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dc.creatorWu, Junes
dc.creatorPlatero-Luengo, Aidaes
dc.creatorGil, María Antoniaes
dc.creatorSuzuki, Keiichiroues
dc.creatorCuello, Cristinaes
dc.creatorMorales Valencia, Marianaes
dc.creatorParrilla, Inmaculadaes
dc.creatorMartínez, Cristina A.es
dc.creatorNohález, Aliciaes
dc.creatorRoca, Jordies
dc.creatorMartínez, Emilio Arsenioes
dc.creatorIzpisua Belmonte, Juan C.es
dc.date.accessioned2021-04-22T09:23:16Z
dc.date.available2021-04-22T09:23:16Z
dc.date.issued2016-10-19
dc.identifier.citationWu, J., Platero-Luengo, A., Gil, M.A., Suzuki, K., Cuello, C., Morales Valencia, M.,...,Izpisua Belmonte, J.C. (2016). Generation of human organs in pigs via interspecies blastocyst complementation. Reproduction in Domestic Animals, 51, 18-24.
dc.identifier.issn0936-6768es
dc.identifier.issn1439-0531(electrónico)es
dc.identifier.urihttps://hdl.handle.net/11441/107554
dc.description.abstractMore than eighteen years have passed since the first derivation of human embryonic stem cells (ESCs), but their clinical use is still met with several challenges, such as ethical concerns regarding the need of human embryos, tissue rejection after transplantation and tumour formation. The generation of human induced pluripotent stem cells (iPSCs) enables the access to patient-derived pluripotent stem cells (PSCs) and opens the door for personalized medicine as tissues/organs can potentially be generated from the same genetic background as the patient recipients, thus avoiding immune rejections or complication of immunosuppression strategies. In this regard, successful replacement, or augmentation, of the function of damaged tissue by patient-derived differentiated stem cells provides a promising cell replacement therapy for many devastating human diseases. Although human iPSCs can proliferate unlimitedly in culture and harbour the potential to generate all cell types in the adult body, currently, the functionality of differentiated cells is limited. An alternative strategy to realize the full potential of human iPSC for regenerative medicine is the in vivo tissue generation in large animal species via interspecies blastocyst complementation. As this technology is still in its infancy and there remains more questions than answers, thus in this review, we mainly focus the discussion on the conceptual framework, the emerging technologies and recent advances involved with interspecies blastocyst complementation, and will refer the readers to other more in-depth reviews on dynamic pluripotent stem cell states, genome editing and interspecies chimeras. Likewise, other emerging alternatives to combat the growing shortage of human organs, such as xenotransplantation or tissue engineering, topics that has been extensively reviewed, will not be covered here.es
dc.formatapplication/pdfes
dc.format.extent7 p.es
dc.language.isoenges
dc.publisherWiley-Blackwell Verlag GmbHes
dc.relation.ispartofReproduction in Domestic Animals, 51, 18-24.
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internacional*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/*
dc.titleGeneration of human organs in pigs via interspecies blastocyst complementationes
dc.typeinfo:eu-repo/semantics/articlees
dcterms.identifierhttps://ror.org/03yxnpp24
dc.type.versioninfo:eu-repo/semantics/publishedVersiones
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses
dc.contributor.affiliationUniversidad de Sevilla. Departamento de Fisiología Médica y Biofísicaes
dc.relation.publisherversionhttps://doi.org/10.1111/rda.12796es
dc.identifier.doi10.1111/rda.12796es
dc.journaltitleReproduction in Domestic Animalses
dc.publication.volumen51es
dc.publication.initialPage18es
dc.publication.endPage24es

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