AbstractNrf2 appears to be a critical regulator of diabetes in rodents. However, the underlying mechanisms as well as the clinical relevance of the Nrf2 signaling in human diabetes remain to be fully understood. Herein, we report that islet expression of Nrf2 is upregulated at an earlier stage of diabetes in both human and mice. Activation of Nrf2 suppresses oxidative stress and oxidative stress-induced β-cell apoptosis while enhancing autophagic clearance in isolated rat islets. Additionally, oxidative stress per se activated autophagy in β-cells. Thus, these results reveal that Nrf2 drives a novel antioxidant independent autophagic clearance for β-cell protection in the setting of diabetes
AbstractThe Nuclear factor-2 erythroid related factor-2 (Nrf2) is a redox regulated transcription fa...
Aims/hypothesisAlthough much is known about the pathophysiological processes contributing to diabeti...
Diabetic hearts are susceptible to damage from inappropriate activation of the renin angiotensin sys...
AbstractNrf2 appears to be a critical regulator of diabetes in rodents. However, the underlying mech...
Interactive relationships between metabolism, inflammation, oxidative stress, and autophagy in the v...
Oxidative stress is implicated in the pathogenesis of pancreatic β-cell dysfunction that occurs in b...
Despite decades of scientific effort, diabetes continues to represent an incredibly complex and diff...
BACKGROUND: Increasing free radicals and oxidative stress due to chronic hyperglycemia in type-2 dia...
BACKGROUND: Increasing free radicals and oxidative stress due to chronic hyperglycemia in type-2 dia...
Oxidative stress and inflammation are two well-recognized events occurring in normal cells during ca...
High glucose-induced oxidative stress is a major contributing mechanism to the development of diabet...
Objective: NRF2, a transcription factor that regulates cellular redox and metabolic homeostasis, pla...
Nuclear factor-erythroid 2-related factor 2 (Nrf2) has been reported as a major intracellular regula...
BackgroundPancreatic islets are known to contain low level of antioxidants that renders them vulnera...
Pancreatic islets are known to contain low level of antioxidants that renders them vulnerable to oxi...
AbstractThe Nuclear factor-2 erythroid related factor-2 (Nrf2) is a redox regulated transcription fa...
Aims/hypothesisAlthough much is known about the pathophysiological processes contributing to diabeti...
Diabetic hearts are susceptible to damage from inappropriate activation of the renin angiotensin sys...
AbstractNrf2 appears to be a critical regulator of diabetes in rodents. However, the underlying mech...
Interactive relationships between metabolism, inflammation, oxidative stress, and autophagy in the v...
Oxidative stress is implicated in the pathogenesis of pancreatic β-cell dysfunction that occurs in b...
Despite decades of scientific effort, diabetes continues to represent an incredibly complex and diff...
BACKGROUND: Increasing free radicals and oxidative stress due to chronic hyperglycemia in type-2 dia...
BACKGROUND: Increasing free radicals and oxidative stress due to chronic hyperglycemia in type-2 dia...
Oxidative stress and inflammation are two well-recognized events occurring in normal cells during ca...
High glucose-induced oxidative stress is a major contributing mechanism to the development of diabet...
Objective: NRF2, a transcription factor that regulates cellular redox and metabolic homeostasis, pla...
Nuclear factor-erythroid 2-related factor 2 (Nrf2) has been reported as a major intracellular regula...
BackgroundPancreatic islets are known to contain low level of antioxidants that renders them vulnera...
Pancreatic islets are known to contain low level of antioxidants that renders them vulnerable to oxi...
AbstractThe Nuclear factor-2 erythroid related factor-2 (Nrf2) is a redox regulated transcription fa...
Aims/hypothesisAlthough much is known about the pathophysiological processes contributing to diabeti...
Diabetic hearts are susceptible to damage from inappropriate activation of the renin angiotensin sys...