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Published on: February 2, 2024
Regulators of apoptosis in cholangiocarcinoma
Nirag C Jhala1, Selwyn M Vickers, Pedram Argani
1Department of Pathology, University of Alabama at Birmingham, AL 35249, USA. njhala@path.uab.edu
Context:
Dysregulation of mediators of apoptosis is associated with carcinogenesis. For biliary duct cancers, p53 gene mutation is an important contributor to carcinogenesis. Mutations in the p53 gene affect transcription of the Fas gene, resulting in lack of Fas expression on cell membrane. It has been previously shown that cloned Fas-negative but not Fas-positive human cholangiocarcinoma cells are resistant to anti-Fas-mediated apoptosis and develop tumors in nude mice. In addition, interferon gamma induces Fas expression in Fas-negative cholangiocarcinoma cells and makes them susceptible to apoptosis. Therefore, it becomes important to characterize immunophenotypic expression of p53 and Fas in normal and neoplastic human tissues of the biliary tract to further understand the pathogenesis of the disease. To date, human studies to characterize differences in immunophenotypic expression of the Fas protein between intrahepatic and extrahepatic biliary duct cancers and in their precursor lesions have not been performed.
Objective:
To report the immunophenotypic expression of p53 and Fas expression in various stages in the development of bile duct cancers (intrahepatic and extrahepatic tumor location) and their association with tumor differentiation.
Design:
Thirty bile duct cancer samples (13 intrahepatic and 17 extrahepatic) from 18 men and 12 women who ranged in age from 44 to 77 years (mean age, 65.6 years) were retrieved from the surgical pathology files. Hematoxylin-eosin-stained slides were evaluated for the type and grade of tumor and dysplastic changes in the biliary tract epithelium. Additional slides were immunohistochemically stained with p53 and anti-Fas mouse monoclonal antibody. The pattern of Fas distribution and percentage of cells positive for p53 and Fas expression were determined.
Results:
The percentage of Fas-expressing cells is significantly (P = .01) more frequently noted in extrahepatic tumors compared with intrahepatic tumors. Furthermore, Fas expression decreased from dysplastic epithelium to cholangiocarcinoma (P = .01), and this decreasing trend continued from well to poorly differentiated tumors. Nuclear p53 expression was not identified in normal and dysplastic epithelium but was noted in 30% of carcinomas (P = .02).
Conclusion:
Fas expression is an early event in pathogenesis of bile duct cancers. Immunophenotypic expression of Fas is associated with well to moderately differentiated tumors but not with poor tumor differentiation.
Insights
Fas expression is an early indicator in bile duct cancer development, decreasing with tumor progression and linked to better differentiation. p53 mutations are found in a subset of these cancers.
Area of Science:
- Oncology
- Cell Biology
- Immunohistochemistry
Background:
- Dysregulation of apoptosis mediators, including p53 and Fas, is implicated in carcinogenesis.
- p53 gene mutations in biliary duct cancers affect Fas gene transcription, leading to reduced Fas expression and resistance to apoptosis.
- Fas expression is crucial for apoptosis, and its modulation by interferon gamma influences cancer cell susceptibility.
Purpose of the Study:
- To investigate the immunophenotypic expression of p53 and Fas in normal and neoplastic biliary tract tissues.
- To analyze Fas expression across different stages of bile duct cancer development (intrahepatic and extrahepatic).
- To determine the association between p53 and Fas expression and tumor differentiation.
Main Methods:
- Immunohistochemical staining of p53 and Fas on 30 bile duct cancer samples (intrahepatic and extrahepatic).
- Evaluation of tumor type, grade, and dysplastic changes using Hematoxylin-eosin staining.
- Quantification of Fas-expressing cells and determination of p53 expression patterns.
Main Results:
- Fas expression was significantly more frequent in extrahepatic tumors compared to intrahepatic tumors (P = .01).
- Fas expression decreased from dysplastic epithelium to cholangiocarcinoma (P = .01) and with poorer tumor differentiation.
- Nuclear p53 expression was absent in normal/dysplastic epithelium but present in 30% of carcinomas (P = .02).
Conclusions:
- Fas expression represents an early event in the pathogenesis of bile duct cancers.
- Immunophenotypic Fas expression correlates with well to moderately differentiated tumors, but not poorly differentiated ones.
- Understanding p53 and Fas expression aids in elucidating bile duct cancer pathogenesis.
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