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C9orf72 ALS mutation carriers show extensive cortical and subcortical damage compared to matched wild-type ALS patients

OBJECTIVE: C9orf72 mutation carriers with different neurological phenotypes show cortical and subcortical atrophy in multiple different brain regions, even in pre-symptomatic phases. Despite there is a substantial amount of knowledge, small sample sizes, clinical heterogeneity, as well as different...

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Autores principales: Nigri, Anna, Umberto, Manera, Stanziano, Mario, Ferraro, Stefania, Fedeli, Davide, Medina Carrion, Jean Paul, Palermo, Sara, Lequio, Laura, Denegri, Federica, Agosta, Federica, Filippi, Massimo, Valentini, Maria Consuelo, Canosa, Antonio, Calvo, Andrea, Chiò, Adriano, Bruzzone, Maria Grazia, Moglia, Cristina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10130353/
https://www.ncbi.nlm.nih.gov/pubmed/37068310
http://dx.doi.org/10.1016/j.nicl.2023.103400
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author Nigri, Anna
Umberto, Manera
Stanziano, Mario
Ferraro, Stefania
Fedeli, Davide
Medina Carrion, Jean Paul
Palermo, Sara
Lequio, Laura
Denegri, Federica
Agosta, Federica
Filippi, Massimo
Valentini, Maria Consuelo
Canosa, Antonio
Calvo, Andrea
Chiò, Adriano
Bruzzone, Maria Grazia
Moglia, Cristina
author_facet Nigri, Anna
Umberto, Manera
Stanziano, Mario
Ferraro, Stefania
Fedeli, Davide
Medina Carrion, Jean Paul
Palermo, Sara
Lequio, Laura
Denegri, Federica
Agosta, Federica
Filippi, Massimo
Valentini, Maria Consuelo
Canosa, Antonio
Calvo, Andrea
Chiò, Adriano
Bruzzone, Maria Grazia
Moglia, Cristina
author_sort Nigri, Anna
collection PubMed
description OBJECTIVE: C9orf72 mutation carriers with different neurological phenotypes show cortical and subcortical atrophy in multiple different brain regions, even in pre-symptomatic phases. Despite there is a substantial amount of knowledge, small sample sizes, clinical heterogeneity, as well as different choices of image analysis may hide anatomical abnormalities that are unique to amyotrophic lateral sclerosis (ALS) patients with this genotype or that are indicative of the C9orf72-specific trait overlain in fronto-temporal dementia patients. METHODS: Brain structural and resting state functional magnetic imaging was obtained in 24 C9orf72 positive (ALSC9+) ALS patients paired for burden disease with 24 C9orf72 negative (ALSC9-) ALS patients. A comprehensive structural evaluation of cortical thickness and subcortical volumes between ALSC9+ and ALSC9- patients was performed while a region of interest (ROI)-ROI analysis of functional connectivity was implemented to assess functional alterations among abnormal cortical and subcortical regions. Results were corrected for multiple comparisons. RESULTS: Compared to ALSC9- patients, ALSC9+ patients exhibited extensive disease-specific patterns of thalamo-cortico-striatal atrophy, supported by functional alterations of the identified abnormal regions. Cortical thinning was most pronounced in posterior areas and extended to frontal regions. Bilateral atrophy of the mediodorsal and pulvinar nuclei was observed, emphasizing a focal rather than global thalamus atrophy. Volume loss in a large portion of bilateral caudate and left putamen was reported. The marked reduction of functional connectivity observed between the left posterior thalamus and almost all the atrophic cortical regions support the central role of the thalamus in the pathogenic mechanism of C9orf72-mediated disease. CONCLUSIONS: These findings constitute a coherent and robust picture of ALS patients with C9orf72-mediated disease, unveiling a specific structural and functional characterization of thalamo-cortico-striatal circuit alteration. Our study introduces new evidence in the characterization of the pathogenic mechanisms of C9orf72 mutation.
