Implantation of Islets Co-Seeded with Tregs in a Novel Biomaterial Reverses Diabetes in the NOD Mouse Model

dc.contributor.authorElizondo, Diana M.
dc.contributor.authorde Oliveira Rekowsky, Lais L.
dc.contributor.authorde Sa Resende, Ayane
dc.contributor.authorSeenarine, Jonathan
dc.contributor.authorda Silva, Ricardo Luis Louzada
dc.contributor.authorAli, Jamel
dc.contributor.authorYang, Dazhi
dc.contributor.authorde Moura, Tatiana
dc.contributor.authorLipscomb, Michael W.
dc.date.accessioned2025-01-31T18:24:00Z
dc.date.available2025-01-31T18:24:00Z
dc.date.issued2025-01-01
dc.description.abstractBACKGROUND: Type 1 diabetes (T1D) results in autoreactive T cells chronically destroying pancreatic islets. This often results in irreplaceable loss of insulin-producing beta cells. To reverse course, a combinatorial strategy of employing glucose-responsive insulin restoration coupled with inhibiting autoreactive immune responses is required. METHODS: Non-obese diabetic mice received a single intraperitoneal implantation of a novel biomaterial co-seeded with insulin-producing islets and T regulatory cells (Tregs). Controls included biomaterial seeded solely with islets, or biomaterial only groups. Mice were interrogated for changes in inflammation and diabetes progression via blood glucose monitoring, multiplex serum cytokine profiling, flow cytometry and immunohistochemistry assessments. RESULTS: Islet and Tregs co-seeded biomaterial recipients had increased longevity, insulin secretion, and normoglycemia through 180 days post-implantation compared to controls. Serum profile revealed reduced TNFα, IFNγ, IL-1β and increased IL-10, insulin, C-Peptide, PP and PPY in recipients receiving co-seeded biomaterial. Evaluation of the resected co-seeded biomaterial revealed reduced infiltrating autoreactive CD8 + and CD4 + T cells concomitant with sustained presence of Foxp3 + Tregs; further analysis revealed that the few infiltrated resident effector CD4⁺ or CD8⁺ T cells were anergic, as measured by low levels of IFNγ and Granzyme-B upon stimulation when compared to controls. Interestingly, studies also revealed increased Tregs in the pancreas. However, there was no restoration of the pancreas beta cell compartment, suggesting normoglycemia and production of insulin levels were largely supported by the implanted co-seeded biomaterial. CONCLUSION: These studies show the efficacy of a combinatorial approach seeding Tregs with pancreatic islets in a novel self-assembling organoid for reversing T1D.
dc.description.sponsorshipWe acknowledge the U.S. National Institutes of Health (SC1GM127207, R35GM145290 and K99DK136921), Department of Defense (W911NF-14-1-0123) and National Science Foundation (grant #1428768) for financial support for this project.
dc.description.urihttps://link.springer.com/article/10.1007/s13770-024-00685-7
dc.format.extent13 pages
dc.genrejournal articles
dc.identifierdoi:10.13016/m2k1ub-zxfk
dc.identifier.citationElizondo, Diana M., Lais L. de Oliveira Rekowsky, Ayane de Sa Resende, Jonathan Seenarine, Ricardo Luis Louzada da Silva, Jamel Ali, Dazhi Yang, Tatiana de Moura, and Michael W. Lipscomb. "Implantation of Islets Co-Seeded with Tregs in a Novel Biomaterial Reverses Diabetes in the NOD Mouse Model". Tissue Engineering and Regenerative Medicine 22, no. 1 (1 January 2025): 43–55. https://doi.org/10.1007/s13770-024-00685-7.
dc.identifier.urihttps://doi.org/10.1007/s13770-024-00685-7
dc.identifier.urihttp://hdl.handle.net/11603/37537
dc.language.isoen_US
dc.publisherSpringer Nature
dc.relation.isAvailableAtThe University of Maryland, Baltimore County (UMBC)
dc.relation.ispartofUMBC Faculty Collection
dc.relation.ispartofUMBC Biological Sciences Department
dc.rightsAttribution 4.0 International
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.subjectTregs
dc.subjectNOD
dc.subjectBiomaterial
dc.titleImplantation of Islets Co-Seeded with Tregs in a Novel Biomaterial Reverses Diabetes in the NOD Mouse Model
dc.typeText

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