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RESEARCH PRODUCT

Neurogenin 3+ cells contribute to β-cell neogenesis and proliferation in injured adult mouse pancreas

S. De GroefUlf AhlgrenAri WaismanGunter LeuckxC. SvenssonOle D. MadsenViolette CoppensYuval DorHarry HeimbergM. Van De CasteeleJonas Ahnfelt-rønneLuc BaeyensYixing YuchiJan N. JensenMaria ErikssonYing Cai

subject

MaleCancer Researchmedicine.medical_specialtyendocrine systemCell- och molekylärbiologiImmunologyCellNerve Tissue Proteinsdigestive systemNeogenesisCellular and Molecular NeuroscienceMiceInternal medicineInsulin-Secreting CellsJournal ArticlemedicineBasic Helix-Loop-Helix Transcription FactorsAnimalsInsulinRegenerationProgenitor cellBeta (finance)PancreasCell ProliferationCell SizeMice Inbred BALB CbiologydiabetesCell growthResearch Support Non-U.S. Gov'tRegeneration (biology)Cell Biologybiology.organism_classificationCell biologytissue injurycell differentiationEndocrinologymedicine.anatomical_structureOriginal ArticleHuman medicinePancreasEx vivoCell and Molecular Biology

description

Abstract: We previously showed that injury by partial duct ligation (PDL) in adult mouse pancreas activates Neurogenin 3 (Ngn3)(+) progenitor cells that can differentiate to beta cells ex vivo. Here we evaluate the role of Ngn3(+) cells in beta cell expansion in situ. PDL not only induced doubling of the beta cell volume but also increased the total number of islets. beta cells proliferated without extended delay (the so-called 'refractory' period), their proliferation potential was highest in small islets, and 86% of the beta cell expansion was attributable to proliferation of pre-existing beta cells. At sufficiently high Ngn3 expression level, upto 14% of all beta cells and 40% of small islet beta cells derived from non-beta cells. Moreover, beta cell proliferation was blunted by a selective ablation of Ngn3(+) cells but not by conditional knockout of Ngn3 in pre-existing beta cells supporting a key role for Ngn3(+) insulin(-) cells in beta cell proliferation and expansion. We conclude that Ngn3(+) cell-dependent proliferation of pre-existing and newly-formed beta cells as well as reprogramming of non-beta cells contribute to in vivo beta cell expansion in the injured pancreas of adult mice.

10.1038/cddis.2013.52http://europepmc.org/articles/PMC3613830