SummaryIn type 1 diabetes, T cell-mediated death of pancreatic β cells produces insulin deficiency. However, what attracts or restricts broadly autoreactive lymphocyte pools to the pancreas remains unclear. We report that TRPV1+ pancreatic sensory neurons control islet inflammation and insulin resistance. Eliminating these neurons in diabetes-prone NOD mice prevents insulitis and diabetes, despite systemic persistence of pathogenic T cell pools. Insulin resistance and β cell stress of prediabetic NOD mice are prevented when TRPV1+ neurons are eliminated. TRPV1NOD, localized to the Idd4.1 diabetes-risk locus, is a hypofunctional mutant, mediating depressed neurogenic inflammation. Delivering the neuropeptide substance P by intra-arterial inj...
Insulin-dependent Type 1 diabetes (T1D) is a devastating autoimmune disease that destroys beta cells...
Insulin-dependent Type 1 diabetes (T1D) is a devastating autoimmune disease that destroys beta cells...
Ca2+-sensor proteins are generally implicated in insulin release through SNARE interactions. Here, s...
In type 1 diabetes, T cell-mediated death of pancreatic beta cells produces insulin deficiency. Howe...
Mrons in diabetes-prone NOD mice prevents insulitis and diabetes, despite systemic persis-tence of p...
Interactions between the immune system and the nervous system are currently underappreciated, assume...
The initial factors that trigger the autoimmune response against pancreatic islets in the nonobese d...
Pharmacological therapies in type 1 diabetes for efficient control of glycemia and changes in pain a...
T-cell responses to insulin and its precursor proinsulin are central to islet autoimmunity in humans...
There is emerging evidence to support an important role for the transient receptor potential vanillo...
Individuals with end-stage diabetic peripheral neuropathy present with decreased pain sensation. Tra...
In the non-obese diabetic (NOD) mouse, a spontaneous model of type 1 diabetes (T1D), recent evidence...
Autoimmune diabetes is a consequence of immune-cell infiltration and destruction of pancreatic β-cel...
We recently proposed that the transient receptor potential melastatin 5 (TRPM5) cation channel contr...
Emerging data indicate that central neurons participate in diabetic processes by modulating autonomi...
Insulin-dependent Type 1 diabetes (T1D) is a devastating autoimmune disease that destroys beta cells...
Insulin-dependent Type 1 diabetes (T1D) is a devastating autoimmune disease that destroys beta cells...
Ca2+-sensor proteins are generally implicated in insulin release through SNARE interactions. Here, s...
In type 1 diabetes, T cell-mediated death of pancreatic beta cells produces insulin deficiency. Howe...
Mrons in diabetes-prone NOD mice prevents insulitis and diabetes, despite systemic persis-tence of p...
Interactions between the immune system and the nervous system are currently underappreciated, assume...
The initial factors that trigger the autoimmune response against pancreatic islets in the nonobese d...
Pharmacological therapies in type 1 diabetes for efficient control of glycemia and changes in pain a...
T-cell responses to insulin and its precursor proinsulin are central to islet autoimmunity in humans...
There is emerging evidence to support an important role for the transient receptor potential vanillo...
Individuals with end-stage diabetic peripheral neuropathy present with decreased pain sensation. Tra...
In the non-obese diabetic (NOD) mouse, a spontaneous model of type 1 diabetes (T1D), recent evidence...
Autoimmune diabetes is a consequence of immune-cell infiltration and destruction of pancreatic β-cel...
We recently proposed that the transient receptor potential melastatin 5 (TRPM5) cation channel contr...
Emerging data indicate that central neurons participate in diabetic processes by modulating autonomi...
Insulin-dependent Type 1 diabetes (T1D) is a devastating autoimmune disease that destroys beta cells...
Insulin-dependent Type 1 diabetes (T1D) is a devastating autoimmune disease that destroys beta cells...
Ca2+-sensor proteins are generally implicated in insulin release through SNARE interactions. Here, s...