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Updated: Aug 12, 2025

Cell Block Preparation from Cytology Specimen with Predominance of Individually Scattered Cells
Published on: July 21, 2009
Refined Diagnosis of Pleural Effusions by Immunocytochemistry of Cell Blocks
Hirsh Koyi1,2,3, Erik Wilander4
1Department of Respiratory Medicine, Gävle Hospital, Gävle, Sweden; hirsh.koyi@regiongavleborg.se.
Background/Aim:
The main objective of microscopic examination of pleural effusions is to ascertain the presence of malignant cells. Effusions prepared routinely using May-Grünwald-Giemsa (MGG)- and Papanicolaou (PAP)-staining can, in a number of cases, provide inconclusive cytological results regarding malignancy.
Patients And Methods:
This report describes the refined diagnosis of such cases based on immunocytochemical analysis of pleural effusion cell blocks. Of the 340 pleural effusions obtained during 2019 at the Department of Clinical Cytology, Gävle Hospital, Sweden, 63 (18.5%) contained atypical cells of undetermined significance or potentially malignant cells.
Results:
This diagnosis could be refined using Epithelial Cell Adhesion Molecule/EPCAM (BEREP4) immunocytochemical analysis of effusion cell blocks, allowing previously inconclusive effusions to be classified as clearly benign 42/63 (66.7%) or malignant 21/63 (33.3%). Effusions initially diagnosed as clearly malignant (27/340; 7.9%) were all 27 (100%) BEREP4-immuno-stained. Most BEREP4-positive effusions (37/48; 77.1%) were also carcinoembryonic antigen (CEA) positive. The number of BEREP4-positive cells, however, tended to exceed that of CEA-positive cells. The BEREP4 positive effusions were further examined using different monoclonal antibodies, such as Thyroid transcription factor 1 (TTF-1) for primary pulmonary adenocarcinoma, to determine the original site of the primary tumour.
Conclusion:
Immunohistochemical staining of pleural effusion cell blocks significantly refines the diagnosis of serous pleural effusions, especially in cases where the preliminary diagnosis was atypical cells of undetermined significance or potentially malignant cells. Furthermore, in the cases of malignancy, the origin of the primary tumour could most often be determined.
Insights
Immunocytochemical analysis of pleural effusion cell blocks refines diagnosis, distinguishing benign from malignant cells. This method aids in determining the primary tumor site in cases of malignancy, improving diagnostic accuracy for serous effusions.
Area of Science:
- Cytopathology
- Immunohistochemistry
- Oncology
Background:
- Microscopic examination of pleural effusions aims to detect malignant cells.
- Routine May-Grünwald-Giemsa (MGG) and Papanicolaou (PAP) staining can yield inconclusive results for malignancy.
- A significant percentage of effusions present atypical cells of undetermined significance or potentially malignant cells.
Purpose of the Study:
- To refine the diagnosis of pleural effusions using immunocytochemical analysis.
- To improve the classification of inconclusive cytological results.
- To determine the origin of primary tumors in malignant effusions.
Main Methods:
- Immunocytochemical analysis of pleural effusion cell blocks.
- Utilizing Epithelial Cell Adhesion Molecule/EPCAM (BEREP4) staining.
- Employing additional monoclonal antibodies like Thyroid transcription factor 1 (TTF-1) for tumor origin determination.
Main Results:
- BEREP4 immunocytochemical analysis classified previously inconclusive effusions as benign (66.7%) or malignant (33.3%).
- All initially diagnosed malignant effusions (7.9%) were BEREP4-positive.
- Most BEREP4-positive effusions were also carcinoembryonic antigen (CEA) positive, with BEREP4-positive cells often exceeding CEA-positive cells.
Conclusions:
- Immunohistochemical staining of pleural effusion cell blocks significantly refines diagnosis, particularly for ambiguous cases.
- The method effectively distinguishes benign from malignant effusions.
- Immunohistochemistry aids in determining the primary tumor site in malignant effusions.
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