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dc.contributor.authorFahy, Niamh
dc.contributor.authorPalomares Cabeza, Virginia
dc.contributor.authorH. Kiernan, Caoimhe
dc.contributor.authorLolli, Andrea
dc.contributor.authorWitte-Bouma, Janneke
dc.contributor.authorFahmy Garcia, Shorouk
dc.contributor.authorMerino, Ana
dc.contributor.authorKops, Nicole
dc.contributor.authorRidwan, Yanto
dc.contributor.authorB. Wolvius, Eppo
dc.contributor.authorA.J. Brama, Pieter
dc.contributor.authorHoogduijn, Martin
dc.contributor.authorFarrell, Eric
dc.creatorBiomaterials
dc.date.accessioned2024-04-16T11:52:00Z
dc.date.available2024-04-16T11:52:00Z
dc.date.copyright2024
dc.date.issued2024-01-11
dc.identifier.citationPalomares Cabeza, V. et al. (2024) ‘Bone formation by human paediatric marrow stromal cells in a functional allogeneic immune system’, Biomaterials, 306, p. 122471. Available at: https://doi.org/10.1016/j.biomaterials.2024.122471.en_US
dc.identifier.urihttps://research.thea.ie/handle/20.500.12065/4795
dc.description.abstractAllogeneic stem-cell based regenerative medicine is a promising approach for bone defect repair. The use of chondrogenically differentiated human marrow stromal cells (MSCs) has been shown to lead to bone formation by endochondral ossification in immunodeficient pre-clinical models. However, an insight into the interactions between the allogeneic immune system and the human MSC-derived bone grafts has not been fully achieved yet. The choice of a potent source of MSCs isolated from pediatric donors with consistent differentiation and high proliferation abilities, as well as low immunogenicity, could increase the chance of success for bone allografts. In this study, we employed an immunodeficient animal model humanised with allogeneic immune cells to study the immune responses towards chondrogenically differentiated human pediatric MSCs (ch-pMSCs). We show that ch differentiated pMSCs remained non-immunogenic to allogeneic CD4 and CD8 T cells in an in vitro co-culture model. After subcutaneous implantation in mice, ch-pMSC-derived grafts were able to initiate bone minerali sation in the presence of an allogeneic immune system for 3 weeks without the onset of immune responses. Re exposing the splenocytes of the humanised animals to pMSCs did not trigger further T cell proliferation, sug gesting an absence of secondary immune responses. Moreover, ch-pMSCs generated mature bone after 8 weeks of implantation that persisted for up to 6 more weeks in the presence of an allogeneic immune system. These data collectively show that human allogeneic chondrogenically differentiated pediatric MSCs might be a safe and potent option for bone defect repair in the tissue engineering and regenerative medicine setting.en_US
dc.formatPDFen_US
dc.language.isoengen_US
dc.publisherElsevieren_US
dc.relation.ispartofBiomaterials
dc.rightsAttribution 3.0 United States*
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/us/*
dc.subjectEndochondral ossificationen_US
dc.subjectBoneen_US
