Beta-cell replication is increased in donor organs from young patients after prolonged life support.
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Role of microRNAs in islet beta-cell compensation and failure during diabetesConcise review: pancreas regeneration: recent advances and perspectivesInsulitis in human type 1 diabetes: a comparison between patients and animal modelsIn vitro proliferation of adult human beta-cellsAdult tissue sources for new β cells.Concise Review: Macrophages: Versatile Gatekeepers During Pancreatic β-Cell Development, Injury, and Regeneration.MicroRNA-7 regulates the mTOR pathway and proliferation in adult pancreatic β-cells.Increased immune cell infiltration of the exocrine pancreas: a possible contribution to the pathogenesis of type 1 diabetes.Losing a grip on the notion of β-cell specificity for immune responses in type 1 diabetes: can we handle the truth?Beta cell count instead of beta cell mass to assess and localize growth in beta cell population following pancreatic duct ligation in miceStimulating β-cell regeneration by combining a GPR119 agonist with a DPP-IV inhibitor.Noninvasive mapping of pancreatic inflammation in recent-onset type-1 diabetes patients.Insulitis in human type 1 diabetes: The quest for an elusive lesion.Reduced Ki67 Staining in the Postmortem State Calls Into Question Past Conclusions About the Lack of Turnover of Adult Human β-Cells.Stem cell approaches for diabetes: towards beta cell replacement.Betatrophin in Diabetes Mellitus: the Epidemiological Evidence in Humans.Factors That Influence the Quality of RNA From the Pancreas of Organ Donors.Organ donor specimens: What can they tell us about type 1 diabetes?Islet β cell mass in diabetes and how it relates to function, birth, and death.Incretin therapy and islet pathology: a time for caution.Comment on: Butler et al. Marked expansion of exocrine and endocrine pancreas with incretin therapy in humans with increased exocrine pancreas dysplasia and the potential for glucagon-producing neuroendocrine tumors. Diabetes 2013;62:2595-2604Biliary tree stem cells, precursors to pancreatic committed progenitors: evidence for possible life-long pancreatic organogenesis.Incretin-Based Therapy and Risk of Pancreatic Cancer in Patients with Type 2 Diabetes Mellitus: A Meta-analysis of Randomized Controlled Trials.Analysis of self-antigen specificity of islet-infiltrating T cells from human donors with type 1 diabetes.Beyond metformin: safety considerations in the decision-making process for selecting a second medication for type 2 diabetes management: reflections from a diabetes care editors' expert forum.Birth and death of human β-cells in pancreases from cadaver donors, autopsies, surgical specimens, and islets transplanted into mice.Narrowing in on the anti-β cell-specific T cells: looking 'where the action is'.Development of the Nonobese Diabetic Mouse and Contribution of Animal Models for Understanding Type 1 Diabetes.A critical analysis of the clinical use of incretin-based therapies: The benefits by far outweigh the potential risks.What is the role of autoimmunity in type 1 diabetes? A clinical perspective.Are incretin mimetics and enhancers linked to pancreatitis and malignant transformations in pancreas?Islet inflammation in human type 1 diabetes mellitus.Development of a conditionally immortalized human pancreatic β cell line.Histological changes in endocrine and exocrine pancreatic tissue from patients exposed to incretin-based therapies.Characterization of human organ donors testing positive for type 1 diabetes-associated autoantibodies.Islet inflammation and ductal proliferation may be linked to increased pancreatitis risk in type 2 diabetesHeterogeneity in the Beta-Cell Population: a Guided Search Into Its Significance in Pancreas and in Implants.Sleeping islets and the relationship between β-cell mass and function.Comparison of exendin-4 on beta-cell replication in mouse and human islet grafts.Increased Proliferation of the Pancreatic Duct Gland Compartment in Type 1 Diabetes.
P2860
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P2860
Beta-cell replication is increased in donor organs from young patients after prolonged life support.
description
2010 nî lūn-bûn
@nan
2010 թուականի Ապրիլին հրատարակուած գիտական յօդուած
@hyw
2010 թվականի ապրիլին հրատարակված գիտական հոդված
@hy
2010年の論文
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2010年論文
@yue
2010年論文
@zh-hant
2010年論文
@zh-hk
2010年論文
@zh-mo
2010年論文
@zh-tw
2010年论文
@wuu
name
Beta-cell replication is incre ...... after prolonged life support.
@ast
Beta-cell replication is incre ...... after prolonged life support.
@en
type
label
Beta-cell replication is incre ...... after prolonged life support.
@ast
Beta-cell replication is incre ...... after prolonged life support.
@en
prefLabel
Beta-cell replication is incre ...... after prolonged life support.
@ast
Beta-cell replication is incre ...... after prolonged life support.
@en
P2093
P2860
P356
P1433
P1476
Beta-cell replication is incre ...... after prolonged life support.
@en
P2093
Daniel Pipeleers
Frans Gorus
Ilse Weets
Kristien Van Belle
Miriam Pipeleers-Marichal
Neelke De Munck
Nicole Buelens
Patrick Haentjens
Peter In't Veld
Zhidong Ling
P2860
P304
P356
10.2337/DB09-1698
P407
P577
2010-04-22T00:00:00Z