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Promise and challenges of dystonia brain banking: establishing a human tissue repository for studies of X-Linked Dystonia-Parkinsonism

X-Linked Dystonia-Parkinsonism (XDP) is a neurodegenerative disease affecting individuals with ancestry to the island of Panay in the Philippines. In recent years there has been considerable progress at elucidating the genetic basis of XDP and candidate disease mechanisms in patient-derived cellular...

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Autores principales: Fernandez-Cerado, Cara, Legarda, G. Paul, Velasco-Andrada, M. Salvie, Aguil, Abegail, Ganza-Bautista, Niecy G., Lagarde, J. Benedict B., Soria, Jasmin, Jamora, Roland Dominic G., Acuña, Patrick J., Vanderburg, Charles, Sapp, Ellen, DiFiglia, Marian, Murcar, Micaela G., Campion, Lindsey, Ozelius, Laurie J., Alessi, Amy K., Singh-Bains, Malvindar K., Waldvogel, Henry J., Faull, Richard L. M., Macalintal-Canlas, Regina, Muñoz, Edwin L., Penney, Ellen B., Ang, Mark A., Diesta, Cid Czarina E., Bragg, D. Cristopher, Acuña-Sunshine, Geraldine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Vienna 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8099813/
https://www.ncbi.nlm.nih.gov/pubmed/33439365
http://dx.doi.org/10.1007/s00702-020-02286-9
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author Fernandez-Cerado, Cara
Legarda, G. Paul
Velasco-Andrada, M. Salvie
Aguil, Abegail
Ganza-Bautista, Niecy G.
Lagarde, J. Benedict B.
Soria, Jasmin
Jamora, Roland Dominic G.
Acuña, Patrick J.
Vanderburg, Charles
Sapp, Ellen
DiFiglia, Marian
Murcar, Micaela G.
Campion, Lindsey
Ozelius, Laurie J.
Alessi, Amy K.
Singh-Bains, Malvindar K.
Waldvogel, Henry J.
Faull, Richard L. M.
Macalintal-Canlas, Regina
Muñoz, Edwin L.
Penney, Ellen B.
Ang, Mark A.
Diesta, Cid Czarina E.
Bragg, D. Cristopher
Acuña-Sunshine, Geraldine
author_facet Fernandez-Cerado, Cara
Legarda, G. Paul
Velasco-Andrada, M. Salvie
Aguil, Abegail
Ganza-Bautista, Niecy G.
Lagarde, J. Benedict B.
Soria, Jasmin
Jamora, Roland Dominic G.
Acuña, Patrick J.
Vanderburg, Charles
Sapp, Ellen
DiFiglia, Marian
Murcar, Micaela G.
Campion, Lindsey
Ozelius, Laurie J.
Alessi, Amy K.
Singh-Bains, Malvindar K.
Waldvogel, Henry J.
Faull, Richard L. M.
Macalintal-Canlas, Regina
Muñoz, Edwin L.
Penney, Ellen B.
Ang, Mark A.
Diesta, Cid Czarina E.
Bragg, D. Cristopher
Acuña-Sunshine, Geraldine
author_sort Fernandez-Cerado, Cara
collection PubMed
description X-Linked Dystonia-Parkinsonism (XDP) is a neurodegenerative disease affecting individuals with ancestry to the island of Panay in the Philippines. In recent years there has been considerable progress at elucidating the genetic basis of XDP and candidate disease mechanisms in patient-derived cellular models, but the neural substrates that give rise to XDP in vivo are still poorly understood. Previous studies of limited XDP postmortem brain samples have reported a selective dropout of medium spiny neurons within the striatum, although neuroimaging of XDP patients has detected additional abnormalities in multiple brain regions beyond the basal ganglia. Given the need to fully define the CNS structures that are affected in this disease, we created a brain bank in Panay to serve as a tissue resource for detailed studies of XDP-related neuropathology. Here we describe this platform, from donor recruitment and consent to tissue collection, processing, and storage, that was assembled within a predominantly rural region of the Philippines with limited access to medical and laboratory facilities. Thirty-six brains from XDP individuals have been collected over an initial 4 years period. Tissue quality was assessed based on histologic staining of cortex, RNA integrity scores, detection of neuronal transcripts in situ by fluorescent hybridization chain reaction, and western blotting of neuronal and glial proteins. The results indicate that this pipeline preserves tissue integrity to an extent compatible with a range of morphologic, molecular, and biochemical analyses. Thus the algorithms that we developed for working in rural communities may serve as a guide for establishing similar brain banks for other rare diseases in indigenous populations. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s00702-020-02286-9.
