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Personalized in vitro Extracellular Matrix Models of Collagen VI-Related Muscular Dystrophies

Collagen VI-related dystrophies (COL6-RDs) are a group of rare congenital neuromuscular dystrophies that represent a continuum of overlapping clinical phenotypes that go from the milder Bethlem myopathy (BM) to the severe Ullrich congenital muscular dystrophy, for which there is no effective treatme...

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Autores principales: Almici, Enrico, Chiappini, Vanessa, López-Márquez, Arístides, Badosa, Carmen, Blázquez, Blanca, Caballero, David, Montero, Joan, Natera-de Benito, Daniel, Nascimento, Andrés, Roldán, Mònica, Lagunas, Anna, Jiménez-Mallebrera, Cecilia, Samitier, Josep
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9081367/
https://www.ncbi.nlm.nih.gov/pubmed/35547158
http://dx.doi.org/10.3389/fbioe.2022.851825
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author Almici, Enrico
Chiappini, Vanessa
López-Márquez, Arístides
Badosa, Carmen
Blázquez, Blanca
Caballero, David
Montero, Joan
Natera-de Benito, Daniel
Nascimento, Andrés
Roldán, Mònica
Lagunas, Anna
Jiménez-Mallebrera, Cecilia
Samitier, Josep
author_facet Almici, Enrico
Chiappini, Vanessa
López-Márquez, Arístides
Badosa, Carmen
Blázquez, Blanca
Caballero, David
Montero, Joan
Natera-de Benito, Daniel
Nascimento, Andrés
Roldán, Mònica
Lagunas, Anna
Jiménez-Mallebrera, Cecilia
Samitier, Josep
author_sort Almici, Enrico
collection PubMed
description Collagen VI-related dystrophies (COL6-RDs) are a group of rare congenital neuromuscular dystrophies that represent a continuum of overlapping clinical phenotypes that go from the milder Bethlem myopathy (BM) to the severe Ullrich congenital muscular dystrophy, for which there is no effective treatment. Mutations in one of the three Collagen VI genes alter the incorporation of this protein into the extracellular matrix (ECM), affecting the assembly and the structural integrity of the whole fibrillar network. Clinical hallmarks of COL6-RDs are secondary to the ECM disruption and include muscle weakness, proximal joint contractures, and distal hyperlaxity. Although some traits have been identified in patients’ ECMs, a correlation between the ECM features and the clinical phenotype has not been established, mainly due to the lack of predictive and reliable models of the pathology. Herein, we engineered a new personalized pre-clinical model of COL6-RDs using cell-derived matrices (CDMs) technology to better recapitulate the complexity of the native scenario. We found that CDMs from COL6-RD patients presented alterations in ECM structure and composition, showing a significantly decreased Collagen VI secretion, especially in the more severe phenotypes, and a decrease in Fibrillin-1 inclusion. Next, we examined the Collagen VI-mediated deposition of Fibronectin in the ECM, finding a higher alignment, length, width, and straightness than in patients with COL6-RDs. Overall, these results indicate that CDMs models are promising tools to explore the alterations that arise in the composition and fibrillar architecture due to mutations in Collagen VI genes, especially in early stages of matrix organization. Ultimately, CDMs derived from COL6-RD patients may become relevant pre-clinical models, which may help identifying novel biomarkers to be employed in the clinics and to investigate novel therapeutic targets and treatments.
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spelling pubmed-90813672022-05-10 Personalized in vitro Extracellular Matrix Models of Collagen VI-Related Muscular Dystrophies Almici, Enrico Chiappini, Vanessa López-Márquez, Arístides Badosa, Carmen Blázquez, Blanca Caballero, David Montero, Joan Natera-de Benito, Daniel Nascimento, Andrés Roldán, Mònica Lagunas, Anna Jiménez-Mallebrera, Cecilia Samitier, Josep Front Bioeng Biotechnol Bioengineering and Biotechnology Collagen VI-related dystrophies (COL6-RDs) are a group of rare congenital neuromuscular dystrophies that represent a continuum of overlapping clinical phenotypes that go from the milder Bethlem myopathy (BM) to the severe Ullrich congenital muscular dystrophy, for which there is no effective treatment. Mutations in one of the three Collagen VI genes alter the incorporation of this protein into the extracellular matrix (ECM), affecting the assembly and the structural integrity of the whole fibrillar network. Clinical hallmarks of COL6-RDs are secondary to the ECM disruption and include muscle weakness, proximal joint contractures, and distal hyperlaxity. Although some traits have been identified in patients’ ECMs, a correlation between the ECM features and the clinical phenotype has not been established, mainly due to the lack of predictive and reliable models of the pathology. Herein, we engineered a new personalized pre-clinical model of COL6-RDs using cell-derived matrices (CDMs) technology to better recapitulate the complexity of the native scenario. We found that CDMs from COL6-RD patients presented alterations in ECM structure and composition, showing a significantly decreased Collagen VI secretion, especially in the more severe phenotypes, and a decrease in Fibrillin-1 inclusion. Next, we examined the Collagen VI-mediated deposition of Fibronectin in the ECM, finding a higher alignment, length, width, and straightness than in patients with COL6-RDs. Overall, these results indicate that CDMs models are promising tools to explore the alterations that arise in the composition and fibrillar architecture due to mutations in Collagen VI genes, especially in early stages of matrix organization. Ultimately, CDMs derived from COL6-RD patients may become relevant pre-clinical models, which may help identifying novel biomarkers to be employed in the clinics and to investigate novel therapeutic targets and treatments. Frontiers Media S.A. 2022-04-25 /pmc/articles/PMC9081367/ /pubmed/35547158 http://dx.doi.org/10.3389/fbioe.2022.851825 Text en Copyright © 2022 Almici, Chiappini, López-Márquez, Badosa, Blázquez, Caballero, Montero, Natera-de Benito, Nascimento, Roldán, Lagunas, Jiménez-Mallebrera and Samitier. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Bioengineering and Biotechnology
Almici, Enrico
Chiappini, Vanessa
López-Márquez, Arístides
Badosa, Carmen
Blázquez, Blanca
Caballero, David
Montero, Joan
Natera-de Benito, Daniel
Nascimento, Andrés
Roldán, Mònica
Lagunas, Anna
Jiménez-Mallebrera, Cecilia
Samitier, Josep
Personalized in vitro Extracellular Matrix Models of Collagen VI-Related Muscular Dystrophies
title Personalized in vitro Extracellular Matrix Models of Collagen VI-Related Muscular Dystrophies
title_full Personalized in vitro Extracellular Matrix Models of Collagen VI-Related Muscular Dystrophies
title_fullStr Personalized in vitro Extracellular Matrix Models of Collagen VI-Related Muscular Dystrophies
title_full_unstemmed Personalized in vitro Extracellular Matrix Models of Collagen VI-Related Muscular Dystrophies
title_short Personalized in vitro Extracellular Matrix Models of Collagen VI-Related Muscular Dystrophies
title_sort personalized in vitro extracellular matrix models of collagen vi-related muscular dystrophies
topic Bioengineering and Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9081367/
https://www.ncbi.nlm.nih.gov/pubmed/35547158
http://dx.doi.org/10.3389/fbioe.2022.851825
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