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j.celrep.2016.05.016.pdf4.18 MBAdobe PDF見る/開く
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dc.contributor.authorIY, Choien
dc.contributor.authorH, Limen
dc.contributor.authorK, Estrellasen
dc.contributor.authorJ, Mulaen
dc.contributor.authorTV, Cohenen
dc.contributor.authorY, Zhangen
dc.contributor.authorCJ, Donnellyen
dc.contributor.authorJP, Richarden
dc.contributor.authorYJ, Kimen
dc.contributor.authorH, Kimen
dc.contributor.authorY, Kazukien
dc.contributor.authorM, Oshimuraen
dc.contributor.authorHL, Lien
dc.contributor.authorA, Hottaen
dc.contributor.authorJ, Rothsteinen
dc.contributor.authorN, Maragakisen
dc.contributor.authorKR, Wagneren
dc.contributor.authorG, Leeen
dc.contributor.alternative堀田, 秋津ja
dc.date.accessioned2016-08-22T07:16:22Z-
dc.date.available2016-08-22T07:16:22Z-
dc.date.issued2016-06-07-
dc.identifier.issn2211-1247-
dc.identifier.urihttp://hdl.handle.net/2433/216333-
dc.description.abstractDuchenne muscular dystrophy (DMD) remains an intractable genetic disease. Althogh there are several animal models of DMD, there is no human cell model that carries patient-specific DYSTROPHIN mutations. Here, we present a human DMD model using human induced pluripotent stem cells (hiPSCs). Our model reveals concordant disease-related phenotypes with patient-dependent variation, which are partially reversed by genetic and pharmacological approaches. Our “chemical-compound-based” strategy successfully directs hiPSCs into expandable myoblasts, which exhibit a myogenic transcriptional program, forming striated contractile myofibers and participating in muscle regeneration in vivo. DMD-hiPSC-derived myoblasts show disease-related phenotypes with patient-to-patient variability, including aberrant expression of inflammation or immune-response genes and collagens, increased BMP/TGFβ signaling, and reduced fusion competence. Furthermore, by genetic correction and pharmacological “dual-SMAD” inhibition, the DMD-hiPSC-derived myoblasts and genetically corrected isogenic myoblasts form “rescued” multi-nucleated myotubes. In conclusion, our findings demonstrate the feasibility of establishing a human “DMD-in-a-dish” model using hiPSC-based disease modeling.en
dc.format.mimetypeapplication/pdf-
dc.language.isoeng-
dc.publisherElsevieren
dc.rights© 2016 The Author(s). This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).en
dc.titleConcordant but Varied Phenotypes among Duchenne Muscular Dystrophy Patient-Specific Myoblasts Derived using a Human iPSC-Based Model.en
dc.typejournal article-
dc.type.niitypeJournal Article-
dc.identifier.jtitleCell reportsen
dc.identifier.volume15-
dc.identifier.issue10-
dc.identifier.spage2301-
dc.identifier.epage2312-
dc.relation.doi10.1016/j.celrep.2016.05.016-
dc.textversionpublisher-
dc.identifier.pmid27239027-
dcterms.accessRightsopen access-
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