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spelling pubmed-80998132021-05-11 Promise and challenges of dystonia brain banking: establishing a human tissue repository for studies of X-Linked Dystonia-Parkinsonism Fernandez-Cerado, Cara Legarda, G. Paul Velasco-Andrada, M. Salvie Aguil, Abegail Ganza-Bautista, Niecy G. Lagarde, J. Benedict B. Soria, Jasmin Jamora, Roland Dominic G. Acuña, Patrick J. Vanderburg, Charles Sapp, Ellen DiFiglia, Marian Murcar, Micaela G. Campion, Lindsey Ozelius, Laurie J. Alessi, Amy K. Singh-Bains, Malvindar K. Waldvogel, Henry J. Faull, Richard L. M. Macalintal-Canlas, Regina Muñoz, Edwin L. Penney, Ellen B. Ang, Mark A. Diesta, Cid Czarina E. Bragg, D. Cristopher Acuña-Sunshine, Geraldine J Neural Transm (Vienna) Neurology and Preclinical Neurological Studies - Original Article X-Linked Dystonia-Parkinsonism (XDP) is a neurodegenerative disease affecting individuals with ancestry to the island of Panay in the Philippines. In recent years there has been considerable progress at elucidating the genetic basis of XDP and candidate disease mechanisms in patient-derived cellular models, but the neural substrates that give rise to XDP in vivo are still poorly understood. Previous studies of limited XDP postmortem brain samples have reported a selective dropout of medium spiny neurons within the striatum, although neuroimaging of XDP patients has detected additional abnormalities in multiple brain regions beyond the basal ganglia. Given the need to fully define the CNS structures that are affected in this disease, we created a brain bank in Panay to serve as a tissue resource for detailed studies of XDP-related neuropathology. Here we describe this platform, from donor recruitment and consent to tissue collection, processing, and storage, that was assembled within a predominantly rural region of the Philippines with limited access to medical and laboratory facilities. Thirty-six brains from XDP individuals have been collected over an initial 4 years period. Tissue quality was assessed based on histologic staining of cortex, RNA integrity scores, detection of neuronal transcripts in situ by fluorescent hybridization chain reaction, and western blotting of neuronal and glial proteins. The results indicate that this pipeline preserves tissue integrity to an extent compatible with a range of morphologic, molecular, and biochemical analyses. Thus the algorithms that we developed for working in rural communities may serve as a guide for establishing similar brain banks for other rare diseases in indigenous populations. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s00702-020-02286-9. Springer Vienna 2021-01-13 2021 /pmc/articles/PMC8099813/ /pubmed/33439365 http://dx.doi.org/10.1007/s00702-020-02286-9 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Neurology and Preclinical Neurological Studies - Original Article
Fernandez-Cerado, Cara
Legarda, G. Paul
Velasco-Andrada, M. Salvie
Aguil, Abegail
Ganza-Bautista, Niecy G.
Lagarde, J. Benedict B.
Soria, Jasmin
Jamora, Roland Dominic G.
Acuña, Patrick J.
Vanderburg, Charles
Sapp, Ellen
DiFiglia, Marian
Murcar, Micaela G.
Campion, Lindsey
Ozelius, Laurie J.
Alessi, Amy K.
Singh-Bains, Malvindar K.
Waldvogel, Henry J.
Faull, Richard L. M.
Macalintal-Canlas, Regina
Muñoz, Edwin L.
Penney, Ellen B.
Ang, Mark A.
Diesta, Cid Czarina E.
Bragg, D. Cristopher
Acuña-Sunshine, Geraldine
Promise and challenges of dystonia brain banking: establishing a human tissue repository for studies of X-Linked Dystonia-Parkinsonism
title Promise and challenges of dystonia brain banking: establishing a human tissue repository for studies of X-Linked Dystonia-Parkinsonism
title_full Promise and challenges of dystonia brain banking: establishing a human tissue repository for studies of X-Linked Dystonia-Parkinsonism
title_fullStr Promise and challenges of dystonia brain banking: establishing a human tissue repository for studies of X-Linked Dystonia-Parkinsonism
title_full_unstemmed Promise and challenges of dystonia brain banking: establishing a human tissue repository for studies of X-Linked Dystonia-Parkinsonism
title_short Promise and challenges of dystonia brain banking: establishing a human tissue repository for studies of X-Linked Dystonia-Parkinsonism
title_sort promise and challenges of dystonia brain banking: establishing a human tissue repository for studies of x-linked dystonia-parkinsonism
topic Neurology and Preclinical Neurological Studies - Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8099813/
https://www.ncbi.nlm.nih.gov/pubmed/33439365
http://dx.doi.org/10.1007/s00702-020-02286-9
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