Adaptive β-Cell Neogenesis in the Adult Mouse in Response to Glucocorticoid-Induced Insulin Resistance

Author:

Courty Emilie12,Besseiche Adrien3,Do Thi Thu Huong12,Liboz Alexandrine12,Aguid Fatima Mohamed3,Quilichini Evans4,Buscato Melissa5,Gourdy Pierre56,Gautier Jean-François37,Riveline Jean-Pierre37,Haumaitre Cécile4,Buyse Marion1289,Fève Bruno1210,Guillemain Ghislaine12,Blondeau Bertrand12ORCID

Affiliation:

1. Sorbonne Université, INSERM, Saint-Antoine Research Center, Paris, France

2. Hospitalo-Universitary Institute, ICAN, Paris, France

3. Sorbonne Université, INSERM, Centre de Recherche des Cordeliers, Paris, France

4. Sorbonne Université, CNRS, Institut de Biologie Paris-Seine, Paris, France

5. Institute of Metabolic and Cardiovascular Diseases, UMR1048, INSERM, UPS, Université de Toulouse, Toulouse, France

6. Service de Diabétologie, CHU de Toulouse, Toulouse, France

7. Lariboisière Hospital, Assistance Publique–Hôpitaux de Paris, Department of Diabetes and Endocrinology, University Paris-Diderot 7, Sorbonne Paris Cité, Paris, France

8. Université Paris-Sud, EA 4123, Chatenay-Malabry, France

9. Department of Pharmacy, Saint-Antoine Hospital, Assistance Publique–Hôpitaux de Paris, Paris, France

10. Department of Endocrinology, Saint-Antoine Hospital, Assistance Publique–Hôpitaux de Paris, Paris, France

Abstract

Both type 1 and type 2 diabetes are characterized by deficient insulin secretion and decreased β-cell mass. Thus, regenerative strategies to increase β-cell mass need to be developed. To characterize mechanisms of β-cell plasticity, we studied a model of severe insulin resistance in the adult mouse and defined how β-cells adapt. Chronic corticosterone (CORT) treatment was given to adult mice and led to rapid insulin resistance and adaptive increased insulin secretion. Adaptive and massive increase of β-cell mass was observed during treatment up to 8 weeks. β-Cell mass increase was partially reversible upon treatment cessation and reinduced upon subsequent treatment. β-Cell neogenesis was suggested by an increased number of islets, mainly close to ducts, and increased Sox9 and Ngn3 mRNA levels in islets, but lineage-tracing experiments revealed that neoformed β-cells did not derive from Sox9- or Ngn3-expressing cells. CORT treatment after β-cell depletion partially restored β-cells. Finally, β-cell neogenesis was shown to be indirectly stimulated by CORT because serum from CORT-treated mice increased β-cell differentiation in in vitro cultures of pancreatic buds. Altogether, the results present a novel model of β-cell neogenesis in the adult mouse and identify the presence of neogenic factors in the serum of CORT-treated mice.

Funder

Université Pierre et Marie Curie

Institut National de la Santé et de la Recherche Médicale

Fondation pour la Recherche Médicale

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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