Although insulin mediated glucose uptake in skeletal muscle is a major mechanism ensuring glucose disposal in humans, glucose effectiveness, i.e., the ability of glucose itself to stimulate its own uptake independent of insulin, accounts for roughly half of the glucose disposed during an oral glucose tolerance test. Both insulin dependent and insulin independent skeletal muscle glucose uptake are however reduced in individuals with diabetes. We here show that AMPK activator O304 stimulates insulin independent glucose uptake and utilization in skeletal muscle and heart in vivo, while preventing glycogen accumulation. Combined glucose uptake and utilization requires an increased metabolic demand and we show that O304 acts as a mitochondrial u...
<div><p>Modulation of mitochondrial function through inhibiting respiratory complex I activates a ke...
GLUT4 is the principal insulin-responsive glucose transporter in skeletal muscle. Insulin stimulatio...
Diabetic hearts are known to be more susceptible to ischemic disease. Biguanides, like metformin, ar...
Although insulin mediated glucose uptake in skeletal muscle is a major mechanism ensuring glucose di...
Reduced glucose transport in skeletal muscle is a hallmark feature of Type II diabetes. Numerous mec...
Aims/hypothesis We determined whether: (1) an acute lipid infusion impairs skeletal muscle AMP-acti...
Aims/hypothesis We determined whether: (1) an acute lipid infusion impairs skeletal muscle AMP-acti...
Objective: Skeletal muscle AMP-activated protein kinase (AMPK) is important for regulating glucose h...
OBJECTIVE: Skeletal muscle AMP-activated protein kinase (AMPK) is important for regulating glucose h...
Aims/hypothesis We determined whether: (1) an acute lipid infusion impairs skeletal muscle AMP-acti...
Objective: Skeletal muscle AMP-activated protein kinase (AMPK) is important for regulating glucose h...
Improving mitochondrial oxidant scavenging may be a viable strategy for the treatment of insulin res...
AMP-activated protein kinase (AMPK) has an important role in cellular energy homeostasis and has eme...
AMP-activated protein kinase (AMPK) has an important role in cellular energy homeostasis and has eme...
GLUT4 is the principal insulin-responsive glucose transporter in skeletal muscle. Insulin stimulatio...
<div><p>Modulation of mitochondrial function through inhibiting respiratory complex I activates a ke...
GLUT4 is the principal insulin-responsive glucose transporter in skeletal muscle. Insulin stimulatio...
Diabetic hearts are known to be more susceptible to ischemic disease. Biguanides, like metformin, ar...
Although insulin mediated glucose uptake in skeletal muscle is a major mechanism ensuring glucose di...
Reduced glucose transport in skeletal muscle is a hallmark feature of Type II diabetes. Numerous mec...
Aims/hypothesis We determined whether: (1) an acute lipid infusion impairs skeletal muscle AMP-acti...
Aims/hypothesis We determined whether: (1) an acute lipid infusion impairs skeletal muscle AMP-acti...
Objective: Skeletal muscle AMP-activated protein kinase (AMPK) is important for regulating glucose h...
OBJECTIVE: Skeletal muscle AMP-activated protein kinase (AMPK) is important for regulating glucose h...
Aims/hypothesis We determined whether: (1) an acute lipid infusion impairs skeletal muscle AMP-acti...
Objective: Skeletal muscle AMP-activated protein kinase (AMPK) is important for regulating glucose h...
Improving mitochondrial oxidant scavenging may be a viable strategy for the treatment of insulin res...
AMP-activated protein kinase (AMPK) has an important role in cellular energy homeostasis and has eme...
AMP-activated protein kinase (AMPK) has an important role in cellular energy homeostasis and has eme...
GLUT4 is the principal insulin-responsive glucose transporter in skeletal muscle. Insulin stimulatio...
<div><p>Modulation of mitochondrial function through inhibiting respiratory complex I activates a ke...
GLUT4 is the principal insulin-responsive glucose transporter in skeletal muscle. Insulin stimulatio...
Diabetic hearts are known to be more susceptible to ischemic disease. Biguanides, like metformin, ar...