We investigated whether swim training modifies the effects of tri-iodothyronine (T3) treatment on the metabolic response and oxidative damage of rat liver. Respiratory capacities, oxidative damage, levels of antioxidants, and susceptibility to oxidative challenge of liver homogenates were determined. Mitochondrial respiratory capacities, rates of H2O2 release, and oxidative damage were also evaluated. Training modified most of the measured parameters in both thyroid states, although the extent of changes was higher in hyperthyroid preparations. T3 treatment enhanced homogenate respiratory capacity, which was further enhanced by training despite the decrease in mitochondrial respiratory capacity. Hormonal treatment also induced liver oxidati...
The effect of thyroid hormone treatment on hepatic microsomal functions related to NADPH-dependent e...
In this paper we report that three different rat liver mitochondrial fractions, differing in density...
Thyronamines T(0)AM and T(1)AM are naturally occurring decarboxylated thyroid hormone derivatives. T...
We investigated whether swim training modifies the effects of tri-iodothyronine (T3) treatment on th...
treatment differently affects liver metabolic de Se apo mitochondrial respiratory capacity. Hormonal...
We investigated whether swim training modifies the effect of T3-induced hyperthyroidism on metabolis...
AbstractIn the present study the effect of thyroid hormone (T3) on oxidative stress parameters of mi...
Chemiluminescent and respiratory responses were studied in the liver of rats treated with 0.1 mg of ...
Thyroid hormone-induced increase in metabolic rates is often associated with increased oxidative str...
To investigate the iodothyronine role in liver responses to cold, we examined metabolic and oxidativ...
We report that 3,5,3'-triiodothyronine (T3) as well as two other iodothyronines (3,3′-diiodothyronin...
In the present study we report that 3,3',5-tri-iodothyronine (T3) as well as two iodothyronines (3,5...
BACKGROUND/AIMS: Both 3,5-diiodo-L-thyronine (3,5-T2) and 3,5,3'-triiodo-L-tyronine (T3) affect ene...
Hyperthyroidism enhances the prooxidant activity of the liver by elevating superoxide radical and/or...
The effect of thyroid hormone treatment on hepatic microsomal functions related to NADPH-dependent e...
In this paper we report that three different rat liver mitochondrial fractions, differing in density...
Thyronamines T(0)AM and T(1)AM are naturally occurring decarboxylated thyroid hormone derivatives. T...
We investigated whether swim training modifies the effects of tri-iodothyronine (T3) treatment on th...
treatment differently affects liver metabolic de Se apo mitochondrial respiratory capacity. Hormonal...
We investigated whether swim training modifies the effect of T3-induced hyperthyroidism on metabolis...
AbstractIn the present study the effect of thyroid hormone (T3) on oxidative stress parameters of mi...
Chemiluminescent and respiratory responses were studied in the liver of rats treated with 0.1 mg of ...
Thyroid hormone-induced increase in metabolic rates is often associated with increased oxidative str...
To investigate the iodothyronine role in liver responses to cold, we examined metabolic and oxidativ...
We report that 3,5,3'-triiodothyronine (T3) as well as two other iodothyronines (3,3′-diiodothyronin...
In the present study we report that 3,3',5-tri-iodothyronine (T3) as well as two iodothyronines (3,5...
BACKGROUND/AIMS: Both 3,5-diiodo-L-thyronine (3,5-T2) and 3,5,3'-triiodo-L-tyronine (T3) affect ene...
Hyperthyroidism enhances the prooxidant activity of the liver by elevating superoxide radical and/or...
The effect of thyroid hormone treatment on hepatic microsomal functions related to NADPH-dependent e...
In this paper we report that three different rat liver mitochondrial fractions, differing in density...
Thyronamines T(0)AM and T(1)AM are naturally occurring decarboxylated thyroid hormone derivatives. T...