In pancreatic β cells, mitochondria play a central role in coupling glucose metabolism to insulin exocytosis, thereby ensuring strict control of glucose-stimulated insulin secretion. Defects in mitochondrial function impair this metabolic coupling, and ultimately promote apoptosis and β cell death. Various factors have been identified that may contribute to mitochondrial dysfunction. In this review we address the emerging concept of complex links between these factors. We also discuss the role of the mitochondrial genome and mutations associated with diabetes, the effect of oxidative stress and reactive oxygen species, the sensitivity of mitochondria to lipotoxicity, and the adaptive dynamics of mitochondrial morphology. Better comprehensio...
Diabetes is caused by a combination of impaired responsiveness to insulin and reduced production of ...
Mutations of mitochondrial DNA cause a variety of clinical syndromes. It is unclear whether impaired...
Background: The recent genome-wide association studies (GWAS) of Type 2 Diabetes (T2D) have identifi...
The oversupply of calories and sedentary lifestyle has resulted in a rapid increase of diabetes prev...
Mitochondrial metabolism controls insulin secretion from the pancreatic beta-cell. Type 2 Diabetes e...
Pancreatic beta-cells are poised to sense glucose and other nutrient secretagogues to regulate insul...
Mitochondrial metabolism is a major determinant of insulin secretion from pancreatic β-cells. Type 2...
Diabetes is a chronic metabolic disorder characterized by inappropriately elevated glucose levels as...
A growing body of evidence has demonstrated a link between various disturbances in mitochondrial fun...
Mitochondria play a key role in energy metabolism and ATP production in many tissues, including ske...
Insulin resistance is characterized by hyperglycaemia, dyslipidaemia and oxidative stress prior to t...
Obesity, insulin resistance and type 2 diabetes are accompanied by a variety of systemic and tissue-...
Hyperglycemia resulting from uncontrolled glucose regulation is widely recognized as the causal link...
Mitochondrial dysfunction in skeletal muscle has been suggested to underlie the development of insul...
Abstract Metabolic diseases such as obesity, type 2 diabetes (T2D) and insulin resistance have attra...
Diabetes is caused by a combination of impaired responsiveness to insulin and reduced production of ...
Mutations of mitochondrial DNA cause a variety of clinical syndromes. It is unclear whether impaired...
Background: The recent genome-wide association studies (GWAS) of Type 2 Diabetes (T2D) have identifi...
The oversupply of calories and sedentary lifestyle has resulted in a rapid increase of diabetes prev...
Mitochondrial metabolism controls insulin secretion from the pancreatic beta-cell. Type 2 Diabetes e...
Pancreatic beta-cells are poised to sense glucose and other nutrient secretagogues to regulate insul...
Mitochondrial metabolism is a major determinant of insulin secretion from pancreatic β-cells. Type 2...
Diabetes is a chronic metabolic disorder characterized by inappropriately elevated glucose levels as...
A growing body of evidence has demonstrated a link between various disturbances in mitochondrial fun...
Mitochondria play a key role in energy metabolism and ATP production in many tissues, including ske...
Insulin resistance is characterized by hyperglycaemia, dyslipidaemia and oxidative stress prior to t...
Obesity, insulin resistance and type 2 diabetes are accompanied by a variety of systemic and tissue-...
Hyperglycemia resulting from uncontrolled glucose regulation is widely recognized as the causal link...
Mitochondrial dysfunction in skeletal muscle has been suggested to underlie the development of insul...
Abstract Metabolic diseases such as obesity, type 2 diabetes (T2D) and insulin resistance have attra...
Diabetes is caused by a combination of impaired responsiveness to insulin and reduced production of ...
Mutations of mitochondrial DNA cause a variety of clinical syndromes. It is unclear whether impaired...
Background: The recent genome-wide association studies (GWAS) of Type 2 Diabetes (T2D) have identifi...