Oestrogen (E2) and thyroid hormones (THs) are key regulators of cerebellar development. Recent reports implicate a complex mechanism through which E2 and THs influence the expression levels of each other’s receptors (ERs and TRs) to precisely mediate developmental signals and modulate signal strength. We examined the modulating effects of E2 and THs on the expression levels of their receptor mRNAs and proteins in cultured cerebellar cells obtained from 7-day-old rat pups. Cerebellar granule cell cultures were treated with either E2, THs or a combination of these hormones, and resulting receptor expression levels were determined by quantitative PCR and Western blot techniques. The results were compared to non-treated controls and to samples ...
Both the estrogen receptor (ER) and thyroid hormone receptor (TR) are members of the nuclear recepto...
Thyroid hormone (TH) deficiency results in delayed proliferation and migration of cerebellar granule...
textabstractThyroid hormone serves many functions throughout brain development, but the mechanisms t...
Abstract Oestrogen (E2) and thyroid hormones (THs) are key regulators of cerebellar development. ...
Abstract Trophic hormones are important regulators of CNS development and function. In particular, ...
Thyroid hormones (THs) and oestrogens are crucial in the regulation of cerebellar development. TH re...
<div><p>Thyroid hormone (T3) has a major influence on cerebellum post-natal development. The major p...
Thyroid receptors play an important role in postnatal brain development. Zearalenone (ZEN), a major ...
Thyroid hormone (T3) has a major influence on cerebellum post-natal development. The major phenotypi...
Background: Humans and animals are continuously exposed to a number of environmental substances that...
The brain has abundant nuclear T3-binding sites and contains messenger RNAs (mRNAs) encoding multipl...
AbstractThyroid hormone is a major regulator of postnatal brain development, but the precise molecul...
In the mammalian brain, the differentiation of neural cells and the developmental organization of th...
International audienceThyroid hormone (T(3)) can trigger a massive differentiation of cultured oligo...
Recent clinical evidence indicates that thyroid hormone plays an essential role in fetal brain devel...
Both the estrogen receptor (ER) and thyroid hormone receptor (TR) are members of the nuclear recepto...
Thyroid hormone (TH) deficiency results in delayed proliferation and migration of cerebellar granule...
textabstractThyroid hormone serves many functions throughout brain development, but the mechanisms t...
Abstract Oestrogen (E2) and thyroid hormones (THs) are key regulators of cerebellar development. ...
Abstract Trophic hormones are important regulators of CNS development and function. In particular, ...
Thyroid hormones (THs) and oestrogens are crucial in the regulation of cerebellar development. TH re...
<div><p>Thyroid hormone (T3) has a major influence on cerebellum post-natal development. The major p...
Thyroid receptors play an important role in postnatal brain development. Zearalenone (ZEN), a major ...
Thyroid hormone (T3) has a major influence on cerebellum post-natal development. The major phenotypi...
Background: Humans and animals are continuously exposed to a number of environmental substances that...
The brain has abundant nuclear T3-binding sites and contains messenger RNAs (mRNAs) encoding multipl...
AbstractThyroid hormone is a major regulator of postnatal brain development, but the precise molecul...
In the mammalian brain, the differentiation of neural cells and the developmental organization of th...
International audienceThyroid hormone (T(3)) can trigger a massive differentiation of cultured oligo...
Recent clinical evidence indicates that thyroid hormone plays an essential role in fetal brain devel...
Both the estrogen receptor (ER) and thyroid hormone receptor (TR) are members of the nuclear recepto...
Thyroid hormone (TH) deficiency results in delayed proliferation and migration of cerebellar granule...
textabstractThyroid hormone serves many functions throughout brain development, but the mechanisms t...