In type 1 diabetes, cytokines arising from immune cells cause islet β cell dysfunction even before overt hyperglycemia. Deoxyhypusine synthase catalyzes the crucial hypusine modification of the factor eIF5A, which promotes the translation of a subset of mRNAs involved in cytokine responses. Here, we tested the hypothesis that deoxyhypusine synthase and, secondarily, hypusinated eIF5A contribute to the pathogenesis of type 1 diabetes using the non-obese diabetic (NOD) mouse model. Pre-diabetic NOD mice that received injections of the deoxyhypusine inhibitor N1-guanyl-1,7-diaminoheptane (GC7) demonstrated significantly improved glucose tolerance, more robust insulin secretion, and reduced insulitis compared with control animals. Analysis of t...
Type 1 diabetes (T1D) is an autoimmune disease in which a strong inflammatory response causes the de...
INTRODUCTION: Efferocytosis is a crucial process by which apoptotic cells are cleared by phagocytes,...
This work introduces and explores a novel model which incorporates Fetal Thymus Organ Culture (FTOC)...
Therapeutic options for treatment of type 1 diabetes (T1D) are still missing. New avenues for immune...
We have developed a transgenic mouse model of Type 1 Diabetes (T1D) in which human GAD65 is expresse...
The underlying pathophysiology of type 1 diabetes involves autoimmune-mediated islet inflammation, l...
Type 1 diabetes (T1D) results from the destruction of pancreatic β-cells caused by an altered immune...
Type 1 diabetes (T1D) results from the destruction of pancreatic β-cells caused by an altered immune...
Type 1 diabetes (T1D) results from the destruction of pancreatic β-cells caused by an altered immune...
Type 1 diabetes (T1D) results from the destruction of pancreatic β-cells caused by an altered immune...
Type 1 diabetes (T1D) results from the T cell-mediated destruction of the insulin-producing -islets...
In the nonobese diabetic (NOD) mouse model of type 1 diabetes, the immune system recognizes many aut...
We have established a novel CD4 and CD8 double-positive CD251 T regulatory (Treg) clone, MT-5B, from...
We have established a novel CD4 and CD8 double-positive CD251 T regulatory (Treg) clone, MT-5B, from...
Type 1 diabetes (T1D) is an autoimmune disease in which a strong inflammatory response causes the de...
Type 1 diabetes (T1D) is an autoimmune disease in which a strong inflammatory response causes the de...
INTRODUCTION: Efferocytosis is a crucial process by which apoptotic cells are cleared by phagocytes,...
This work introduces and explores a novel model which incorporates Fetal Thymus Organ Culture (FTOC)...
Therapeutic options for treatment of type 1 diabetes (T1D) are still missing. New avenues for immune...
We have developed a transgenic mouse model of Type 1 Diabetes (T1D) in which human GAD65 is expresse...
The underlying pathophysiology of type 1 diabetes involves autoimmune-mediated islet inflammation, l...
Type 1 diabetes (T1D) results from the destruction of pancreatic β-cells caused by an altered immune...
Type 1 diabetes (T1D) results from the destruction of pancreatic β-cells caused by an altered immune...
Type 1 diabetes (T1D) results from the destruction of pancreatic β-cells caused by an altered immune...
Type 1 diabetes (T1D) results from the destruction of pancreatic β-cells caused by an altered immune...
Type 1 diabetes (T1D) results from the T cell-mediated destruction of the insulin-producing -islets...
In the nonobese diabetic (NOD) mouse model of type 1 diabetes, the immune system recognizes many aut...
We have established a novel CD4 and CD8 double-positive CD251 T regulatory (Treg) clone, MT-5B, from...
We have established a novel CD4 and CD8 double-positive CD251 T regulatory (Treg) clone, MT-5B, from...
Type 1 diabetes (T1D) is an autoimmune disease in which a strong inflammatory response causes the de...
Type 1 diabetes (T1D) is an autoimmune disease in which a strong inflammatory response causes the de...
INTRODUCTION: Efferocytosis is a crucial process by which apoptotic cells are cleared by phagocytes,...
This work introduces and explores a novel model which incorporates Fetal Thymus Organ Culture (FTOC)...