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Functional, metabolic and transcriptional maturation of human pancreatic islets derived from stem cells

Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising treatment for diabetes. Despite progress in the generation of stem-cell-derived islets (SC-islets), no detailed characterization of their functional properties has been conducted. Here, we generated fu...

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Detalles Bibliográficos
Autores principales: Balboa, Diego, Barsby, Tom, Lithovius, Väinö, Saarimäki-Vire, Jonna, Omar-Hmeadi, Muhmmad, Dyachok, Oleg, Montaser, Hossam, Lund, Per-Eric, Yang, Mingyu, Ibrahim, Hazem, Näätänen, Anna, Chandra, Vikash, Vihinen, Helena, Jokitalo, Eija, Kvist, Jouni, Ustinov, Jarkko, Nieminen, Anni I., Kuuluvainen, Emilia, Hietakangas, Ville, Katajisto, Pekka, Lau, Joey, Carlsson, Per-Ola, Barg, Sebastian, Tengholm, Anders, Otonkoski, Timo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group US 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9287162/
https://www.ncbi.nlm.nih.gov/pubmed/35241836
http://dx.doi.org/10.1038/s41587-022-01219-z
Descripción
Sumario:Transplantation of pancreatic islet cells derived from human pluripotent stem cells is a promising treatment for diabetes. Despite progress in the generation of stem-cell-derived islets (SC-islets), no detailed characterization of their functional properties has been conducted. Here, we generated functionally mature SC-islets using an optimized protocol and benchmarked them comprehensively against primary adult islets. Biphasic glucose-stimulated insulin secretion developed during in vitro maturation, associated with cytoarchitectural reorganization and the increasing presence of alpha cells. Electrophysiology, signaling and exocytosis of SC-islets were similar to those of adult islets. Glucose-responsive insulin secretion was achieved despite differences in glycolytic and mitochondrial glucose metabolism. Single-cell transcriptomics of SC-islets in vitro and throughout 6 months of engraftment in mice revealed a continuous maturation trajectory culminating in a transcriptional landscape closely resembling that of primary islets. Our thorough evaluation of SC-islet maturation highlights their advanced degree of functionality and supports their use in further efforts to understand and combat diabetes.