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High-Throughput Digital Image Analysis Reveals Distinct Patterns of Dystrophin Expression in Dystrophinopathy Patients

Duchenne muscular dystrophy (DMD) is an incurable disease caused by out-of-frame DMD gene deletions while in frame deletions lead to the milder Becker muscular dystrophy (BMD). In the last decade several antisense oligonucleotides drugs have been developed to induce a partially functional internally...

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Autores principales: Torelli, Silvia, Scaglioni, Domenic, Sardone, Valentina, Ellis, Matthew J, Domingos, Joana, Jones, Adam, Feng, Lucy, Chambers, Darren, Eastwood, Deborah M, Leturcq, France, Yaou, Rabah Ben, Urtizberea, Andoni, Sabouraud, Pascal, Barnerias, Christine, Stojkovic, Tanya, Ricci, Enzo, Beuvin, Maud, Bonne, Gisele, Sewry, Caroline A, Willis, Tracey, Kulshrestha, Richa, Tasca, Giorgio, Phadke, Rahul, Morgan, Jennifer E, Muntoni, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8557329/
https://www.ncbi.nlm.nih.gov/pubmed/34498054
http://dx.doi.org/10.1093/jnen/nlab088
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author Torelli, Silvia
Scaglioni, Domenic
Sardone, Valentina
Ellis, Matthew J
Domingos, Joana
Jones, Adam
Feng, Lucy
Chambers, Darren
Eastwood, Deborah M
Leturcq, France
Yaou, Rabah Ben
Urtizberea, Andoni
Sabouraud, Pascal
Barnerias, Christine
Stojkovic, Tanya
Ricci, Enzo
Beuvin, Maud
Bonne, Gisele
Sewry, Caroline A
Willis, Tracey
Kulshrestha, Richa
Tasca, Giorgio
Phadke, Rahul
Morgan, Jennifer E
Muntoni, Francesco
author_facet Torelli, Silvia
Scaglioni, Domenic
Sardone, Valentina
Ellis, Matthew J
Domingos, Joana
Jones, Adam
Feng, Lucy
Chambers, Darren
Eastwood, Deborah M
Leturcq, France
Yaou, Rabah Ben
Urtizberea, Andoni
Sabouraud, Pascal
Barnerias, Christine
Stojkovic, Tanya
Ricci, Enzo
Beuvin, Maud
Bonne, Gisele
Sewry, Caroline A
Willis, Tracey
Kulshrestha, Richa
Tasca, Giorgio
Phadke, Rahul
Morgan, Jennifer E
Muntoni, Francesco
author_sort Torelli, Silvia
collection PubMed
description Duchenne muscular dystrophy (DMD) is an incurable disease caused by out-of-frame DMD gene deletions while in frame deletions lead to the milder Becker muscular dystrophy (BMD). In the last decade several antisense oligonucleotides drugs have been developed to induce a partially functional internally deleted dystrophin, similar to that produced in BMD, and expected to ameliorate the disease course. The pattern of dystrophin expression and functionality in dystrophinopathy patients is variable due to multiple factors, such as molecular functionality of the dystrophin and its distribution. To benchmark the success of therapeutic intervention, a clear understanding of dystrophin expression patterns in dystrophinopathy patients is vital. Recently, several groups have used innovative techniques to quantify dystrophin in muscle biopsies of children but not in patients with milder BMD. This study reports on dystrophin expression using both Western blotting and an automated, high-throughput, image analysis platform in DMD, BMD, and intermediate DMD/BMD skeletal muscle biopsies. Our results found a significant correlation between Western blot and immunofluorescent quantification indicating consistency between the different methodologies. However, we identified significant inter- and intradisease heterogeneity of patterns of dystrophin expression in patients irrespective of the amount detected on blot, due to variability in both fluorescence intensity and dystrophin sarcolemmal circumference coverage. Our data highlight the heterogeneity of the pattern of dystrophin expression in BMD, which will assist the assessment of dystrophin restoration therapies.
