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Whole gene expression profile in blood reveals multiple pathways deregulation in R6/2 mouse model

BACKGROUND: Huntington Disease (HD) is a progressive neurological disorder, with pathological manifestations in brain areas and in periphery caused by the ubiquitous expression of mutant Huntingtin protein. Transcriptional dysregulation is considered a key molecular mechanism responsible of HD patho...

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Autores principales: Diamanti, Daniela, Mori, Elisa, Incarnato, Danny, Malusa, Federico, Fondelli, Costanza, Magnoni, Letizia, Pollio, Giuseppe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4177605/
https://www.ncbi.nlm.nih.gov/pubmed/24252798
http://dx.doi.org/10.1186/2050-7771-1-28
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author Diamanti, Daniela
Mori, Elisa
Incarnato, Danny
Malusa, Federico
Fondelli, Costanza
Magnoni, Letizia
Pollio, Giuseppe
author_facet Diamanti, Daniela
Mori, Elisa
Incarnato, Danny
Malusa, Federico
Fondelli, Costanza
Magnoni, Letizia
Pollio, Giuseppe
author_sort Diamanti, Daniela
collection PubMed
description BACKGROUND: Huntington Disease (HD) is a progressive neurological disorder, with pathological manifestations in brain areas and in periphery caused by the ubiquitous expression of mutant Huntingtin protein. Transcriptional dysregulation is considered a key molecular mechanism responsible of HD pathogenesis but, although numerous studies investigated mRNA alterations in HD, so far none evaluated a whole gene expression profile in blood of R6/2 mouse model. FINDINGS: To discover novel pathogenic mechanisms and potential peripheral biomarkers useful to monitor disease progression or drug efficacy, a microarray study was performed in blood of R6/2 at manifest stage and wild type littermate mice. This approach allowed to propose new peripheral molecular processes involved in HD and to suggest different panels of candidate biomarkers. Among the discovered deregulated processes, we focused on specific ones: complement and coagulation cascades, PPAR signaling, cardiac muscle contraction, and dilated cardiomyopathy pathways. Selected genes derived from these pathways were additionally investigated in other accessible tissues to validate these matrices as source of biomarkers, and in brain, to link central and peripheral disease manifestations. CONCLUSIONS: Our findings validated the skeletal muscle as suitable source to investigate peripheral transcriptional alterations in HD and supported the hypothesis that immunological alteration may contribute to neurological degeneration. Moreover, the identification of altered signaling in mouse blood enforce R6/2 transgenic mouse as a powerful HD model while suggesting novel disease biomarkers for pre-clinical investigation.
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spelling pubmed-41776052014-09-29 Whole gene expression profile in blood reveals multiple pathways deregulation in R6/2 mouse model Diamanti, Daniela Mori, Elisa Incarnato, Danny Malusa, Federico Fondelli, Costanza Magnoni, Letizia Pollio, Giuseppe Biomark Res Short Report BACKGROUND: Huntington Disease (HD) is a progressive neurological disorder, with pathological manifestations in brain areas and in periphery caused by the ubiquitous expression of mutant Huntingtin protein. Transcriptional dysregulation is considered a key molecular mechanism responsible of HD pathogenesis but, although numerous studies investigated mRNA alterations in HD, so far none evaluated a whole gene expression profile in blood of R6/2 mouse model. FINDINGS: To discover novel pathogenic mechanisms and potential peripheral biomarkers useful to monitor disease progression or drug efficacy, a microarray study was performed in blood of R6/2 at manifest stage and wild type littermate mice. This approach allowed to propose new peripheral molecular processes involved in HD and to suggest different panels of candidate biomarkers. Among the discovered deregulated processes, we focused on specific ones: complement and coagulation cascades, PPAR signaling, cardiac muscle contraction, and dilated cardiomyopathy pathways. Selected genes derived from these pathways were additionally investigated in other accessible tissues to validate these matrices as source of biomarkers, and in brain, to link central and peripheral disease manifestations. CONCLUSIONS: Our findings validated the skeletal muscle as suitable source to investigate peripheral transcriptional alterations in HD and supported the hypothesis that immunological alteration may contribute to neurological degeneration. Moreover, the identification of altered signaling in mouse blood enforce R6/2 transgenic mouse as a powerful HD model while suggesting novel disease biomarkers for pre-clinical investigation. BioMed Central 2013-10-23 /pmc/articles/PMC4177605/ /pubmed/24252798 http://dx.doi.org/10.1186/2050-7771-1-28 Text en Copyright © 2013 Diamanti et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Report
Diamanti, Daniela
Mori, Elisa
Incarnato, Danny
Malusa, Federico
Fondelli, Costanza
Magnoni, Letizia
Pollio, Giuseppe
Whole gene expression profile in blood reveals multiple pathways deregulation in R6/2 mouse model
title Whole gene expression profile in blood reveals multiple pathways deregulation in R6/2 mouse model
title_full Whole gene expression profile in blood reveals multiple pathways deregulation in R6/2 mouse model
title_fullStr Whole gene expression profile in blood reveals multiple pathways deregulation in R6/2 mouse model
title_full_unstemmed Whole gene expression profile in blood reveals multiple pathways deregulation in R6/2 mouse model
title_short Whole gene expression profile in blood reveals multiple pathways deregulation in R6/2 mouse model
title_sort whole gene expression profile in blood reveals multiple pathways deregulation in r6/2 mouse model
topic Short Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4177605/
https://www.ncbi.nlm.nih.gov/pubmed/24252798
http://dx.doi.org/10.1186/2050-7771-1-28
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