Several reports demonstrate estrogen receptor involvement in specific brain functions. In addition, estrogen receptors are expressed at early stages of brain development, suggesting that estrogens or related molecules may play an instructive role in the differentiation of specific brain areas. The lack of model systems in which these phenomena could be studied prompted us to develop a neuroblastoma cell line expressing the estrogen receptor. The cell line expresses the hormone receptor at levels compatible with a physiological activity. The activated estrogen receptor is capable of blocking proliferation of the cells without exerting toxic effects. Following growth arrest, the cells display a neuron-like morphology and express T and synaptophysin, two proteins synthesized in differentiating neurons. The cell line generated will provide a valuable model system for molecular and biochemical studies of the activity of estrogens in neural-derived cells.Estrogens are important for regulation of cell growth and maturation of several tissues (e.g., uterus, liver, and brain).
Skin melanoma represents one of the most common and lethal solid tumor. It usually develops on the skin but it can occur in any tissues with melanine- containing-cells (extracutaneous malignant melanoma). Only 4-5% of malignant melanomas originate in extracutaneous tissues, and they have an extremely lethal behavior (1). These non-skin malignant melanomas are rare but extremely aggressive. Primary melanoma of the genitourinary tract accounts for less than 0.2% of all melanomas. To date only 28 cases of primary bladder melanoma (PMM) are described. We report a rare case of PMM of the bladder in a 72 years old man treated with radical cystectomy and immunotherapy with Nivolumab.
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