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The positive allosteric modulator of the mGlu2 receptor JNJ-46356479 partially improves neuropathological deficits and schizophrenia-like behaviors in a postnatal ketamine mice model.

A. Martínez-Pinteño, Susana García-Cerro, S. Mas, T. Torres, D. Boloc, N. Rodríguez, A. Lafuente, P. Gassó, J. Arnaiz, E. Parellada

Journal of Psychiatric Research April 26, 2020 DOI: 10.1016/j.jpsychires.2020.04.005 (opens in new tab) via Semantic Scholar

Summary

AI-generated from the abstract

A positive allosteric modulator of the metabotropic glutamate receptor 2, JNJ-46356479, partially reversed spatial working memory deficits and social motivation and memory impairments in a mouse model of schizophrenia induced by postnatal ketamine. The ketamine-treated mice also showed reduced parvalbumin-positive interneurons in the medial prefrontal cortex and dentate gyrus, along with increased c-Fos expression in the hippocampus; JNJ treatment normalized these neural markers. The results suggest that targeting mGluR2 could help improve cognitive and negative symptoms related to schizophrenia.

Study at a glance

Characteristics Preclinical animal study Peer reviewed
Population Postnatal ketamine mouse model of schizophrenia
Intervention JNJ-46356479
Keywords Medicine
Key finding JNJ-46356479 partially reversed ketamine-induced deficits in spatial working memory and social behavior, and normalized parvalbumin and c-Fos expression in the brain.

Abstract

Current antipsychotics have limited efficacy in controlling cognitive and negative symptoms of schizophrenia (SZ). Glutamatergic dysregulation has been implicated in the pathophysiology of SZ, based on the capacity of N-methyl-D-aspartate receptor (NMDAR) antagonists such as ketamine (KET) to induce SZ-like behaviors. This could be related to their putative neuropathological effect on gamma-aminobutyric (GABAergic) interneurons expressing parvalbumin (PV), which would lead to a hyperglutamatergic condition. Metabotropic glutamate receptor 2 (mGluR2) negatively modulates glutamate release and has been considered a potential clinical target for novel antipsychotics drugs. Our aim was to evaluate the efficacy of JNJ-46356479 (JNJ), a positive allosteric modulator (PAM) of the mGluR2, in reversing neuropathological and behavioral deficits induced in a postnatal KET mice model of SZ. These animals presented impaired spontaneous alternation in the Y-maze test, suggesting deficits in spatial working memory, and a decrease in social motivation and memory, assessed in both the Three-Chamber and the Five Trial Social Memory tests. Interestingly, JNJ treatment of adult mice partially reversed these deficits. Mice treated with KET also showed a reduction in PV+ in the mPFC and dentate gyrus together with an increase in c-Fos expression in this hippocampal area. Compared to the control group, mice treated with KET + JNJ showed a similar PV density and c-Fos activity pattern. Our results suggest that pharmacological treatment with a PAM of the mGluR2 such as JNJ could help improve cognitive and negative symptoms related to SZ.

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