Objective: NRF2, a transcription factor that regulates cellular redox and metabolic homeostasis, plays a dual role in human disease. While it is well known that canonical intermittent NRF2 activation protects against diabetes-induced tissue damage, little is known regarding the effects of prolonged non-canonical NRF2 activation in diabetes. The goal of this study was to determine the role and mechanisms of prolonged NRF2 activation in arsenic diabetogenicity. Methods: To test this, we utilized an integrated transcriptomic and metabolomic approach to assess diabetogenic changes in the livers of wild type, Nrf2−/−, p62−/−, or Nrf2−/−; p62−/− mice exposed to arsenic in the drinking water for 20 weeks. Results: In contrast to canonical oxidativ...
The transcription factor NF-E2-related factor 2 (Nrf2) induces cytoprotective genes, but has also be...
During the progression of Type II diabetes hearts are under stress due to increases in oxidant produ...
During the progression of Type II diabetes hearts are under stress due to increases in oxidant produ...
Despite decades of scientific effort, diabetes continues to represent an incredibly complex and diff...
AbstractNrf2 appears to be a critical regulator of diabetes in rodents. However, the underlying mech...
Oxidative stress is a major component of cell damage and cell fat, and as such, it occupies a centra...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
AbstractNrf2 appears to be a critical regulator of diabetes in rodents. However, the underlying mech...
Activation of the transcription factor Nrf2 (nuclear factor-erythroid 2-related factor 2) is one of ...
Oxidative stress and inflammation are two well-recognized events occurring in normal cells during ca...
The transcription factor NF-E2-related factor 2 (Nrf2) induces cytoprotective genes, but has also be...
During the progression of Type II diabetes hearts are under stress due to increases in oxidant produ...
During the progression of Type II diabetes hearts are under stress due to increases in oxidant produ...
Despite decades of scientific effort, diabetes continues to represent an incredibly complex and diff...
AbstractNrf2 appears to be a critical regulator of diabetes in rodents. However, the underlying mech...
Oxidative stress is a major component of cell damage and cell fat, and as such, it occupies a centra...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
Aim: Accumulation of reactive oxygen species (i.e., oxidative stress) is a leading cause of beta cel...
AbstractNrf2 appears to be a critical regulator of diabetes in rodents. However, the underlying mech...
Activation of the transcription factor Nrf2 (nuclear factor-erythroid 2-related factor 2) is one of ...
Oxidative stress and inflammation are two well-recognized events occurring in normal cells during ca...
The transcription factor NF-E2-related factor 2 (Nrf2) induces cytoprotective genes, but has also be...
During the progression of Type II diabetes hearts are under stress due to increases in oxidant produ...
During the progression of Type II diabetes hearts are under stress due to increases in oxidant produ...