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Virtual Screening-Accelerated Discovery of a Phosphodiesterase 9 Inhibitor with Neuroprotective Effects in the Kainate Toxicity In Vitro Model

[Image: see text] In the central nervous system, some specific phosphodiesterase (PDE) isoforms modulate pathways involved in neuronal plasticity. Accumulating evidence suggests that PDE9 may be a promising therapeutic target for neurodegenerative diseases. In the current study, computational techni...

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Autores principales: Landucci, Elisa, Ribaudo, Giovanni, Anyanwu, Margrate, Oselladore, Erika, Giannangeli, Matteo, Mazzantini, Costanza, Lana, Daniele, Giovannini, Maria Grazia, Memo, Maurizio, Pellegrini-Giampietro, Domenico E., Gianoncelli, Alessandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10587872/
https://www.ncbi.nlm.nih.gov/pubmed/37726213
http://dx.doi.org/10.1021/acschemneuro.3c00431
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author Landucci, Elisa
Ribaudo, Giovanni
Anyanwu, Margrate
Oselladore, Erika
Giannangeli, Matteo
Mazzantini, Costanza
Lana, Daniele
Giovannini, Maria Grazia
Memo, Maurizio
Pellegrini-Giampietro, Domenico E.
Gianoncelli, Alessandra
author_facet Landucci, Elisa
Ribaudo, Giovanni
Anyanwu, Margrate
Oselladore, Erika
Giannangeli, Matteo
Mazzantini, Costanza
Lana, Daniele
Giovannini, Maria Grazia
Memo, Maurizio
Pellegrini-Giampietro, Domenico E.
Gianoncelli, Alessandra
author_sort Landucci, Elisa
collection PubMed
description [Image: see text] In the central nervous system, some specific phosphodiesterase (PDE) isoforms modulate pathways involved in neuronal plasticity. Accumulating evidence suggests that PDE9 may be a promising therapeutic target for neurodegenerative diseases. In the current study, computational techniques were used to identify a nature-inspired PDE9 inhibitor bearing the scaffold of an isoflavone, starting from a database of synthetic small molecules using a ligand-based approach. Furthermore, docking studies supported by molecular dynamics investigations allowed us to evaluate the features of the ligand–target complex. In vitro assays confirmed the computational results, showing that the selected compound inhibits the enzyme in the nanomolar range. Additionally, we evaluated the expression of gene and protein levels of PDE9 in organotypic hippocampal slices, observing an increase following exposure to kainate (KA). Importantly, the PDE9 inhibitor reduced CA3 damage induced by KA in a dose-dependent manner in organotypic hippocampal slices. Taken together, these observations strongly support the potential of the identified nature-inspired PDE9 inhibitor and suggest that such a molecule could represent a promising lead compound to develop novel therapeutic tools against neurological diseases..
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spelling pubmed-105878722023-10-21 Virtual Screening-Accelerated Discovery of a Phosphodiesterase 9 Inhibitor with Neuroprotective Effects in the Kainate Toxicity In Vitro Model Landucci, Elisa Ribaudo, Giovanni Anyanwu, Margrate Oselladore, Erika Giannangeli, Matteo Mazzantini, Costanza Lana, Daniele Giovannini, Maria Grazia Memo, Maurizio Pellegrini-Giampietro, Domenico E. Gianoncelli, Alessandra ACS Chem Neurosci [Image: see text] In the central nervous system, some specific phosphodiesterase (PDE) isoforms modulate pathways involved in neuronal plasticity. Accumulating evidence suggests that PDE9 may be a promising therapeutic target for neurodegenerative diseases. In the current study, computational techniques were used to identify a nature-inspired PDE9 inhibitor bearing the scaffold of an isoflavone, starting from a database of synthetic small molecules using a ligand-based approach. Furthermore, docking studies supported by molecular dynamics investigations allowed us to evaluate the features of the ligand–target complex. In vitro assays confirmed the computational results, showing that the selected compound inhibits the enzyme in the nanomolar range. Additionally, we evaluated the expression of gene and protein levels of PDE9 in organotypic hippocampal slices, observing an increase following exposure to kainate (KA). Importantly, the PDE9 inhibitor reduced CA3 damage induced by KA in a dose-dependent manner in organotypic hippocampal slices. Taken together, these observations strongly support the potential of the identified nature-inspired PDE9 inhibitor and suggest that such a molecule could represent a promising lead compound to develop novel therapeutic tools against neurological diseases.. American Chemical Society 2023-09-19 /pmc/articles/PMC10587872/ /pubmed/37726213 http://dx.doi.org/10.1021/acschemneuro.3c00431 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Landucci, Elisa
Ribaudo, Giovanni
Anyanwu, Margrate
Oselladore, Erika
Giannangeli, Matteo
Mazzantini, Costanza
Lana, Daniele
Giovannini, Maria Grazia
Memo, Maurizio
Pellegrini-Giampietro, Domenico E.
Gianoncelli, Alessandra
Virtual Screening-Accelerated Discovery of a Phosphodiesterase 9 Inhibitor with Neuroprotective Effects in the Kainate Toxicity In Vitro Model
title Virtual Screening-Accelerated Discovery of a Phosphodiesterase 9 Inhibitor with Neuroprotective Effects in the Kainate Toxicity In Vitro Model
title_full Virtual Screening-Accelerated Discovery of a Phosphodiesterase 9 Inhibitor with Neuroprotective Effects in the Kainate Toxicity In Vitro Model
title_fullStr Virtual Screening-Accelerated Discovery of a Phosphodiesterase 9 Inhibitor with Neuroprotective Effects in the Kainate Toxicity In Vitro Model
title_full_unstemmed Virtual Screening-Accelerated Discovery of a Phosphodiesterase 9 Inhibitor with Neuroprotective Effects in the Kainate Toxicity In Vitro Model
title_short Virtual Screening-Accelerated Discovery of a Phosphodiesterase 9 Inhibitor with Neuroprotective Effects in the Kainate Toxicity In Vitro Model
title_sort virtual screening-accelerated discovery of a phosphodiesterase 9 inhibitor with neuroprotective effects in the kainate toxicity in vitro model
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10587872/
https://www.ncbi.nlm.nih.gov/pubmed/37726213
http://dx.doi.org/10.1021/acschemneuro.3c00431
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