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spelling pubmed-101303532023-04-27 C9orf72 ALS mutation carriers show extensive cortical and subcortical damage compared to matched wild-type ALS patients Nigri, Anna Umberto, Manera Stanziano, Mario Ferraro, Stefania Fedeli, Davide Medina Carrion, Jean Paul Palermo, Sara Lequio, Laura Denegri, Federica Agosta, Federica Filippi, Massimo Valentini, Maria Consuelo Canosa, Antonio Calvo, Andrea Chiò, Adriano Bruzzone, Maria Grazia Moglia, Cristina Neuroimage Clin Regular Article OBJECTIVE: C9orf72 mutation carriers with different neurological phenotypes show cortical and subcortical atrophy in multiple different brain regions, even in pre-symptomatic phases. Despite there is a substantial amount of knowledge, small sample sizes, clinical heterogeneity, as well as different choices of image analysis may hide anatomical abnormalities that are unique to amyotrophic lateral sclerosis (ALS) patients with this genotype or that are indicative of the C9orf72-specific trait overlain in fronto-temporal dementia patients. METHODS: Brain structural and resting state functional magnetic imaging was obtained in 24 C9orf72 positive (ALSC9+) ALS patients paired for burden disease with 24 C9orf72 negative (ALSC9-) ALS patients. A comprehensive structural evaluation of cortical thickness and subcortical volumes between ALSC9+ and ALSC9- patients was performed while a region of interest (ROI)-ROI analysis of functional connectivity was implemented to assess functional alterations among abnormal cortical and subcortical regions. Results were corrected for multiple comparisons. RESULTS: Compared to ALSC9- patients, ALSC9+ patients exhibited extensive disease-specific patterns of thalamo-cortico-striatal atrophy, supported by functional alterations of the identified abnormal regions. Cortical thinning was most pronounced in posterior areas and extended to frontal regions. Bilateral atrophy of the mediodorsal and pulvinar nuclei was observed, emphasizing a focal rather than global thalamus atrophy. Volume loss in a large portion of bilateral caudate and left putamen was reported. The marked reduction of functional connectivity observed between the left posterior thalamus and almost all the atrophic cortical regions support the central role of the thalamus in the pathogenic mechanism of C9orf72-mediated disease. CONCLUSIONS: These findings constitute a coherent and robust picture of ALS patients with C9orf72-mediated disease, unveiling a specific structural and functional characterization of thalamo-cortico-striatal circuit alteration. Our study introduces new evidence in the characterization of the pathogenic mechanisms of C9orf72 mutation. Elsevier 2023-04-11 /pmc/articles/PMC10130353/ /pubmed/37068310 http://dx.doi.org/10.1016/j.nicl.2023.103400 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Regular Article
Nigri, Anna
Umberto, Manera
Stanziano, Mario
Ferraro, Stefania
Fedeli, Davide
Medina Carrion, Jean Paul
Palermo, Sara
Lequio, Laura
Denegri, Federica
Agosta, Federica
Filippi, Massimo
Valentini, Maria Consuelo
Canosa, Antonio
Calvo, Andrea
Chiò, Adriano
Bruzzone, Maria Grazia
Moglia, Cristina
C9orf72 ALS mutation carriers show extensive cortical and subcortical damage compared to matched wild-type ALS patients
title C9orf72 ALS mutation carriers show extensive cortical and subcortical damage compared to matched wild-type ALS patients
title_full C9orf72 ALS mutation carriers show extensive cortical and subcortical damage compared to matched wild-type ALS patients
title_fullStr C9orf72 ALS mutation carriers show extensive cortical and subcortical damage compared to matched wild-type ALS patients
title_full_unstemmed C9orf72 ALS mutation carriers show extensive cortical and subcortical damage compared to matched wild-type ALS patients
title_short C9orf72 ALS mutation carriers show extensive cortical and subcortical damage compared to matched wild-type ALS patients
title_sort c9orf72 als mutation carriers show extensive cortical and subcortical damage compared to matched wild-type als patients
topic Regular Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10130353/
https://www.ncbi.nlm.nih.gov/pubmed/37068310
http://dx.doi.org/10.1016/j.nicl.2023.103400
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