BACKGROUND & AIMS: Thyroid hormones elicit many cellular and metabolic effects in various organs. Most of these actions, including mitogenesis, are mediated by the thyroid hormone 3,5,3'-triiodo-l-thyronine (T3) nuclear receptors (TRs). They are transcription factors, expressed as different isoforms encoded by the TRalpha and TRbeta genes. Here, experiments were performed to determine whether (i) T3-induces hepatocyte proliferation in mouse liver and pancreas, and, (ii) which TR isoform, is responsible for its mitogenic effect. METHODS: Cell proliferation was measured by bromodeoxyuridine (BrdU) incorporation after T3 or the TRbeta agonist GC-1 in liver and pancreas of CD-1, C57BL, or TRalpha(0/0) mice. Cell cycle-associated proteins wer...
Thyroid hormones T3 and T4 (thyroxine) control a wide variety of effects related to development, di...
Background & Aims: Only limited therapeutic options are currently available for hepatocellular carci...
Proliferation of pancreatic acinar cells is a critical process in the pathophysiology of pancreatic ...
BACKGROUND & AIMS: Thyroid hormones elicit many cellular and metabolic effects in various organs. Mo...
Thyroid hormone has a profound impact on mammalian metabolism; hypothyroidism causes decreased metab...
Thyroid hormones regulate cell growth, cell differentiation, and metabolic functions via interaction...
The thyroid hormone (T3) affects cell growth, differentiation, and regulates metabolic functions via...
The thyroid hormone (T3) affects cell growth, differentiation, and regulates metabolic functions via...
Thyroid hormone is known to elicit diverse cellular and metabolic effects in various organs, includi...
Triiodothyronine (T3) induces hepatocyte proliferation in rodents. Recent work has shown molecular m...
Abstract Thyroid hormone (T3), like many other ligands of the steroid/thyroid hormone nuclear recep...
BACKGROUND: The role of thyroid hormones and their receptors (TR) during liver regeneration after pa...
Thyroid hormones T3 and T4 (thyroxine) control a wide variety of effects related to development, di...
Background & Aims: Only limited therapeutic options are currently available for hepatocellular carci...
Proliferation of pancreatic acinar cells is a critical process in the pathophysiology of pancreatic ...
BACKGROUND & AIMS: Thyroid hormones elicit many cellular and metabolic effects in various organs. Mo...
Thyroid hormone has a profound impact on mammalian metabolism; hypothyroidism causes decreased metab...
Thyroid hormones regulate cell growth, cell differentiation, and metabolic functions via interaction...
The thyroid hormone (T3) affects cell growth, differentiation, and regulates metabolic functions via...
The thyroid hormone (T3) affects cell growth, differentiation, and regulates metabolic functions via...
Thyroid hormone is known to elicit diverse cellular and metabolic effects in various organs, includi...
Triiodothyronine (T3) induces hepatocyte proliferation in rodents. Recent work has shown molecular m...
Abstract Thyroid hormone (T3), like many other ligands of the steroid/thyroid hormone nuclear recep...
BACKGROUND: The role of thyroid hormones and their receptors (TR) during liver regeneration after pa...
Thyroid hormones T3 and T4 (thyroxine) control a wide variety of effects related to development, di...
Background & Aims: Only limited therapeutic options are currently available for hepatocellular carci...
Proliferation of pancreatic acinar cells is a critical process in the pathophysiology of pancreatic ...