Although SOX2(+) stem cells are present in the postnatal pituitary gland, how they are regulated molecularly and whether they are required for pituitary functions remain unresolved questions. Using a conditional knockout animal model, here we demonstrate that ablation of the canonical Notch signaling in the embryonic pituitary gland leads to progressive depletion of the SOX2(+) stem cells and hypoplastic gland. Furthermore, we show that the SOX2(+) stem cells initially play a significant role in contributing to postnatal pituitary gland expansion by self-renewal and differentiating into distinct lineages in the immediate postnatal period. However, we found that within several weeks postpartum, the SOX2(+) stem cells switch to an essentially...
The rodent pituitary gland undergoes prominent maturation during the first weeks after birth, includ...
SOX2 positive pituitary stem cells (PSCs) are specified embryonically and persist throughout life, ...
SummaryPituitary hormone deficiencies, with Growth Hormone deficiency being most frequent (1 in 3,50...
SummaryAlthough SOX2+ stem cells are present in the postnatal pituitary gland, how they are regulate...
SummaryAlthough SOX2+ stem cells are present in the postnatal pituitary gland, how they are regulate...
Although SOX2(+) stem cells are present in the postnatal pituitary gland, how they are regulated mol...
Although SOX2(+) stem cells are present in the postnatal pituitary gland, how they are regulated mol...
The pituitary gland takes, together with the hypothalamus, the main lead in coordinating the endocri...
Sox2 adult mouse pituitary cells can self-renew and terminally differentiate in vitro, but their phy...
SummarySox2+ adult mouse pituitary cells can self-renew and terminally differentiate in vitro, but t...
The pituitary gland takes, together with the hypothalamus, the main lead in coordinating the endocri...
The pituitary develops in two distinct waves in mice, one occurring during embryogenesis and a secon...
SummarySox2+ adult mouse pituitary cells can self-renew and terminally differentiate in vitro, but t...
In response to physiological demand, the pituitary gland generates new hormone-secreting cells from ...
The pituitary gland contains SOX2-expressing stem cells. However, their functional significance rema...
The rodent pituitary gland undergoes prominent maturation during the first weeks after birth, includ...
SOX2 positive pituitary stem cells (PSCs) are specified embryonically and persist throughout life, ...
SummaryPituitary hormone deficiencies, with Growth Hormone deficiency being most frequent (1 in 3,50...
SummaryAlthough SOX2+ stem cells are present in the postnatal pituitary gland, how they are regulate...
SummaryAlthough SOX2+ stem cells are present in the postnatal pituitary gland, how they are regulate...
Although SOX2(+) stem cells are present in the postnatal pituitary gland, how they are regulated mol...
Although SOX2(+) stem cells are present in the postnatal pituitary gland, how they are regulated mol...
The pituitary gland takes, together with the hypothalamus, the main lead in coordinating the endocri...
Sox2 adult mouse pituitary cells can self-renew and terminally differentiate in vitro, but their phy...
SummarySox2+ adult mouse pituitary cells can self-renew and terminally differentiate in vitro, but t...
The pituitary gland takes, together with the hypothalamus, the main lead in coordinating the endocri...
The pituitary develops in two distinct waves in mice, one occurring during embryogenesis and a secon...
SummarySox2+ adult mouse pituitary cells can self-renew and terminally differentiate in vitro, but t...
In response to physiological demand, the pituitary gland generates new hormone-secreting cells from ...
The pituitary gland contains SOX2-expressing stem cells. However, their functional significance rema...
The rodent pituitary gland undergoes prominent maturation during the first weeks after birth, includ...
SOX2 positive pituitary stem cells (PSCs) are specified embryonically and persist throughout life, ...
SummaryPituitary hormone deficiencies, with Growth Hormone deficiency being most frequent (1 in 3,50...