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Regulation of pancreatic beta-cell regeneration in the normoglycemic 60% partial-pancreatectomy mouse


By JPGRAY - Posted on 24 February 2009

TitleRegulation of pancreatic beta-cell regeneration in the normoglycemic 60% partial-pancreatectomy mouse
Publication TypeJournal Article
Year of Publication2006
AuthorsPeshavaria M, Larmie BL, Lausier J, Satish B, Habibovic A, Roskens V, LaRock K, Everill B, Leahy JL, Jetton TL
JournalDiabetes
Volume55
Issue12
Pagination3289-98
Date PublishedDec
Publication Languageeng
ISBN Number0012-1797 (Print)
Accession Number17130472
Key WordsRegeneration, RNA/genetics/isolation & purification, Polymerase Chain Reaction, Mice, Inbred C57BL, Immunoblotting, Cell Division, Blood Glucose, Animals, *Pancreatectomy, Islets of Langerhans/anatomy & histology/cytology/physiology, Insulin-Secreting Cells/cytology/*physiology, Cyclins/metabolism, Actins/metabolism
Abstract

beta-Cell mass is determined by a dynamic balance of proliferation, neogenesis, and apoptosis. The precise mechanisms underlying compensatory beta-cell mass (BCM) homeostasis are not fully understood. To evaluate the processes that maintain normoglycemia and regulate BCM during pancreatic regeneration, C57BL/6 mice were analyzed for 15 days following 60% partial pancreatectomy (Px). BCM increased in Px mice from 2 days onwards and was approximately 68% of the shams by 15 days, partly due to enhanced beta-cell proliferation. A transient approximately 2.8-fold increase in the prevalence of beta-cell clusters/small islets at 2 days post-Px contributed substantially to BCM augmentation, followed by an increase in the number of larger islets at 15 days. To evaluate the signaling mechanisms that may regulate this compensatory growth, we examined key intermediates of the insulin signaling pathway. We found insulin receptor substrate (IRS)2 and enhanced-activated Akt immunoreactivity in islets and ducts that correlated with increased pancreatic duodenal homeobox (PDX)1 expression. In contrast, forkhead box O1 expression was decreased in islets but increased in ducts, suggesting distinct PDX1 regulatory mechanisms in these tissues. Px animals acutely administered insulin exhibited further enhancement in insulin signaling activity. These data suggest that the IRS2-Akt pathway mediates compensatory beta-cell growth by activating beta-cell proliferation with an increase in the number of beta-cell clusters/small islets.

Notes

DK-068329/DK/NIDDK NIH HHS/United StatesDK-56818/DK/NIDDK NIH HHS/United StatesDK-66635/DK/NIDDK NIH HHS/United StatesJournal ArticleResearch Support, N.I.H., ExtramuralResearch Support, Non-U.S. Gov'tUnited States

URLhttp://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=17130472
Citation Key479
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