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The Antipsychotic D2AAK1 as a Memory Enhancer for Treatment of Mental and Neurodegenerative Diseases

The treatment of memory impairments associated with the central nervous system diseases remains an unmet medical need with social and economic implications. Here we show, that a multi-target ligand of aminergic G protein-coupled receptors with antipsychotic activity in vivo (D2AAK1) stimulates neuro...

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Autores principales: Koszła, Oliwia, Sołek, Przemysław, Woźniak, Sylwia, Kędzierska, Ewa, Wróbel, Tomasz M., Kondej, Magda, Archała, Aneta, Stępnicki, Piotr, Biała, Grażyna, Matosiuk, Dariusz, Kaczor, Agnieszka A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7700684/
https://www.ncbi.nlm.nih.gov/pubmed/33238370
http://dx.doi.org/10.3390/ijms21228849
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author Koszła, Oliwia
Sołek, Przemysław
Woźniak, Sylwia
Kędzierska, Ewa
Wróbel, Tomasz M.
Kondej, Magda
Archała, Aneta
Stępnicki, Piotr
Biała, Grażyna
Matosiuk, Dariusz
Kaczor, Agnieszka A.
author_facet Koszła, Oliwia
Sołek, Przemysław
Woźniak, Sylwia
Kędzierska, Ewa
Wróbel, Tomasz M.
Kondej, Magda
Archała, Aneta
Stępnicki, Piotr
Biała, Grażyna
Matosiuk, Dariusz
Kaczor, Agnieszka A.
author_sort Koszła, Oliwia
collection PubMed
description The treatment of memory impairments associated with the central nervous system diseases remains an unmet medical need with social and economic implications. Here we show, that a multi-target ligand of aminergic G protein-coupled receptors with antipsychotic activity in vivo (D2AAK1) stimulates neuron growth and survival and promotes neuron integrity. We focused on the multilevel evaluation of the D2AAK1-related effects on neurons in terms of behavioral, cellular, molecular, and biochemical features in vivo and in vitro, such as memory-related responses, locomotor activity, tissue sections analysis, metabolic activity, proliferation level, neurons morphology, and proteins level involved in intracellular signaling pathways. In silico studies indicate that activation of calcium/calmodulin-dependent protein kinase I (CaMKI) may underline some of the observed activities of the compound. Furthermore, the compound increases hippocampal neuron proliferation via the activation of neurotrophic factors and cooperating signals responsible for cell growth and proliferation. D2AAK1 improves memory and learning processes in mice after both acute and chronic administration. D2AAK1 also causes an increase in the number of hippocampal pyramidal neurons after chronic administration. Because of its neuroprotective properties and pro-cognitive activity in behavioral studies D2AAK1 has the potential for the treatment of memory disturbances in neurodegenerative and mental diseases.
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spelling pubmed-77006842020-11-30 The Antipsychotic D2AAK1 as a Memory Enhancer for Treatment of Mental and Neurodegenerative Diseases Koszła, Oliwia Sołek, Przemysław Woźniak, Sylwia Kędzierska, Ewa Wróbel, Tomasz M. Kondej, Magda Archała, Aneta Stępnicki, Piotr Biała, Grażyna Matosiuk, Dariusz Kaczor, Agnieszka A. Int J Mol Sci Article The treatment of memory impairments associated with the central nervous system diseases remains an unmet medical need with social and economic implications. Here we show, that a multi-target ligand of aminergic G protein-coupled receptors with antipsychotic activity in vivo (D2AAK1) stimulates neuron growth and survival and promotes neuron integrity. We focused on the multilevel evaluation of the D2AAK1-related effects on neurons in terms of behavioral, cellular, molecular, and biochemical features in vivo and in vitro, such as memory-related responses, locomotor activity, tissue sections analysis, metabolic activity, proliferation level, neurons morphology, and proteins level involved in intracellular signaling pathways. In silico studies indicate that activation of calcium/calmodulin-dependent protein kinase I (CaMKI) may underline some of the observed activities of the compound. Furthermore, the compound increases hippocampal neuron proliferation via the activation of neurotrophic factors and cooperating signals responsible for cell growth and proliferation. D2AAK1 improves memory and learning processes in mice after both acute and chronic administration. D2AAK1 also causes an increase in the number of hippocampal pyramidal neurons after chronic administration. Because of its neuroprotective properties and pro-cognitive activity in behavioral studies D2AAK1 has the potential for the treatment of memory disturbances in neurodegenerative and mental diseases. MDPI 2020-11-23 /pmc/articles/PMC7700684/ /pubmed/33238370 http://dx.doi.org/10.3390/ijms21228849 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Koszła, Oliwia
Sołek, Przemysław
Woźniak, Sylwia
Kędzierska, Ewa
Wróbel, Tomasz M.
Kondej, Magda
Archała, Aneta
Stępnicki, Piotr
Biała, Grażyna
Matosiuk, Dariusz
Kaczor, Agnieszka A.
The Antipsychotic D2AAK1 as a Memory Enhancer for Treatment of Mental and Neurodegenerative Diseases
title The Antipsychotic D2AAK1 as a Memory Enhancer for Treatment of Mental and Neurodegenerative Diseases
title_full The Antipsychotic D2AAK1 as a Memory Enhancer for Treatment of Mental and Neurodegenerative Diseases
title_fullStr The Antipsychotic D2AAK1 as a Memory Enhancer for Treatment of Mental and Neurodegenerative Diseases
title_full_unstemmed The Antipsychotic D2AAK1 as a Memory Enhancer for Treatment of Mental and Neurodegenerative Diseases
title_short The Antipsychotic D2AAK1 as a Memory Enhancer for Treatment of Mental and Neurodegenerative Diseases
title_sort antipsychotic d2aak1 as a memory enhancer for treatment of mental and neurodegenerative diseases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7700684/
https://www.ncbi.nlm.nih.gov/pubmed/33238370
http://dx.doi.org/10.3390/ijms21228849
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