Brown adipose tissue (BAT) iodothyronine 5'-deiodinase (5'-D) activities are very high during fetal life but decrease 10-fold a few hours before birth. Accordingly, BAT 3,5,3'-triiodothyronine (T3) concentrations are also very high. The temporal patterns of changes in BAT 5'-D and fetal plasma insulin are similar (and differ from the pattern for catecholamines) but are not superimposable. A causal role for insulin in the activation of fetal BAT 5'-D is therefore not supported by the data. Maternal thyroidectomy leads to a decrease in the total and relative weight of fetal BAT and to a 30-50% increase in BAT 5'-D activities; BAT thyroid hormone concentrations are essentially unchanged. Fetal hypothyroidism was induced by giving methimazole a...
Background: Development of adipose tissue before birth is essential for energy storage and thermoreg...
3,5-diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
5 pages, 2 tables, 1 figure.Brown adipose tissue iodothyronine 5'-deiodinase activity is significant...
The development of fetal thyroid function is dependent on the embryogenesis, differentiation and mat...
Thyroid hormone (TH) plays a key role on post-natal bone development and metabolism, while its relev...
Thyroid hormones significantly influence energy expenditure by affecting the activity of metabolic a...
Abstract. To elucidate the regulatory mecha-nism of ontogenetic development of iodothyronine-5'...
We have studied the changes in thyroid hormone economy that occur in normal pregnant rats between 17...
Thyroid hormones significantly influence energy expenditure by affecting the activity of metabolic a...
Maintenance of normal maternal thyroxinemia prevents severe triiodothyronine (T3) deficiency of the ...
Thyroid hormones are important regulators of fetal growth, although their mechanism of action remain...
The influence of hypothalamic and pituitary type II 5′ deiodinase (5′D-II) activities and T3 content...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
textabstractNormal fetal development requires the presence of thyroid hormone. Disruption of any of ...
Background: Development of adipose tissue before birth is essential for energy storage and thermoreg...
3,5-diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
5 pages, 2 tables, 1 figure.Brown adipose tissue iodothyronine 5'-deiodinase activity is significant...
The development of fetal thyroid function is dependent on the embryogenesis, differentiation and mat...
Thyroid hormone (TH) plays a key role on post-natal bone development and metabolism, while its relev...
Thyroid hormones significantly influence energy expenditure by affecting the activity of metabolic a...
Abstract. To elucidate the regulatory mecha-nism of ontogenetic development of iodothyronine-5'...
We have studied the changes in thyroid hormone economy that occur in normal pregnant rats between 17...
Thyroid hormones significantly influence energy expenditure by affecting the activity of metabolic a...
Maintenance of normal maternal thyroxinemia prevents severe triiodothyronine (T3) deficiency of the ...
Thyroid hormones are important regulators of fetal growth, although their mechanism of action remain...
The influence of hypothalamic and pituitary type II 5′ deiodinase (5′D-II) activities and T3 content...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
textabstractNormal fetal development requires the presence of thyroid hormone. Disruption of any of ...
Background: Development of adipose tissue before birth is essential for energy storage and thermoreg...
3,5-diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...
3,5-Diiodo-l-thyronine (T2), a thyroid hormone derivative, is capable of increasing energy expenditu...