| Literature DB >> 29111856 |
Raymond C Pasek1, Jennifer C Dunn1, Joseph M Elsakr2, Mounika Aramandla3, Anveetha R Matta3, Maureen Gannon1,2,4,5.
Abstract
During pregnancy, maternal β cells undergo compensatory changes including hypertrophy, hyperplasia, and increased glucose-stimulated insulin secretion (GSIS). Failure of these adaptations to occur can result in gestational diabetes mellitus. The secreted protein, Connective tissue growth factor (Ctgf), is critical for normal β cell development and promotes regeneration after partial β cell ablation. During embryogenesis, Ctgf is expressed in pancreatic ducts, vasculature, and β cells. In the adult pancreas, Ctgf is expressed only in the vasculature. Here, we report that pregnant mice with global Ctgf haploinsufficiency (CtgfLacZ/+) have an impairment in maternal β cell proliferation, while β cell proliferation in virgin CtgfLacZ/+ females is unaffected. Additionally, α-cell proliferation, β cell size, and GSIS were unaffected in CtgfLacZ/+ mice, suggesting that vascular-derived Ctgf has a specific role in islet compensation during pregnancy.Entities:
Keywords: gestational diabetes; islets; pancreas; pregnancy; β cell proliferation
Mesh:
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Year: 2017 PMID: 29111856 PMCID: PMC5710701 DOI: 10.1080/19382014.2017.1356963
Source DB: PubMed Journal: Islets ISSN: 1938-2014 Impact factor: 2.694