Cell cycle proteins are critical to pituitary development, but their contribution to lineage-specific tumorigenesis has not been well-elucidated. Emerging evidence from in vitro human tumor analysis and transgenic mouse models indicates that G1/S-related cell cycle proteins, particularly cyclin E, p27, Rb, and E2F1, drive molecular mechanisms that underlie corticotroph-specific differentiation and development of Cushing disease. The aim of this review is to summarize the literature and discuss the complex role of cell cycle regulation in Cushing disease, with a focus on identifying potential targets for therapeutic intervention in patients with these tumors
Cushing’s disease (CD) is an endocrine disorder originated by a corticotroph tumor. It is linked wit...
AbstractBackgroundPituitary tumors are a common form of endocrine neoplasia. However few studies ass...
The cell cycle is the process by which cells grow, replicate their genome and divide. The cell cycle...
Cushing's disease is characterized by excessive adrenocorticotropin hormone (ACTH) secretion caused ...
Cushing's syndrome (CS) is a severe endocrine disorder characterized by chronic cortisol excess due ...
Abstract The proximal molecular pathogenesis of ACTH-secreting pituitary adenomas remains enigmatic....
PURPOSE: The molecular mechanisms underlying tumor growth in Cushing's disease (CD) still remain a c...
Corticotroph tumors (CTs) are pituitary neoplasms arising from the Tpit lineage, which may or not ex...
Cushing's disease (CD) is a severe endocrine condition caused by an adrenocorticotropin (ACTH)-produ...
Cushing's disease (CD) arises from pituitary-dependent glucocorticoid excess due to an ACTH-secretin...
BACKGROUND: The pathogenesis of tumour formation in the anterior pituitary including adrenocorticotr...
International audienceContext: Cushing disease (CD) is due to pituitary corticotrope adenomas that p...
Cushing's disease (CD) is a severe endocrine condition caused by an adrenocorticotropin (ACTH)-produ...
OBJECTIVES: Cyclins play an important role in the regulation of cell progression through the cell cy...
Luque, Raúl M. et al.[Context] Desmopressin is a synthetic agonist of vasopressin receptors (AVPRs)....
Cushing’s disease (CD) is an endocrine disorder originated by a corticotroph tumor. It is linked wit...
AbstractBackgroundPituitary tumors are a common form of endocrine neoplasia. However few studies ass...
The cell cycle is the process by which cells grow, replicate their genome and divide. The cell cycle...
Cushing's disease is characterized by excessive adrenocorticotropin hormone (ACTH) secretion caused ...
Cushing's syndrome (CS) is a severe endocrine disorder characterized by chronic cortisol excess due ...
Abstract The proximal molecular pathogenesis of ACTH-secreting pituitary adenomas remains enigmatic....
PURPOSE: The molecular mechanisms underlying tumor growth in Cushing's disease (CD) still remain a c...
Corticotroph tumors (CTs) are pituitary neoplasms arising from the Tpit lineage, which may or not ex...
Cushing's disease (CD) is a severe endocrine condition caused by an adrenocorticotropin (ACTH)-produ...
Cushing's disease (CD) arises from pituitary-dependent glucocorticoid excess due to an ACTH-secretin...
BACKGROUND: The pathogenesis of tumour formation in the anterior pituitary including adrenocorticotr...
International audienceContext: Cushing disease (CD) is due to pituitary corticotrope adenomas that p...
Cushing's disease (CD) is a severe endocrine condition caused by an adrenocorticotropin (ACTH)-produ...
OBJECTIVES: Cyclins play an important role in the regulation of cell progression through the cell cy...
Luque, Raúl M. et al.[Context] Desmopressin is a synthetic agonist of vasopressin receptors (AVPRs)....
Cushing’s disease (CD) is an endocrine disorder originated by a corticotroph tumor. It is linked wit...
AbstractBackgroundPituitary tumors are a common form of endocrine neoplasia. However few studies ass...
The cell cycle is the process by which cells grow, replicate their genome and divide. The cell cycle...