A Na,K-ATPase é responsável pela manutenção dos gradientes transmembranares de iões K+ e Na+. Porém, o papel fisiológico da Na,K-ATPase em célula β-pancreática não está esclarecido. Já foi sugerido que a glucose contribui para uma regulação da Na,K-ATPase nestas células, embora os efeitos não estejam esclarecidos e se desconheçam os mecanismos subjacentes ou a sua relevância fisiológica. Foi objectivo deste trabalho estudar a acção da glucose na regulação da actividade enzimática da Na,K-ATPase em célula β-pancreática, na presença e ausência de intolerância à glucose. Concluiu-se que, em controlos, a glucose induziu uma inibição da actividade da Na,K-ATPase e que a AMPK e a PKC parecem participar na cascata de sinais intracelulares subjace...
Glucose-induced insulin secretion by pancreatic beta-cells is generally schematized by a 'consensus ...
Pankreatische β-Zellen sezernieren das Hormon Insulin als Reaktion auf eine erhöhte postprandiale Gl...
ATP-sensitive K+ (KATP) channels are widely distributed in a variety of tissues and cell types. KATP...
Background and aims: Glucose (G) is the most important physiological insulin secretagogue. It is wid...
Glucose is the most important physiological insulin secretagogue. However, the mechanism of glucose-...
Background and aims: Na,K-ATPase is an integral membrane protein that maintains the gradients of Na+...
Na+,K+-ATPase is regulated by glucose in pancreatic ß-cells, a process that is altered in glucose im...
Background and aims: Na,K-ATPase is an integral membrane protein responsible for generating and main...
Introduction: Glucose is the most important physiological insulin secretagogue. However, the mechani...
It has been postulated that a decrease in Na,KATPase-mediated ion gradients may be a contributing me...
OBJECTIVE-AMP-activated protein kinase (AMPK) and the ATP-sensitive K(+) (K(ATP)) channel are metabo...
Na,K-ATPase is ubiquitously expressed in all eukaryotic cells where it acts as a regulator of Na+ an...
<p>A, Application of 1 nM BPA decreased K<sub>ATP</sub> channel activity in isolated human pancreati...
Impaired pancreatic duct secretion is frequently observed in insulin-dependent diabetes mellitus (ID...
The molecular mechanisms mediating acute regulation of insulin release by glucose are partially know...
Glucose-induced insulin secretion by pancreatic beta-cells is generally schematized by a 'consensus ...
Pankreatische β-Zellen sezernieren das Hormon Insulin als Reaktion auf eine erhöhte postprandiale Gl...
ATP-sensitive K+ (KATP) channels are widely distributed in a variety of tissues and cell types. KATP...
Background and aims: Glucose (G) is the most important physiological insulin secretagogue. It is wid...
Glucose is the most important physiological insulin secretagogue. However, the mechanism of glucose-...
Background and aims: Na,K-ATPase is an integral membrane protein that maintains the gradients of Na+...
Na+,K+-ATPase is regulated by glucose in pancreatic ß-cells, a process that is altered in glucose im...
Background and aims: Na,K-ATPase is an integral membrane protein responsible for generating and main...
Introduction: Glucose is the most important physiological insulin secretagogue. However, the mechani...
It has been postulated that a decrease in Na,KATPase-mediated ion gradients may be a contributing me...
OBJECTIVE-AMP-activated protein kinase (AMPK) and the ATP-sensitive K(+) (K(ATP)) channel are metabo...
Na,K-ATPase is ubiquitously expressed in all eukaryotic cells where it acts as a regulator of Na+ an...
<p>A, Application of 1 nM BPA decreased K<sub>ATP</sub> channel activity in isolated human pancreati...
Impaired pancreatic duct secretion is frequently observed in insulin-dependent diabetes mellitus (ID...
The molecular mechanisms mediating acute regulation of insulin release by glucose are partially know...
Glucose-induced insulin secretion by pancreatic beta-cells is generally schematized by a 'consensus ...
Pankreatische β-Zellen sezernieren das Hormon Insulin als Reaktion auf eine erhöhte postprandiale Gl...
ATP-sensitive K+ (KATP) channels are widely distributed in a variety of tissues and cell types. KATP...