iScience · 2019 · 42 citations · 38 references
Diabetic MiceImmunologyImmune Regulationα-Cell ProliferationInsulin SignalingCell SignalingMonoclonal AntibodyIncreases β-Cell MassG Protein-coupled ReceptorPancreatic Islet BiologyIslet Cell ManufacturingHuman Glucagon ReceptorAutoimmunityPlasma GlucagonEndocrinologyCell BiologySignal TransductionDiabetesDiabetes MellitusMedicine
Under extreme conditions or by genetic modification, pancreatic α-cells can regenerate and be converted into β-cells. This regeneration holds substantial promise for cell replacement therapy in diabetic patients. The discovery of clinical therapeutic strategies to promote β-cell regeneration is crucial for translating these findings into clinical applications. In this study, we reported that treatment with REMD 2.59, a human glucagon receptor (GCGR) monoclonal antibody (mAb), lowered blood glucose without inducing hypoglycemia in normoglycemic, streptozotocin-induced type 1 diabetic (T1D) and non-obesity diabetic mice. Moreover, GCGR mAb treatment increased the plasma glucagon and active glucagon-like peptide-1 levels, induced pancreatic ductal ontogenic α-cell neogenesis, and promoted α-cell proliferation. Strikingly, the treatment also increased the β-cell mass in these two T1D models. Using α-cell lineage-tracing mice, we found that the neogenic β-cells were likely derived from α-cell conversion. Therefore, GCGR mAb-induced α- to β-cell conversion might represent a pre-clinical approach for improving diabetes therapy.
38
Prevalence and Ethnic Pattern of Diabetes and Prediabetes in China in 2013
Limin Wang, Pei Gao, Mei Zhang et al. · JAMA · 2017 · 1.9K citations · Full text
Conversion of adult pancreatic α-cells to β-cells after extreme β-cell loss
Fabrizio Thorel, Virginie Népote, Isabelle Avril et al. · Nature · 2010 · 1.1K citations · Full text
Unique Arrangement of α- and β-Cells in Human Islets of Langerhans
Domenico Bosco, Mathieu Armanet, Philippe Morel et al. · Diabetes · 2010 · 425 citations · Full text