| Literature DB >> 30710150 |
Gopika G Nair1, Jennifer S Liu1, Holger A Russ1,2, Stella Tran1,3, Michael S Saxton1, Richard Chen1, Charity Juang1, Mei-Lan Li1, Vinh Q Nguyen4, Simone Giacometti1, Sapna Puri1, Yuan Xing5, Yong Wang5, Gregory L Szot4, Jose Oberholzer5, Anil Bhushan1, Matthias Hebrok6.
Abstract
Despite advances in the differentiation of insulin-producing cells from human embryonic stem cells, the generation of mature functional β cells in vitro has remained elusive. To accomplish this goal, we have developed cell culture conditions to closely mimic events occurring during pancreatic islet organogenesis and β cell maturation. In particular, we have focused on recapitulating endocrine cell clustering by isolating and reaggregating immature β-like cells to form islet-sized enriched β-clusters (eBCs). eBCs display physiological properties analogous to primary human β cells, including robust dynamic insulin secretion, increased calcium signalling in response to secretagogues, and improved mitochondrial energization. Notably, endocrine cell clustering induces metabolic maturation by driving mitochondrial oxidative respiration, a process central to stimulus-secretion coupling in mature β cells. eBCs display glucose-stimulated insulin secretion as early as three days after transplantation in mice. In summary, replicating aspects of endocrine cell clustering permits the generation of stem-cell-derived β cells that resemble their endogenous counterparts.Entities:
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Year: 2019 PMID: 30710150 PMCID: PMC6746427 DOI: 10.1038/s41556-018-0271-4
Source DB: PubMed Journal: Nat Cell Biol ISSN: 1465-7392 Impact factor: 28.824