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spelling pubmed-85573292021-11-01 High-Throughput Digital Image Analysis Reveals Distinct Patterns of Dystrophin Expression in Dystrophinopathy Patients Torelli, Silvia Scaglioni, Domenic Sardone, Valentina Ellis, Matthew J Domingos, Joana Jones, Adam Feng, Lucy Chambers, Darren Eastwood, Deborah M Leturcq, France Yaou, Rabah Ben Urtizberea, Andoni Sabouraud, Pascal Barnerias, Christine Stojkovic, Tanya Ricci, Enzo Beuvin, Maud Bonne, Gisele Sewry, Caroline A Willis, Tracey Kulshrestha, Richa Tasca, Giorgio Phadke, Rahul Morgan, Jennifer E Muntoni, Francesco J Neuropathol Exp Neurol Original Articles Duchenne muscular dystrophy (DMD) is an incurable disease caused by out-of-frame DMD gene deletions while in frame deletions lead to the milder Becker muscular dystrophy (BMD). In the last decade several antisense oligonucleotides drugs have been developed to induce a partially functional internally deleted dystrophin, similar to that produced in BMD, and expected to ameliorate the disease course. The pattern of dystrophin expression and functionality in dystrophinopathy patients is variable due to multiple factors, such as molecular functionality of the dystrophin and its distribution. To benchmark the success of therapeutic intervention, a clear understanding of dystrophin expression patterns in dystrophinopathy patients is vital. Recently, several groups have used innovative techniques to quantify dystrophin in muscle biopsies of children but not in patients with milder BMD. This study reports on dystrophin expression using both Western blotting and an automated, high-throughput, image analysis platform in DMD, BMD, and intermediate DMD/BMD skeletal muscle biopsies. Our results found a significant correlation between Western blot and immunofluorescent quantification indicating consistency between the different methodologies. However, we identified significant inter- and intradisease heterogeneity of patterns of dystrophin expression in patients irrespective of the amount detected on blot, due to variability in both fluorescence intensity and dystrophin sarcolemmal circumference coverage. Our data highlight the heterogeneity of the pattern of dystrophin expression in BMD, which will assist the assessment of dystrophin restoration therapies. Oxford University Press 2021-09-08 /pmc/articles/PMC8557329/ /pubmed/34498054 http://dx.doi.org/10.1093/jnen/nlab088 Text en © 2021 American Association of Neuropathologists, Inc. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Torelli, Silvia
Scaglioni, Domenic
Sardone, Valentina
Ellis, Matthew J
Domingos, Joana
Jones, Adam
Feng, Lucy
Chambers, Darren
Eastwood, Deborah M
Leturcq, France
Yaou, Rabah Ben
Urtizberea, Andoni
Sabouraud, Pascal
Barnerias, Christine
Stojkovic, Tanya
Ricci, Enzo
Beuvin, Maud
Bonne, Gisele
Sewry, Caroline A
Willis, Tracey
Kulshrestha, Richa
Tasca, Giorgio
Phadke, Rahul
Morgan, Jennifer E
Muntoni, Francesco
High-Throughput Digital Image Analysis Reveals Distinct Patterns of Dystrophin Expression in Dystrophinopathy Patients
title High-Throughput Digital Image Analysis Reveals Distinct Patterns of Dystrophin Expression in Dystrophinopathy Patients
title_full High-Throughput Digital Image Analysis Reveals Distinct Patterns of Dystrophin Expression in Dystrophinopathy Patients
title_fullStr High-Throughput Digital Image Analysis Reveals Distinct Patterns of Dystrophin Expression in Dystrophinopathy Patients
title_full_unstemmed High-Throughput Digital Image Analysis Reveals Distinct Patterns of Dystrophin Expression in Dystrophinopathy Patients
title_short High-Throughput Digital Image Analysis Reveals Distinct Patterns of Dystrophin Expression in Dystrophinopathy Patients
title_sort high-throughput digital image analysis reveals distinct patterns of dystrophin expression in dystrophinopathy patients
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8557329/
https://www.ncbi.nlm.nih.gov/pubmed/34498054
http://dx.doi.org/10.1093/jnen/nlab088
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