Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial functions, i. e., morphogenesis machinery and metabolic sensor proteins, produce metabolic inflexibility, insulin resistance and reduced oxidative capacity in skeletal muscle. Moreover, intramyocellular lipid (IMCL) accumulation leads to tissue damage and inflammation. The administration of the naturally occurring metabolite 3,5-diiodo-L-thyronine (T2) with thyromimetic actions to high fat diet (HFD)-fed rats exerts a systemic hypolipidemic effect, which produces a lack of IMCL accumulation, a shift toward glycolytic fibers and amelioration of insulin sensitivity in gastrocnemius muscle. In this study, an integrated approach combining large-sca...
Iodothyronines such as triiodothyronine (T3) and 3,5-diiodothyronine (T2) influence energy expenditu...
Iodothyronines such as triiodothyronine (T-3) and 3,5-diiodothyronine (T-2) influence energy expendi...
Triiodothyronine regulates energy metabolism and thermogenesis. Among triiodothyronine derivatives, ...
Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial fu...
Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial fu...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
The worldwide prevalence of obesity-associated pathologies, including type 2 diabetes, requires thor...
The worldwide prevalence of obesity-associated pathologies, including type 2 diabetes, requires thor...
Iodothyronines such as triiodothyronine (T3) and 3,5-diiodothyronine (T2) influence energy expenditu...
Iodothyronines such as triiodothyronine (T-3) and 3,5-diiodothyronine (T-2) influence energy expendi...
Triiodothyronine regulates energy metabolism and thermogenesis. Among triiodothyronine derivatives, ...
Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial fu...
Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial fu...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
<p>Hyperlipidemic state-associated perturbations in the network of factors controlling mitochondrial...
The worldwide prevalence of obesity-associated pathologies, including type 2 diabetes, requires thor...
The worldwide prevalence of obesity-associated pathologies, including type 2 diabetes, requires thor...
Iodothyronines such as triiodothyronine (T3) and 3,5-diiodothyronine (T2) influence energy expenditu...
Iodothyronines such as triiodothyronine (T-3) and 3,5-diiodothyronine (T-2) influence energy expendi...
Triiodothyronine regulates energy metabolism and thermogenesis. Among triiodothyronine derivatives, ...