Cargando…

The Neurogenesis Actuator and NR2B/NMDA Receptor Antagonist Ro25-6981 Consistently Improves Spatial Memory Retraining Via Brain Region-Specific Gene Expression

NR2B-containing NMDA (NR2B/NMDA) receptors are important in controlling neurogenesis and are involved in generating spatial memory. Ro25-6981 is a selective antagonist at these receptors and actuates neurogenesis and spatial memory. Inter-structural neuroanatomical profiles of gene expression regula...

Descripción completa

Detalles Bibliográficos
Autores principales: Gruden, Marina A., Ratmirov, Alexander M., Storozheva, Zinaida I., Solovieva, Olga A., Sherstnev, Vladimir V., Sewell, Robert D. E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6061165/
https://www.ncbi.nlm.nih.gov/pubmed/29790100
http://dx.doi.org/10.1007/s12031-018-1083-5
_version_ 1783342165420670976
author Gruden, Marina A.
Ratmirov, Alexander M.
Storozheva, Zinaida I.
Solovieva, Olga A.
Sherstnev, Vladimir V.
Sewell, Robert D. E.
author_facet Gruden, Marina A.
Ratmirov, Alexander M.
Storozheva, Zinaida I.
Solovieva, Olga A.
Sherstnev, Vladimir V.
Sewell, Robert D. E.
author_sort Gruden, Marina A.
collection PubMed
description NR2B-containing NMDA (NR2B/NMDA) receptors are important in controlling neurogenesis and are involved in generating spatial memory. Ro25-6981 is a selective antagonist at these receptors and actuates neurogenesis and spatial memory. Inter-structural neuroanatomical profiles of gene expression regulating adult neurogenesis and neuroapoptosis require examination in the context of memory retrieval and reversal learning. The aim was to investigate spatial memory retrieval and reversal learning in relation to gene expression-linked neurogenetic processes following blockade of NR2B/NMDA receptors by Ro25-6981. Rats were trained in Morris water maze (MWM) platform location for 5 days. Ro25-6981 was administered (protocol days 6–7) followed by retraining (days 15–18 or 29–32). Platform location was tested (on days 19 or 33) then post-mortem brain tissue sampling (on days 20 or 34). The expression of three genes known to regulate cell proliferation (S100a6), differentiation (Ascl1), and apoptosis (Casp-3) were concomitantly evaluated in the hippocampus, prefrontal cortex, and cerebellum in relation to the MWM performance protocol. Following initial training, Ro25-6981 enhanced visuospatial memory retrieval performance during further retraining (protocol days 29–32) but did not influence visuospatial reversal learning (day 33). Hippocampal Ascl1 and Casp-3 expressions were correspondingly increased and decreased while cerebellar S100a6 and Casp-3 activities were decreased and increased respectively 27 days after Ro25-6981 treatment. Chronological analysis indicated a possible involvement of new mature neurons in the reconfiguration of memory processes. This was attended by behavioral/gene correlations which revealed direct links between spatial memory retrieval enhancement and modified gene activity induced by NR2B/NMDA receptor blockade and upregulation.
format Online
Article
Text
id pubmed-6061165
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Springer US
record_format MEDLINE/PubMed
spelling pubmed-60611652018-08-09 The Neurogenesis Actuator and NR2B/NMDA Receptor Antagonist Ro25-6981 Consistently Improves Spatial Memory Retraining Via Brain Region-Specific Gene Expression Gruden, Marina A. Ratmirov, Alexander M. Storozheva, Zinaida I. Solovieva, Olga A. Sherstnev, Vladimir V. Sewell, Robert D. E. J Mol Neurosci Article NR2B-containing NMDA (NR2B/NMDA) receptors are important in controlling neurogenesis and are involved in generating spatial memory. Ro25-6981 is a selective antagonist at these receptors and actuates neurogenesis and spatial memory. Inter-structural neuroanatomical profiles of gene expression regulating adult neurogenesis and neuroapoptosis require examination in the context of memory retrieval and reversal learning. The aim was to investigate spatial memory retrieval and reversal learning in relation to gene