role of GluN2C-containing NMDA receptors in the signal transduction in the brain. However, due to its high polarity the bioavailability and CNS penetration of the amino acid UA3-10 are expected to be rather low. Herein, three ester prodrugs 12ac of the NMDA receptor glycine site agonist UA3-10 were prepared and pharmacokinetically characterized. The esters 12ac showed higher lipophilicity (higher logD 7.4 values) than the acid UA3-10 but almost the same binding at human serum albumin. The acid UA3-10 was rather stable upon incubation with mouse liver microsomes and NADPH, but the esters 12ac were fast hydrolyzed to afford the acid UA3-10. Incubation with pig liver esterase and mouse serum led to rapid hydrolysis of the esters 12ac. The isopropyl ester 12c showed a promising logD 7.4 value of 3.57 and the highest stability in the presence of pig liver esterase and mouse serum. These results demonstrate that ester prodrugs of UA3-10 can potentially afford improved bioavailability and CNS penetration.

Funder

National Institutes of Health

Deutsche Forschungsgemeinschaft

Publisher

Walter de Gruyter GmbH

Subject

Clinical Biochemistry,Molecular Biology,Biochemistry

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