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Published on: August 27, 2012
Expression of intermediate filaments in normal and neoplastic exocrine pancreas
D Santini1, C Ceccarelli, G N Martinelli
1Institutes of Anatomical Pathology, University of Bologna, Policlinico S. Orsola, Italy.
Insights
This study investigated intermediate filament proteins in the human pancreas. Pancreatic ducts show a distinct "biliary-pancreatic duct type" immunoprofile, differing from acinar cells.
Area of Science:
- Cell Biology
- Gastroenterology
- Oncology
Background:
- Intermediate filament (IF) proteins, particularly cytokeratins (CKs), are crucial structural components of cells.
- Understanding the expression patterns of CKs in normal and pathological pancreatic tissues is essential for diagnosing pancreatic diseases.
Purpose of the Study:
- To characterize the immunolocalization of intermediate filament proteins, specifically cytokeratins (CKs) and vimentin, in normal and pathological human exocrine pancreas.
- To establish the characteristic immunoprofile of pancreatic ducts and acinar cells.
- To investigate the expression of CKs in various pancreatic tumors and compare them to normal cellular compartments.
Main Methods:
- Immunolocalization techniques using antibodies against specific cytokeratin (CK) isoforms (e.g., CKs 4, 5, 7, 8, 13, 15, 16, 18, 19) and vimentin.
- Microscopic examination of normal pancreatic tissue, pancreatic ductal adenocarcinomas, mucinous cystoadenocarcinoma, serous microcystic tumor, and duct-ductular alterations.
Main Results:
- Normal acinar cells express simple CKs 8 and 18.
- Pancreatic duct epithelium consistently shows CKs 7, 8, 18, and 19, defining a
- biliary-pancreatic duct type
- immunoprofile.
- Pancreatic ductal adenocarcinomas and other tumors exhibit this
- biliary-pancreatic duct type
- immunoprofile, with variations in stratification-related CKs.
- Vimentin expression is focal in both normal and neoplastic pancreatic tissues.
- The differentiation phenotypes of pancreatic tumors resemble those of normal cellular compartments.
Conclusions:
- Pancreatic ducts possess a distinct immunoprofile (CKs 7, 8, 18, 19) separate from acinar cells (CKs 8, 18).
- The presence of stratification-related CKs in both normal and neoplastic pancreatic tissues suggests complex cellular dynamics.
- Tumor differentiation in the pancreas often mirrors the characteristics of normal pancreatic cellular compartments.
Abstract:
The intermediate filament (IF) proteins present in the normal and pathological exocrine human pancreas were studied by immunolocalization using antibodies to cytokeratins (CKs) and vimentin. Acinar cells of normal pancreas showed a presence of simple CKs 8 and 18. Duct epithelium consistently expressed CKs 7, 8, 18 and 19 whereas centroacinar cells were rather low in CK 7. A subpopulation of CK 4 cells was detected in inter-intralobular ducts. In addition, some ducts contained individual cells or groups of cells that were positive for the stratification-related CKs (CKs 4, 5, 13, 15, 16). All pancreatic ductal adenocarcinomas regularly expressed CKs 7, 8, 18, 19 and were also positive for the 34 beta E12 antibody. Cytokeratin 4 was detected in a minor population of tumor cells. Pancreatic carcinoma also contained minor amounts of stratification-related CKs in variable combinations. Mucinous cystoadenocarcinoma showed the presence of CKs 7, 8, 18, 19 and was also positive for 34 beta E12, whereas the serous microcystic tumor presented CKs 8, 18, 19 and a variable amount of CKs 4 and 7. The duct-ductular alterations of the exocrine pancreas contained a different combination and distribution of CK isoforms similar to normal pancreatic ductal system. Mucinous hypertrophy and pyloric gland metaplasia reacted with antibodies to CKs 7, 8, 18 and 19. Vimentin was focally present both in normal and neoplastic tissue. Our results indicate that pancreatic ducts are characterized by an intrinsic "biliary-pancreatic duct type" immunoprofile (CKs 7, 8, 18 and 19), in contrast to acinar cells expressing exclusively CKs 8 and 18. We also detected a subpopulation of ducts regularly expressing CK 4. Surprisingly, several stratification-related CKs were detected both in normal and neoplastic exocrine pancreas. Moreover, the differentiation phenotypes of pancreatic tumors were reminiscent of normal cellular compartments.
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