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Generation of Embryonic Stem Cells and Mice for Duchenne Research

Duchenne muscular dystrophy (DMD) is a muscle-wasting disease in which muscle is continuously damaged, resulting in loss of muscle tissue and function. Antisense-mediated exon skipping is a promising therapeutic approach for DMD. This method uses sequence specific antisense oligonucleotides (AONs) t...

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Autores principales: Veltrop, Marcel, van der Kaa, Jos, Claassens, Jill, van Vliet, Laura, Verbeek, Sjef, Aartsma-Rus, Annemieke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3775890/
https://www.ncbi.nlm.nih.gov/pubmed/24057032
http://dx.doi.org/10.1371/currents.md.cbf1d33001de80923ce674302cad7925
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author Veltrop, Marcel
van der Kaa, Jos
Claassens, Jill
van Vliet, Laura
Verbeek, Sjef
Aartsma-Rus, Annemieke
author_facet Veltrop, Marcel
van der Kaa, Jos
Claassens, Jill
van Vliet, Laura
Verbeek, Sjef
Aartsma-Rus, Annemieke
author_sort Veltrop, Marcel
collection PubMed
description Duchenne muscular dystrophy (DMD) is a muscle-wasting disease in which muscle is continuously damaged, resulting in loss of muscle tissue and function. Antisense-mediated exon skipping is a promising therapeutic approach for DMD. This method uses sequence specific antisense oligonucleotides (AONs) to reframe disrupted dystrophin transcripts. As AONs function in a sequence specific manner, human specific AONs cannot be tested in the mdx mouse, which carries a mutation in the murine Dmd gene. We have previously generated a mouse model carrying the complete human DMD gene (hDMD mouse) integrated in the mouse genome to overcome this problem. However, as this is not a disease model, it cannot be used to study the effect of AON treatment on protein level and muscle function. Therefore, our long term goal is to generate deletions in the human DMD gene in a mouse carrying the hDMD gene in an mdx background. Towards this aim, we generated a male ES cell line carrying the hDMD gene while having the mdx point mutation. Inheritance of the hDMD gene by the ES cell was confirmed both on DNA and mRNA level. Quality control of the ES cells revealed that the pluripotency marker genes Oct-4 and Nanog are well expressed and that 85% of cells have 40 chromosomes. Germ line competence of this cell line has been confirmed, and 2 mice strains were derived from this cell line and crossed back on a C57BL6 background: hDMD/mdx and mdx(BL6).
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spelling pubmed-37758902013-09-18 Generation of Embryonic Stem Cells and Mice for Duchenne Research Veltrop, Marcel van der Kaa, Jos Claassens, Jill van Vliet, Laura Verbeek, Sjef Aartsma-Rus, Annemieke PLoS Curr Methods Duchenne muscular dystrophy (DMD) is a muscle-wasting disease in which muscle is continuously damaged, resulting in loss of muscle tissue and function. Antisense-mediated exon skipping is a promising therapeutic approach for DMD. This method uses sequence specific antisense oligonucleotides (AONs) to reframe disrupted dystrophin transcripts. As AONs function in a sequence specific manner, human specific AONs cannot be tested in the mdx mouse, which carries a mutation in the murine Dmd gene. We have previously generated a mouse model carrying the complete human DMD gene (hDMD mouse) integrated in the mouse genome to overcome this problem. However, as this is not a disease model, it cannot be used to study the effect of AON treatment on protein level and muscle function. Therefore, our long term goal is to generate deletions in the human DMD gene in a mouse carrying the hDMD gene in an mdx background. Towards this aim, we generated a male ES cell line carrying the hDMD gene while having the mdx point mutation. Inheritance of the hDMD gene by the ES cell was confirmed both on DNA and mRNA level. Quality control of the ES cells revealed that the pluripotency marker genes Oct-4 and Nanog are well expressed and that 85% of cells have 40 chromosomes. Germ line competence of this cell line has been confirmed, and 2 mice strains were derived from this cell line and crossed back on a C57BL6 background: hDMD/mdx and mdx(BL6). Public Library of Science 2013-09-10 /pmc/articles/PMC3775890/ /pubmed/24057032 http://dx.doi.org/10.1371/currents.md.cbf1d33001de80923ce674302cad7925 Text en http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Methods
Veltrop, Marcel
van der Kaa, Jos
Claassens, Jill
van Vliet, Laura
Verbeek, Sjef
Aartsma-Rus, Annemieke
Generation of Embryonic Stem Cells and Mice for Duchenne Research
title Generation of Embryonic Stem Cells and Mice for Duchenne Research
title_full Generation of Embryonic Stem Cells and Mice for Duchenne Research
title_fullStr Generation of Embryonic Stem Cells and Mice for Duchenne Research
title_full_unstemmed Generation of Embryonic Stem Cells and Mice for Duchenne Research
title_short Generation of Embryonic Stem Cells and Mice for Duchenne Research
title_sort generation of embryonic stem cells and mice for duchenne research
topic Methods
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3775890/
https://www.ncbi.nlm.nih.gov/pubmed/24057032
http://dx.doi.org/10.1371/currents.md.cbf1d33001de80923ce674302cad7925
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