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Neuroendocrine differentiation in prostatic carcinomas. A retrospective autopsy study.

Neuroendocrine differentiation in prostatic neoplasms has in the past been considered extremely uncommon. The histologic neuroendocrine patterns reported previously vary from small cell to carcinoidlike to mixed adenocarcinoma--small cell or carcinoid. The majority of the tumors reported are of the mixed variety. We reviewed 2648 autopsies, revealing 69 prostatic carcinomas, eight with neuroendocrine differentiation (five mixed adenocarcinoma--small-cell carcinoma, two "pure" small cell, and one "pure" carcinoidlike). The mean patient age was 69.5 years. One patient presented with markedly elevated serum corticotropin and another was severely hypercalcemic with elevated serum parathyroid hormone level. Three neoplasms were incidental autopsy findings. The mean survival time, after diagnosis, was 19 months for the other patients. Three of the cases were examined ultrastructurally and showed cytoplasmic processes containing membrane-bound granules in the neuroendocrine component. The areas with neuroendocrine differentiation were positive for markers as follows: neuron-specific enolase, seven of eight; prostate-specific antigen (PSA), none of eight; chromogranin A, seven of eight; synaptophysin, four of eight; and calcitonin, four of eight. Those neoplasms mixed with an adenocarcinoma component showed well-defined PSA positivity in the glandular elements. This study suggests that neuroendocrine differentiation in prostatic neoplasms may be more common than previously thought. Often, the areas with neuroendocrine differentiation are considered to represent poorly differentiated adenocarcinoma. It is important to recognize neuroendocrine components in prostatic carcinomas owing to prognostic and potential therapeutic implications.

Adenocarcinoma↗

Three distinct regions of allelic loss at 13q14, 13q21-22, and 13q33 in prostate cancer.

Chromosome 13 is one of the most frequently altered chromosomes in cancer, including carcinoma of the prostate. Two known tumor suppressor genes, RB1 and BRCA2, map to chromosome 13; however, recent reports suggest that unknown genes on 13q are more likely to be involved in the development of prostate cancer. In order more fully to define the genetic changes on chromosome 13 in prostate neoplasms, we analyzed 27 polymorphic microsatellite markers spanning the q arm for loss of heterozygosity in 40 primary tumors and in metastases from 11 other patients who died of prostate cancer. Of the 40 primary tumors, 23 (58%) showed LOH for at least one marker. Three distinct regions at q14, q21-22, and q33, defined by markers D13S267-->D13S153, D13S166-->D13S1225, and D13S259-->D13S274, showed the most frequent LOH, suggesting their involvement in the development of prostate cancer. For the 12 patients whose tumors showed LOH at these markers, the average age at diagnosis was 58 years, which was younger than that (63 years, P < 0.05) for the 28 patients whose tumors lacked LOH. Ten of the 11 (91%) metastases showed LOH with one or more markers. Two of the three most frequently deleted regions (i.e., q14 and q21-22) in the primary tumors and markers linked to the RB1, BRCA2, and EDNRB genes showed high frequencies (56-71%) of LOH in metastases. These results demonstrate that allelic loss on chromosome 13 at q14, q21-22, and q33 occurs in a subset of primary prostate tumors and is a frequent event in metastatic lesions of prostate cancer.

Adult↗