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D Kamel

Publications and source records attributed to D Kamel.

At least 37 records · Page 2Linked to original sources

Comparative analysis of p53 protein immunoreactivity in prostatic, lung and breast carcinomas.

In this study we analysed the expression of p53 protein in a total of 143 carcinomas immunohistochemically. These consisted of 34 prostatic adenocarcinomas, 59 lung and 50 breast carcinomas. In 28 cases, an average of 2-3 additional sections from different tumour areas were analysed. Forty-nine of the 143 carcinomas (34%) showed typical nuclear immunoreactivity by immunohistochemical staining with the p53 antibody CM-1. Two of the 34 prostatic carcinomas (6%) were p53 positive while 25 of the 59 lung carcinomas (43%) and 22 of the 50 breast carcinomas (44%) showed positivity for p53. By grade: 49% of grade III tumours, 36% of grade II and 5% of grade I tumours were p53 positive. There were significantly more p53-positive cases in grade II-III tumours than in grade I tumours (P = 0.001) when all tumours were taken into account. Further, there were significantly more p53-positive cases in grade III than in grade I-II tumours (P = 0.001). In lung tumours there were significantly more p53-positive cases in grade II-III tumours than in grade I tumours (P = 0.018). Similarly, there were significantly more p53-positive tumours in grade III breast tumours than in grade I-II tumours (P = 0.003). The low incidence of p53 positivity in prostate carcinomas suggests that mutations of the p53 gene are not as frequent in the neoplastic transformation of these tumours as in lung or breast carcinomas. The association of p53 positivity with tumours of higher grade suggests that p53 mutations lead to tumours of a more aggressive type. The analysis of tumours by multiple sections indicates that p53 positivity is not evenly distributed in tumour tissue. Therefore, analysis of additional tumour areas may reveal positivity some cases, which is not evident if only one section is studied.

Adenocarcinoma↗

Evidence by in situ hybridization that c-erbB-2 proto-oncogene expression is a marker of malignancy and is expressed in lung adenocarcinomas.

In order to identify potential markers of malignancy in diagnostic respiratory cytopathology, c-myc and c-erbB-2 proto-oncogene expression was studied in fine needle aspirates from 14 consecutive fresh operation tissue samples (after surgical removal) representing lung tumors and a variety of other cell samples by in situ hybridization of 35S-labeled antisense and sense RNA c-myc and c-erbB-2 specific proto-oncogene probes. All 14 lung tumors showed c-myc expression and eight also showed c-erbB-2 expression. On average, the c-myc expression was about 4 times higher than that of c-erbB-2 (P less than 0.001). c-erbB-2 expression, confirmed also as a cytoplasmic membrane-bound reactivity by immunohistochemical stainings for c-erbB-2 oncoprotein, was significantly related to adenocarcinoma (P less than 0.025), whereas increasing tumor size correlated significantly with increasing c-myc expression (P less than 0.05). On average, all the tumor cell lines showed 2-fold expression of c-myc compared with the lung tumors (P less than 0.025). c-erbB-2 expression was found in six of 11 cell lines. High c-myc proto-oncogene expression was also found in broncho-epithelial cells and alveolar macrophages, and a low expression was found in lymphocytes but not in neutrophils, while none of these cells showed c-erbB-2 proto-oncogene expression. Our results demonstrate extensive c-myc proto-oncogene expression in both malignant and non-neoplastic proliferating cells, but not in terminally differentiated cells such as neutrophils. Therefore c-myc expression must also be related to general cell proliferation and not only malignancy per se. In marked contrast, c-erbB-2 proto-oncogene expression was found only in adenocarcinoma cells, and thus can be used as a marker for malignancy in diagnostic respiratory cytopathology.

Adenocarcinoma↗

[Dyslipidosis].

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Adult↗