β-Cell nutrient sensing depends on mitochondrial function. Oxidation of nutrient-derived metabolites in the mitochondria leads to plasma membrane depolarization, Ca(2+) influx and insulin granule exocytosis. Subsequent mitochondrial Ca(2+) uptake further accelerates metabolism and oxidative phosphorylation. Nutrient activation also increases the mitochondrial matrix pH. This alkalinization is required to maintain elevated insulin secretion during prolonged nutrient stimulation. Together the mitochondrial Ca(2+) rise and matrix alkalinization assure optimal ATP synthesis necessary for efficient activation of the triggering pathway of insulin secretion. The sustained, amplifying pathway of insulin release also depends on mitochondrial Ca(2+) ...
Nutrient-stimulated insulin secretion is dependent upon the generation of metabolic coupling factors...
Glucose-evoked mitochondrial signals augment ATP synthesis in the pancreatic β cell. This activation...
Mitochondrial Ca(2+) signals have been proposed to accelerate oxidative metabolism and ATP productio...
In the endocrine fraction of the pancreas, the task of the beta-cell is to continuously and perfectl...
In the endocrine fraction of the pancreas, the β-cell rapidly reacts to fluctuations in blood glucos...
In the endocrine fraction of the pancreas, the β-cell rapidly reacts to fluctuations in blood glucos...
Glucose-stimulated insulin release from pancreatic beta cells involves a complex series of signallin...
Les cellules β pancréatiques synthétisent l'insuline et sécrètent cette hormone en réponse à des séc...
The pancreatic beta-cell transduces the availability of nutrients into the secretion of insulin. Whi...
The pancreatic beta-cell transduces the availability of nutrients into the secretion of insulin. Whi...
Nutrient-stimulated insulin secretion is dependent upon the generation of metabolic coupling factors...
The control of insulin secretion from the pancreatic beta-cell involves a complex cascade of events ...
Pancreatic beta cells are specialised endocrine cells that continuously sense the levels of blood su...
Nutrient-stimulated insulin secretion is dependent upon the generation of metabolic coupling factors...
Pancreatic ß-cells are exquisitely organised to continually monitor and respond to dietary nutrients...
Nutrient-stimulated insulin secretion is dependent upon the generation of metabolic coupling factors...
Glucose-evoked mitochondrial signals augment ATP synthesis in the pancreatic β cell. This activation...
Mitochondrial Ca(2+) signals have been proposed to accelerate oxidative metabolism and ATP productio...
In the endocrine fraction of the pancreas, the task of the beta-cell is to continuously and perfectl...
In the endocrine fraction of the pancreas, the β-cell rapidly reacts to fluctuations in blood glucos...
In the endocrine fraction of the pancreas, the β-cell rapidly reacts to fluctuations in blood glucos...
Glucose-stimulated insulin release from pancreatic beta cells involves a complex series of signallin...
Les cellules β pancréatiques synthétisent l'insuline et sécrètent cette hormone en réponse à des séc...
The pancreatic beta-cell transduces the availability of nutrients into the secretion of insulin. Whi...
The pancreatic beta-cell transduces the availability of nutrients into the secretion of insulin. Whi...
Nutrient-stimulated insulin secretion is dependent upon the generation of metabolic coupling factors...
The control of insulin secretion from the pancreatic beta-cell involves a complex cascade of events ...
Pancreatic beta cells are specialised endocrine cells that continuously sense the levels of blood su...
Nutrient-stimulated insulin secretion is dependent upon the generation of metabolic coupling factors...
Pancreatic ß-cells are exquisitely organised to continually monitor and respond to dietary nutrients...
Nutrient-stimulated insulin secretion is dependent upon the generation of metabolic coupling factors...
Glucose-evoked mitochondrial signals augment ATP synthesis in the pancreatic β cell. This activation...
Mitochondrial Ca(2+) signals have been proposed to accelerate oxidative metabolism and ATP productio...