Fas is an apoptosis-inducing surface receptor involved in controlling tissue homeostasis and function at multiple sites. Here we show that β cells from the pancreata of newly diagnosed insulin-dependent diabetes mellitus (IDDM) patients express Fas and show extensive apoptosis among those cells located in proximity to Fas ligand-expressing T lymphocytes infiltrating the IDDM islets. Normal human pancreatic β cells that do not constitutively express Fas, become strongly Fas positive after interleuken (IL)-β exposure, and are then susceptible to Fas-mediated apoptosis. N(G)-monomethyl-L- arginine, an inhibitor of nitric oxide (NO) synthase, prevents IL-β-induced Fas expression, whereas the NO donors sodium nitroprusside and nitric oxide r...
Pancreatic α cells are exposed to metabolic stress during the evolution of type 2 diabetes (T2D), bu...
Defects in insulin secretion by pancreatic cells and/or decreased sensitivity of target tissues to i...
CD8+ T cells play a central role in beta-cell destruction in type 1 diabetes. CD8+ T cells use two m...
Fas is an apoptosis-inducing surface receptor involved in controlling tissue homeostasis and functio...
A major surge of interest has recently focused upon nitric oxide (NO) as a mediator of autoimmune de...
AbstractHyperglycemia significantly stimulates pancreatic islet endothelial cell apoptosis; however,...
Abstract Cytokines have been implicated in pancreatic β-cell destruction leading to type 1 diabetes....
Dysfunction of the pancreatic β cells leads to several chronic disorders including diabetes mellitus...
SUMMARYType 1 diabetes mellitus (T1DM) is an autoimmune disease caused by progressive destruction of...
Abstract This paper reviews 15 articles about nitric oxide`s role in FFA-induced apoptosis/cell dea...
Dysfunction of beta-cell is one of major characteristics in the pathogenesis of type 2 diabetes. The...
Pancreatic -cells are sensitive to a number of proapo-ptotic stimuli. Thus, apoptosis is an importan...
Dysfunction of β-cell is one of major characteristics in the pathogenesis of type 2 diabetes. The co...
Cytokines have been implicated as immunological effector molecules that induce dysfunction and destr...
AbstractHyperglycemia significantly stimulates pancreatic islet endothelial cell apoptosis; however,...
Pancreatic α cells are exposed to metabolic stress during the evolution of type 2 diabetes (T2D), bu...
Defects in insulin secretion by pancreatic cells and/or decreased sensitivity of target tissues to i...
CD8+ T cells play a central role in beta-cell destruction in type 1 diabetes. CD8+ T cells use two m...
Fas is an apoptosis-inducing surface receptor involved in controlling tissue homeostasis and functio...
A major surge of interest has recently focused upon nitric oxide (NO) as a mediator of autoimmune de...
AbstractHyperglycemia significantly stimulates pancreatic islet endothelial cell apoptosis; however,...
Abstract Cytokines have been implicated in pancreatic β-cell destruction leading to type 1 diabetes....
Dysfunction of the pancreatic β cells leads to several chronic disorders including diabetes mellitus...
SUMMARYType 1 diabetes mellitus (T1DM) is an autoimmune disease caused by progressive destruction of...
Abstract This paper reviews 15 articles about nitric oxide`s role in FFA-induced apoptosis/cell dea...
Dysfunction of beta-cell is one of major characteristics in the pathogenesis of type 2 diabetes. The...
Pancreatic -cells are sensitive to a number of proapo-ptotic stimuli. Thus, apoptosis is an importan...
Dysfunction of β-cell is one of major characteristics in the pathogenesis of type 2 diabetes. The co...
Cytokines have been implicated as immunological effector molecules that induce dysfunction and destr...
AbstractHyperglycemia significantly stimulates pancreatic islet endothelial cell apoptosis; however,...
Pancreatic α cells are exposed to metabolic stress during the evolution of type 2 diabetes (T2D), bu...
Defects in insulin secretion by pancreatic cells and/or decreased sensitivity of target tissues to i...
CD8+ T cells play a central role in beta-cell destruction in type 1 diabetes. CD8+ T cells use two m...