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Intranasal Administration of KYCCSRK Peptide Rescues Brain Insulin Signaling Activation and Reduces Alzheimer’s Disease-like Neuropathology in a Mouse Model for Down Syndrome

Down syndrome (DS) is the most frequent genetic cause of intellectual disability and is strongly associated with Alzheimer’s disease (AD). Brain insulin resistance greatly contributes to AD development in the general population and previous studies from our group showed an early accumulation of insu...

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Autores principales: Tramutola, Antonella, Lanzillotta, Simona, Aceto, Giuseppe, Pagnotta, Sara, Ruffolo, Gabriele, Cifelli, Pierangelo, Marini, Federico, Ripoli, Cristian, Palma, Eleonora, Grassi, Claudio, Di Domenico, Fabio, Perluigi, Marzia, Barone, Eugenio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9854894/
https://www.ncbi.nlm.nih.gov/pubmed/36670973
http://dx.doi.org/10.3390/antiox12010111
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author Tramutola, Antonella
Lanzillotta, Simona
Aceto, Giuseppe
Pagnotta, Sara
Ruffolo, Gabriele
Cifelli, Pierangelo
Marini, Federico
Ripoli, Cristian
Palma, Eleonora
Grassi, Claudio
Di Domenico, Fabio
Perluigi, Marzia
Barone, Eugenio
author_facet Tramutola, Antonella
Lanzillotta, Simona
Aceto, Giuseppe
Pagnotta, Sara
Ruffolo, Gabriele
Cifelli, Pierangelo
Marini, Federico
Ripoli, Cristian
Palma, Eleonora
Grassi, Claudio
Di Domenico, Fabio
Perluigi, Marzia
Barone, Eugenio
author_sort Tramutola, Antonella
collection PubMed
description Down syndrome (DS) is the most frequent genetic cause of intellectual disability and is strongly associated with Alzheimer’s disease (AD). Brain insulin resistance greatly contributes to AD development in the general population and previous studies from our group showed an early accumulation of insulin resistance markers in DS brain, already in childhood, and even before AD onset. Here we tested the effects promoted in Ts2Cje mice by the intranasal administration of the KYCCSRK peptide known to foster insulin signaling activation by directly interacting and activating the insulin receptor (IR) and the AKT protein. Therefore, the KYCCSRK peptide might represent a promising molecule to overcome insulin resistance. Our results show that KYCCSRK rescued insulin signaling activation, increased mitochondrial complexes levels (OXPHOS) and reduced oxidative stress levels in the brain of Ts2Cje mice. Moreover, we uncovered novel characteristics of the KYCCSRK peptide, including its efficacy in reducing DYRK1A (triplicated in DS) and BACE1 protein levels, which resulted in reduced AD-like neuropathology in Ts2Cje mice. Finally, the peptide elicited neuroprotective effects by ameliorating synaptic plasticity mechanisms that are altered in DS due to the imbalance between inhibitory vs. excitatory currents. Overall, our results represent a step forward in searching for new molecules useful to reduce intellectual disability and counteract AD development in DS.
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spelling pubmed-98548942023-01-21 Intranasal Administration of KYCCSRK Peptide Rescues Brain Insulin Signaling Activation and Reduces Alzheimer’s Disease-like Neuropathology in a Mouse Model for Down Syndrome Tramutola, Antonella Lanzillotta, Simona Aceto, Giuseppe Pagnotta, Sara Ruffolo, Gabriele Cifelli, Pierangelo Marini, Federico Ripoli, Cristian Palma, Eleonora Grassi, Claudio Di Domenico, Fabio Perluigi, Marzia Barone, Eugenio Antioxidants (Basel) Article Down syndrome (DS) is the most frequent genetic cause of intellectual disability and is strongly associated with Alzheimer’s disease (AD). Brain insulin resistance greatly contributes to AD development in the general population and previous studies from our group showed an early accumulation of insulin resistance markers in DS brain, already in childhood, and even before AD onset. Here we tested the effects promoted in Ts2Cje mice by the intranasal administration of the KYCCSRK peptide known to foster insulin signaling activation by directly interacting and activating the insulin receptor (IR) and the AKT protein. Therefore, the KYCCSRK peptide might represent a promising molecule to overcome insulin resistance. Our results show that KYCCSRK rescued insulin signaling activation, increased mitochondrial complexes levels (OXPHOS) and reduced oxidative stress levels in the brain of Ts2Cje mice. Moreover, we uncovered novel characteristics of the KYCCSRK peptide, including its efficacy in reducing DYRK1A (triplicated in DS) and BACE1 protein levels, which resulted in reduced AD-like neuropathology in Ts2Cje mice. Finally, the peptide elicited neuroprotective effects by ameliorating synaptic plasticity mechanisms that are altered in DS due to the imbalance between inhibitory vs. excitatory currents. Overall, our results represent a step forward in searching for new molecules useful to reduce intellectual disability and counteract AD development in DS. MDPI 2023-01-02 /pmc/articles/PMC9854894/ /pubmed/36670973 http://dx.doi.org/10.3390/antiox12010111 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tramutola, Antonella
Lanzillotta, Simona
Aceto, Giuseppe
Pagnotta, Sara
Ruffolo, Gabriele
Cifelli, Pierangelo
Marini, Federico
Ripoli, Cristian
Palma, Eleonora
Grassi, Claudio
Di Domenico, Fabio
Perluigi, Marzia
Barone, Eugenio
Intranasal Administration of KYCCSRK Peptide Rescues Brain Insulin Signaling Activation and Reduces Alzheimer’s Disease-like Neuropathology in a Mouse Model for Down Syndrome
title Intranasal Administration of KYCCSRK Peptide Rescues Brain Insulin Signaling Activation and Reduces Alzheimer’s Disease-like Neuropathology in a Mouse Model for Down Syndrome
title_full Intranasal Administration of KYCCSRK Peptide Rescues Brain Insulin Signaling Activation and Reduces Alzheimer’s Disease-like Neuropathology in a Mouse Model for Down Syndrome
title_fullStr Intranasal Administration of KYCCSRK Peptide Rescues Brain Insulin Signaling Activation and Reduces Alzheimer’s Disease-like Neuropathology in a Mouse Model for Down Syndrome
title_full_unstemmed Intranasal Administration of KYCCSRK Peptide Rescues Brain Insulin Signaling Activation and Reduces Alzheimer’s Disease-like Neuropathology in a Mouse Model for Down Syndrome
title_short Intranasal Administration of KYCCSRK Peptide Rescues Brain Insulin Signaling Activation and Reduces Alzheimer’s Disease-like Neuropathology in a Mouse Model for Down Syndrome
title_sort intranasal administration of kyccsrk peptide rescues brain insulin signaling activation and reduces alzheimer’s disease-like neuropathology in a mouse model for down syndrome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9854894/
https://www.ncbi.nlm.nih.gov/pubmed/36670973
http://dx.doi.org/10.3390/antiox12010111
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