Thyroid hormones (T3 and T4) regulate bone development, growth, and turnover. Studies have suggested that different skeletal sites respond differently to thyroid hormones. Therefore, we examined the in vitro T3 responsiveness of cells committed to the osteoblast lineage as a function of skeletal location. Bone marrow cells derived from female rat femurs and vertebrae were cultured using conditions that induce osteogenic differentiation. Cells from both sites formed mineralized bone nodules in primary and secondary culture. In femoral cultures, collagen type I (coll I) and osteocalcin (OC) messenger RNA (mRNA) levels increased from the earliest time point examined (day 3) to a maximum on day 12 and thereafter declined to undetectable levels....
Background: The aim of the present study was to evaluate, by histometric analysis, the influence of ...
AbstractThe skeleton is a dynamic organ whose structural integrity depends on constant remodeling, c...
Thyroid hormone (TH) plays a key role on post-natal bone development and metabolism, while its relev...
AbstractThyroid hormones are known to affect skeletal growth and maturation by influencing both bone...
Insulin-like growth factor (IGF)-I is an important regulator of bone metabolism. Clinical observatio...
Thyroid hormones increase bone turnover in vivo and stimulate bone resorption in vitro. Clinical sta...
Previous studies showed anabolic effects of GC-1, a triiodothyronine (T3) analogue that is selective...
(Correspondence should be addressed to E F Eriksen) The profound effects of thyroid hormones on bone...
Skeletal integrity requires continuous bone remodelling by osteoblasts and osteoclasts, and thyroid ...
The incidence of craniosynostosis is one in every 1,800–2500 births. The gene-environment model prop...
AbstractThyroid hormones (T3,T4) have a broad range of effects on bone, however, its role in determi...
Analysis of mice harbouring deletions or mutations of thyroid hormone receptor α (TRα) and β (TRβ) h...
The importance of functional thyroid abnormalities can hardly be overstated as they affect over 5% o...
Osteoblasts, which are derived from pluripotent mesenchymal stem cells (MSCs), play an important rol...
Thyroid hormones exert a profound effect on development, growth, and metabolism of skeleton. In the ...
Background: The aim of the present study was to evaluate, by histometric analysis, the influence of ...
AbstractThe skeleton is a dynamic organ whose structural integrity depends on constant remodeling, c...
Thyroid hormone (TH) plays a key role on post-natal bone development and metabolism, while its relev...
AbstractThyroid hormones are known to affect skeletal growth and maturation by influencing both bone...
Insulin-like growth factor (IGF)-I is an important regulator of bone metabolism. Clinical observatio...
Thyroid hormones increase bone turnover in vivo and stimulate bone resorption in vitro. Clinical sta...
Previous studies showed anabolic effects of GC-1, a triiodothyronine (T3) analogue that is selective...
(Correspondence should be addressed to E F Eriksen) The profound effects of thyroid hormones on bone...
Skeletal integrity requires continuous bone remodelling by osteoblasts and osteoclasts, and thyroid ...
The incidence of craniosynostosis is one in every 1,800–2500 births. The gene-environment model prop...
AbstractThyroid hormones (T3,T4) have a broad range of effects on bone, however, its role in determi...
Analysis of mice harbouring deletions or mutations of thyroid hormone receptor α (TRα) and β (TRβ) h...
The importance of functional thyroid abnormalities can hardly be overstated as they affect over 5% o...
Osteoblasts, which are derived from pluripotent mesenchymal stem cells (MSCs), play an important rol...
Thyroid hormones exert a profound effect on development, growth, and metabolism of skeleton. In the ...
Background: The aim of the present study was to evaluate, by histometric analysis, the influence of ...
AbstractThe skeleton is a dynamic organ whose structural integrity depends on constant remodeling, c...
Thyroid hormone (TH) plays a key role on post-natal bone development and metabolism, while its relev...