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Altered iron and myelin in premanifest Huntington's Disease more than 20 years before clinical onset: Evidence from the cross-sectional HD Young Adult Study

BACKGROUND: Pathological processes in Huntington's disease (HD) begin many years prior to symptom onset. Recently we demonstrated that in a premanifest cohort approximately 24 years from predicted disease onset, despite intact function, there was evidence of subtle neurodegeneration. Here, we u...

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Autores principales: Johnson, Eileanoir B., Parker, Christopher S., Scahill, Rachael I., Gregory, Sarah, Papoutsi, Marina, Zeun, Paul, Osborne-Crowley, Katherine, Lowe, Jessica, Nair, Akshay, Estevez-Fraga, Carlos, Fayer, Kate, Rees, Geraint, Zhang, Hui, Tabrizi, Sarah J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7960938/
https://www.ncbi.nlm.nih.gov/pubmed/33706250
http://dx.doi.org/10.1016/j.ebiom.2021.103266
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author Johnson, Eileanoir B.
Parker, Christopher S.
Scahill, Rachael I.
Gregory, Sarah
Papoutsi, Marina
Zeun, Paul
Osborne-Crowley, Katherine
Lowe, Jessica
Nair, Akshay
Estevez-Fraga, Carlos
Fayer, Kate
Rees, Geraint
Zhang, Hui
Tabrizi, Sarah J.
author_facet Johnson, Eileanoir B.
Parker, Christopher S.
Scahill, Rachael I.
Gregory, Sarah
Papoutsi, Marina
Zeun, Paul
Osborne-Crowley, Katherine
Lowe, Jessica
Nair, Akshay
Estevez-Fraga, Carlos
Fayer, Kate
Rees, Geraint
Zhang, Hui
Tabrizi, Sarah J.
author_sort Johnson, Eileanoir B.
collection PubMed
description BACKGROUND: Pathological processes in Huntington's disease (HD) begin many years prior to symptom onset. Recently we demonstrated that in a premanifest cohort approximately 24 years from predicted disease onset, despite intact function, there was evidence of subtle neurodegeneration. Here, we use novel imaging techniques to determine whether macro- and micro-structural changes can be detected across the whole-brain in the same cohort. METHODS: 62 premanifest HD (PreHD) and 61 controls from the HD Young Adult Study (HD-YAS) were included. Grey and white matter volume, diffusion weighted imaging (DWI) measures of white matter microstructure, multiparametric maps (MPM) estimating myelin and iron content from magnetization transfer (MT), proton density (PD), longitudinal relaxation (R1) and effective transverse relaxation (R2*), and myelin g-ratio were examined. Group differences between PreHD and controls were assessed; associations between all imaging metrics and disease burden and CSF neurofilament light (NfL) were also performed. Volumetric and MPM results were corrected at a cluster-wise value of familywise error (FWE) 0.05. Diffusion and g-ratio results were corrected via threshold-free cluster enhancement at FWE 0.05. FINDINGS: We showed significantly increased R1 and R2*, suggestive of increased iron, in the putamen, globus pallidum and external capsule of PreHD participants. There was also a significant association between lower cortical R2*, suggestive of reduced myelin or iron, and higher CSF NfL in the frontal lobe and the parieto-occipital cortices. No other results were significant at corrected levels. INTERPRETATION: Increased iron in subcortical structures and the surrounding white matter is a feature of very early PreHD. Furthermore, increases in CSF NfL were linked to microstructural changes in the posterior parietal-occipital cortex, a region previously shown to undergo some of the earliest cortical changes in HD. These findings suggest that disease related process are occurring in both subcortical and cortical regions more than 20 years from predicted disease onset.
