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 abstractA 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.