Due to intrinsically low levels of antioxidant enzyme expression and activity, insulin producing pancreatic β-cells are particularly susceptible to free radical attack. In diabetes mellitus, which is accompanied by high levels of oxidative stress, this feature of β-cells significantly contributes to their damage and dysfunction. In light of the documented pro-survival effect of chemokine C-X-C Ligand 12 (CXCL12) on pancreatic β-cells, we examined its potential role in antioxidant protection. We report that CXCL12 overexpression enhanced the resistance of rat insulinoma (Rin-5F) and primary pancreatic islet cells to hydrogen peroxide (H2O2). CXCL12 lowered the levels of DNA damage and lipid peroxidation and preserved insulin expression. This...
Growing evidence indicates that oxidative stress (OS), a persistent state of excess amounts of react...
Despite significant progress, the molecular mechanisms responsible for pancreatic beta cell depletio...
Type 1 diabetes mellitus is characterized by a progressive autoimmune destruction of insulin-produci...
We examined whether CXCL12α improves insulin secretion by influencing the Ca2+ oscillation pattern a...
The diabetes prevention paradigm envisages the application of strategies that support the maintenanc...
The diabetes prevention paradigm envisages the application of strategies that support the maintenanc...
Diabetes is characterized by a deficit in the number of functional pancreatic β-cells. Understanding...
AbstractPancreatic β-cell function continuously deteriorates in type 2 diabetes despite optimal trea...
Oxidative stress is implicated in the pathogenesis of pancreatic β-cell dysfunction that occurs in b...
Background and aims: The CXC chemokine ligand 12 (CXCL12/SDF-1) promotes the expressi...
Diabetes is a chronic metabolic disorder characterized by inappropriately elevated glucose levels as...
The dysfunction of pancreatic β-cells plays a central role in the onset and progression of type 2 di...
International audienceDuring embryogenesis, the intrauterine milieu affects cell proliferation, diff...
Pancreatic islets are known to contain low level of antioxidants that renders them vulnerable to oxi...
Growing evidence indicates that the regulation of intracellular reactive oxygen species (ROS) and re...
Growing evidence indicates that oxidative stress (OS), a persistent state of excess amounts of react...
Despite significant progress, the molecular mechanisms responsible for pancreatic beta cell depletio...
Type 1 diabetes mellitus is characterized by a progressive autoimmune destruction of insulin-produci...
We examined whether CXCL12α improves insulin secretion by influencing the Ca2+ oscillation pattern a...
The diabetes prevention paradigm envisages the application of strategies that support the maintenanc...
The diabetes prevention paradigm envisages the application of strategies that support the maintenanc...
Diabetes is characterized by a deficit in the number of functional pancreatic β-cells. Understanding...
AbstractPancreatic β-cell function continuously deteriorates in type 2 diabetes despite optimal trea...
Oxidative stress is implicated in the pathogenesis of pancreatic β-cell dysfunction that occurs in b...
Background and aims: The CXC chemokine ligand 12 (CXCL12/SDF-1) promotes the expressi...
Diabetes is a chronic metabolic disorder characterized by inappropriately elevated glucose levels as...
The dysfunction of pancreatic β-cells plays a central role in the onset and progression of type 2 di...
International audienceDuring embryogenesis, the intrauterine milieu affects cell proliferation, diff...
Pancreatic islets are known to contain low level of antioxidants that renders them vulnerable to oxi...
Growing evidence indicates that the regulation of intracellular reactive oxygen species (ROS) and re...
Growing evidence indicates that oxidative stress (OS), a persistent state of excess amounts of react...
Despite significant progress, the molecular mechanisms responsible for pancreatic beta cell depletio...
Type 1 diabetes mellitus is characterized by a progressive autoimmune destruction of insulin-produci...