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spelling pubmed-79609382021-03-19 Altered iron and myelin in premanifest Huntington's Disease more than 20 years before clinical onset: Evidence from the cross-sectional HD Young Adult Study Johnson, Eileanoir B. Parker, Christopher S. Scahill, Rachael I. Gregory, Sarah Papoutsi, Marina Zeun, Paul Osborne-Crowley, Katherine Lowe, Jessica Nair, Akshay Estevez-Fraga, Carlos Fayer, Kate Rees, Geraint Zhang, Hui Tabrizi, Sarah J. EBioMedicine Research Paper BACKGROUND: Pathological processes in Huntington's disease (HD) begin many years prior to symptom onset. Recently we demonstrated that in a premanifest cohort approximately 24 years from predicted disease onset, despite intact function, there was evidence of subtle neurodegeneration. Here, we use novel imaging techniques to determine whether macro- and micro-structural changes can be detected across the whole-brain in the same cohort. METHODS: 62 premanifest HD (PreHD) and 61 controls from the HD Young Adult Study (HD-YAS) were included. Grey and white matter volume, diffusion weighted imaging (DWI) measures of white matter microstructure, multiparametric maps (MPM) estimating myelin and iron content from magnetization transfer (MT), proton density (PD), longitudinal relaxation (R1) and effective transverse relaxation (R2*), and myelin g-ratio were examined. Group differences between PreHD and controls were assessed; associations between all imaging metrics and disease burden and CSF neurofilament light (NfL) were also performed. Volumetric and MPM results were corrected at a cluster-wise value of familywise error (FWE) 0.05. Diffusion and g-ratio results were corrected via threshold-free cluster enhancement at FWE 0.05. FINDINGS: We showed significantly increased R1 and R2*, suggestive of increased iron, in the putamen, globus pallidum and external capsule of PreHD participants. There was also a significant association between lower cortical R2*, suggestive of reduced myelin or iron, and higher CSF NfL in the frontal lobe and the parieto-occipital cortices. No other results were significant at corrected levels. INTERPRETATION: Increased iron in subcortical structures and the surrounding white matter is a feature of very early PreHD. Furthermore, increases in CSF NfL were linked to microstructural changes in the posterior parietal-occipital cortex, a region previously shown to undergo some of the earliest cortical changes in HD. These findings suggest that disease related process are occurring in both subcortical and cortical regions more than 20 years from predicted disease onset. Elsevier 2021-03-09 /pmc/articles/PMC7960938/ /pubmed/33706250 http://dx.doi.org/10.1016/j.ebiom.2021.103266 Text en © 2021 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Johnson, Eileanoir B.
Parker, Christopher S.
Scahill, Rachael I.
Gregory, Sarah
Papoutsi, Marina
Zeun, Paul
Osborne-Crowley, Katherine
Lowe, Jessica
Nair, Akshay
Estevez-Fraga, Carlos
Fayer, Kate
Rees, Geraint
Zhang, Hui
Tabrizi, Sarah J.
Altered iron and myelin in premanifest Huntington's Disease more than 20 years before clinical onset: Evidence from the cross-sectional HD Young Adult Study
title Altered iron and myelin in premanifest Huntington's Disease more than 20 years before clinical onset: Evidence from the cross-sectional HD Young Adult Study
title_full Altered iron and myelin in premanifest Huntington's Disease more than 20 years before clinical onset: Evidence from the cross-sectional HD Young Adult Study
title_fullStr Altered iron and myelin in premanifest Huntington's Disease more than 20 years before clinical onset: Evidence from the cross-sectional HD Young Adult Study
title_full_unstemmed Altered iron and myelin in premanifest Huntington's Disease more than 20 years before clinical onset: Evidence from the cross-sectional HD Young Adult Study
title_short Altered iron and myelin in premanifest Huntington's Disease more than 20 years before clinical onset: Evidence from the cross-sectional HD Young Adult Study
title_sort altered iron and myelin in premanifest huntington's disease more than 20 years before clinical onset: evidence from the cross-sectional hd young adult study
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7960938/
https://www.ncbi.nlm.nih.gov/pubmed/33706250
http://dx.doi.org/10.1016/j.ebiom.2021.103266
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