expression-linked neurogenetic processes following blockade of NR2B/NMDA receptors by Ro25-6981. Rats were trained in Morris water maze (MWM) platform location for 5 days. Ro25-6981 was administered (protocol days 6–7) followed by retraining (days 15–18 or 29–32). Platform location was tested (on days 19 or 33) then post-mortem brain tissue sampling (on days 20 or 34). The expression of three genes known to regulate cell proliferation (S100a6), differentiation (Ascl1), and apoptosis (Casp-3) were concomitantly evaluated in the hippocampus, prefrontal cortex, and cerebellum in relation to the MWM performance protocol. Following initial training, Ro25-6981 enhanced visuospatial memory retrieval performance during further retraining (protocol days 29–32) but did not influence visuospatial reversal learning (day 33). Hippocampal Ascl1 and Casp-3 expressions were correspondingly increased and decreased while cerebellar S100a6 and Casp-3 activities were decreased and increased respectively 27 days after Ro25-6981 treatment. Chronological analysis indicated a possible involvement of new mature neurons in the reconfiguration of memory processes. This was attended by behavioral/gene correlations which revealed direct links between spatial memory retrieval enhancement and modified gene activity induced by NR2B/NMDA receptor blockade and upregulation. Springer US 2018-05-22 2018 /pmc/articles/PMC6061165/ /pubmed/29790100 http://dx.doi.org/10.1007/s12031-018-1083-5 Text en © The Author(s) 2018 Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Article
Gruden, Marina A.
Ratmirov, Alexander M.
Storozheva, Zinaida I.
Solovieva, Olga A.
Sherstnev, Vladimir V.
Sewell, Robert D. E.
The Neurogenesis Actuator and NR2B/NMDA Receptor Antagonist Ro25-6981 Consistently Improves Spatial Memory Retraining Via Brain Region-Specific Gene Expression
title The Neurogenesis Actuator and NR2B/NMDA Receptor Antagonist Ro25-6981 Consistently Improves Spatial Memory Retraining Via Brain Region-Specific Gene Expression
title_full The Neurogenesis Actuator and NR2B/NMDA Receptor Antagonist Ro25-6981 Consistently Improves Spatial Memory Retraining Via Brain Region-Specific Gene Expression
title_fullStr The Neurogenesis Actuator and NR2B/NMDA Receptor Antagonist Ro25-6981 Consistently Improves Spatial Memory Retraining Via Brain Region-Specific Gene Expression
title_full_unstemmed The Neurogenesis Actuator and NR2B/NMDA Receptor Antagonist Ro25-6981 Consistently Improves Spatial Memory Retraining Via Brain Region-Specific Gene Expression
title_short The Neurogenesis Actuator and NR2B/NMDA Receptor Antagonist Ro25-6981 Consistently Improves Spatial Memory Retraining Via Brain Region-Specific Gene Expression
title_sort neurogenesis actuator and nr2b/nmda receptor antagonist ro25-6981 consistently improves spatial memory retraining via brain region-specific gene expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6061165/
https://www.ncbi.nlm.nih.gov/pubmed/29790100
http://dx.doi.org/10.1007/s12031-018-1083-5
work_keys_str_mv AT grudenmarinaa theneurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT ratmirovalexanderm theneurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT storozhevazinaidai theneurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT solovievaolgaa theneurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT sherstnevvladimirv theneurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT sewellrobertde theneurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT grudenmarinaa neurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT ratmirovalexanderm neurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT storozhevazinaidai neurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT solovievaolgaa neurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT sherstnevvladimirv neurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression
AT sewellrobertde neurogenesisactuatorandnr2bnmdareceptorantagonistro256981consistentlyimprovesspatialmemoryretrainingviabrainregionspecificgeneexpression