dc.subjectTissue Engineeringen_US
dc.subjectAllogeneicen_US
dc.subjectMesenchymal stem cell/marrow stromal cellen_US
dc.titleBone formation by human paediatric marrow stromal cells in a functional allogeneic immune systemen_US
dc.typeinfo:eu-repo/semantics/articleen_US
dc.contributor.affiliationTechnological University of the Shannon: Midlands Midwesten_US
dc.contributor.sponsorAO Foundationen_US
dc.description.peerreviewyesen_US
dc.identifier.doi10.1016/j.biomaterials.2024.122471en_US
dc.identifier.issueApril 2024en_US
dc.identifier.orcid0000-0002-6413-0782en_US
dc.identifier.urlhttps://pdf.sciencedirectassets.com/271870/1-s2.0-S0142961223X00143/1-s2.0-S014296122400005X/main.pdf?X-Amz-Security-Token=IQoJb3JpZ2luX2VjEIP%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FwEaCXVzLWVhc3QtMSJHMEUCIH4Z8FSfOHl12lpgBDVc2vxauQ8ocNA5BRlLnWqP9xOJAiEA%2B%2FJcdKCLap%2F9gq2ZCLJ%2B3RB2izuDO0p%2BOmTj0B%2B4jCAqvAUIvP%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FARAFGgwwNTkwMDM1NDY4NjUiDAczUmcEBSFU7LH2CiqQBZH0BlIudW41AWZgB0jnshRCAfCbwjo%2FxGH02ipj6gXAWgScyVXus%2F5AX28aTOL4CePViNRmvyoCqJYxOpTWwA8oq4s47mdBn2I5nZ5RjtDl%2FXTPcxMDwnCjteFnbTAm1VMuY2r1mfwt%2Bg6lZoxjP8wizqSKOYAUaMDvxWjfBD5luMIudQXS3KDkY5LgupCIvUw5Ljv311ErZbCzgneMEugAfDKUND90dDcbx1mG83RMGgY9YJC3X4UXayy6Ilik3nXXFqJvuciVKMV9APpaZTrz9qVZ88a8xW5Ms6qGIvEJgeoo4R67d5vUvoRMVXPISfAWzCBzbvGu6bH4ZQRVbD7Ov%2BGca%2BAi3Gkm5GhBxGpO4dVIFtOdGDZXGiNIqU5Y1lp5X2n47AMBA1EENMafOLmp3uIIxW1ReXYyHpkMEb%2Bd5g3nW3HIJqGzcTqeoloWmgQYcIKZaluKiYDpY53K2HcaI4twoU%2FYQG3NyY14kA4rYaKrQ3%2Fyuz7z1R%2FPRYL87kwlClooAIK0Fv8Dcysq3sSA8%2BFAUpNnGsKuFJxACiQ6XbiY0DolU8QatNVQpLnEwqHyZtwW38s2sdlTlG6N6xOfc5ghE5AI1baqAp%2BvyEa9FEp052pH8soo1tdUIz%2BfVZ9Lr7IlWECbHtR5un39tuX4KhIOrEOjWh%2FHzLwVHbkPNH3iTFNK9zCMr8Ak%2Fk%2BS1kK1YHTI82pCbas3s7HSxG5FMvCp7HebakwhkSjJF%2BXCD1Oxfa%2FWwvkxzRXSlsvmGE6TXzk1LZ9MIAtPvoANGcSz5XJUkxycje6jtwE3HrPCJBUWxg2zBfik0uBn5hpYvD%2FZzLoTo%2Fyyle0sLJyHN4uZf70H5E2F0qaeVCcNFccRMOSt%2BbAGOrEBRmUwadTTxvIgchlM6XIdTaESZaL9%2F%2FOZjxsCB27B6mJTrHse5KRuwyenw%2F4j6vOoTZaqJjNUMOkA8tXDnHSfBAhVwfv8DPavVA7JIOQ2dkYOHK%2BLVLM6%2FsqRXm6Rz%2FCxEwRwLmmFJYuTpfbvMx8HR1CDE90MWDOo2BaXFt3JH0qWlypQRahaSByxdDPEHpBW6QwEgSTsNcGmAQ8V%2BceE3rq6829vGWXvKlOKNjPqY%2Fpc&X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Date=20240416T111439Z&X-Amz-SignedHeaders=host&X-Amz-Expires=299&X-Amz-Credential=ASIAQ3PHCVTY2AMX52QC%2F20240416%2Fus-east-1%2Fs3%2Faws4_request&X-Amz-Signature=8f904d5be5043faf366a20785bee4053f0a613a894487e9974962b2eb0fd37d7&hash=9a0f5a040677dedd31c565682b1f7b6807394b5ab6b8f50041a4e9abbaa9f8b9&host=68042c943591013ac2b2430a89b270f6af2c76d8dfd086a07176afe7c76c2c61&pii=S014296122400005X&tid=spdf-3854b3db-c8b9-4007-9f0a-cd02643d6489&sid=7ad4a9ce96df8049f41895f9bbf382ae8deegxrqb&type=client&tsoh=d3d3LnNjaWVuY2VkaXJlY3QuY29t&ua=13035d515251045e0754&rr=8753c0c4baf01b83&cc=ieen_US
dc.identifier.volume306en_US
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessen_US
dc.type.versioninfo:eu-repo/semantics/publishedVersionen_US


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