AbstractThyroid hormone (T3) influences cell proliferation, death and differentiation during development of the central nervous system (CNS). Hormone action is mediated by T3 receptors (TR) of which there are two subtypes, TRα and TRβ. Specific roles for TR subtypes in CNS development are poorly understood. We analyzed involvement of TRα and TRβ in neural cell proliferation during metamorphosis of Xenopus laevis. Cell proliferation in the ventricular/subventricular neurogenic zones of the tadpole brain increased dramatically during metamorphosis. This increase was dependent on T3 until mid-prometamorphosis, after which cell proliferation decreased and became refractory to T3. Using double labeling fluorescent histochemistry with confocal mi...
During metamorphosis, the tadpole neuroendocrine brain is a major target for the organisational effe...
Background: INhibitor of Growth (ING) proteins belong to a large family of plant homeodomain finger-...
SummaryThe subventricular zone (SVZ) neural stem cell niche contains mixed populations of stem cells...
AbstractThyroid hormone (T3) influences cell proliferation, death and differentiation during develop...
International audienceAdult neurogenesis occurs in neural stem cell (NSC) niches where slow cycling ...
Thyroid hormone (T3) receptors (TRs) mediate T3 effects on vertebrate development. We have studied X...
Thyroid hormone (TH) is essential for vertebrate brain development. Most research on TH and neuronal...
INhibitor of Growth (ING) proteins belong to a large family of plant homeodomain finger-containing p...
International audienceThyroid hormones (TH) have been mainly associated with post-embryonic developm...
Thyroid hormone (TH) signaling plays critical roles during vertebrate development, including regulat...
Amphibians provide an ideal model to study the actions of thyroid hormone (TH) in animal development...
Amphibian metamorphosis involves systematic transformations of various tadpole organs1 tissues. Thre...
Metamorphosis in amphibia is obligatorily dependent upon the thyroid hormones triiodothyronine and t...
The essential role of thyroid hormone (TH) signaling in mammalian development warrants the examinati...
AbstractThyroid hormone (TH) controlled gene expression profiles have been studied in the tail, hind...
During metamorphosis, the tadpole neuroendocrine brain is a major target for the organisational effe...
Background: INhibitor of Growth (ING) proteins belong to a large family of plant homeodomain finger-...
SummaryThe subventricular zone (SVZ) neural stem cell niche contains mixed populations of stem cells...
AbstractThyroid hormone (T3) influences cell proliferation, death and differentiation during develop...
International audienceAdult neurogenesis occurs in neural stem cell (NSC) niches where slow cycling ...
Thyroid hormone (T3) receptors (TRs) mediate T3 effects on vertebrate development. We have studied X...
Thyroid hormone (TH) is essential for vertebrate brain development. Most research on TH and neuronal...
INhibitor of Growth (ING) proteins belong to a large family of plant homeodomain finger-containing p...
International audienceThyroid hormones (TH) have been mainly associated with post-embryonic developm...
Thyroid hormone (TH) signaling plays critical roles during vertebrate development, including regulat...
Amphibians provide an ideal model to study the actions of thyroid hormone (TH) in animal development...
Amphibian metamorphosis involves systematic transformations of various tadpole organs1 tissues. Thre...
Metamorphosis in amphibia is obligatorily dependent upon the thyroid hormones triiodothyronine and t...
The essential role of thyroid hormone (TH) signaling in mammalian development warrants the examinati...
AbstractThyroid hormone (TH) controlled gene expression profiles have been studied in the tail, hind...
During metamorphosis, the tadpole neuroendocrine brain is a major target for the organisational effe...
Background: INhibitor of Growth (ING) proteins belong to a large family of plant homeodomain finger-...
SummaryThe subventricular zone (SVZ) neural stem cell niche contains mixed populations of stem cells...