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Multiplexed Fluorescent Immunohistochemical Staining, Imaging, and Analysis in Histological Samples of Lymphoma
Published on: January 9, 2019
Basic immunohistochemistry for lymphoma diagnosis
1Department of Pathology, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Korea.
Insights
Immunohistochemistry is vital for lymphoma diagnosis, identifying cell types, genetic alterations, and therapeutic targets using specific protein markers. Proper specimen handling ensures accurate results for precise pathological diagnosis.
Area of Science:
- Immunopathology
- Molecular Diagnostics
- Oncology
Background:
- Immunohistochemistry (IHC) utilizes antigen-antibody interactions to identify specific cellular proteins.
- Accurate lymphoma diagnosis relies on IHC for cell lineage, maturation stage, genetic alterations, proliferation, and therapeutic targets.
Purpose of the Study:
- To highlight the essential role of immunohistochemistry in lymphoma diagnosis.
- To detail key markers used in lymphoma subtyping and treatment selection.
- To emphasize the importance of proper specimen processing for diagnostic accuracy.
Main Methods:
- Utilizing specific antibodies (e.g., CD3, CD20, CD79a, CD56) to detect cell lineage and differentiation.
- Employing markers like Bcl-2, cyclin D-1, and Ki-67 to identify genetic alterations and proliferation.
- Leveraging IHC for therapeutic target identification (e.g., PD-L1, CD19, CD30).
Main Results:
- CD3 and CD20 serve as crucial pan T-cell and B-cell markers, respectively.
- CD79a offers an alternative to CD20, especially in specific tumor contexts.
- IHC detects genetic alterations (BCL2, CCND1) and proliferation (Ki-67), aiding in lymphoma classification.
- Markers like PD-L1, CD19, and CD30 are identified as key targets for immunotherapy.
Conclusions:
- Immunohistochemistry is indispensable for comprehensive lymphoma diagnosis and classification.
- Accurate interpretation of IHC markers guides therapeutic strategies and patient management.
- Strict adherence to pre-analytical procedures is paramount for reliable IHC results in lymphoma diagnostics.
Abstract:
Immunohistochemistry is a technique that uses antigen-antibody interactions to detect specific proteins in cells. This technique has several essential applications in lymphoma diagnosis, including identifying the cell lineage and phase of maturation, detecting specific genetic alterations, visualizing the degree of cell proliferation, and identifying therapeutic targets. CD3 is a pan T-cell marker expressed on most of the mature T/NK-cell lymphomas, except for anaplastic large cell lymphoma, whereas CD20 is a pan B-cell marker that is expressed on most of the mature B-cell lymphomas. CD79a may be a good alternative to CD20, compensating for its loss owing to the plasmocytic differentiation of tumor cells or history of rituximab administration. CD56, a neuroendocrine marker, is used as an NK cell marker in lymphoma diagnosis. Characteristic translocations occurring in follicular lymphoma (BCL2) and mantle cell lymphoma (CCND1) can be detected by the overexpression of Bcl-2 and cyclin D-1 in immunohistochemistry, respectively. Ki-67 reflects the degree of tumor cell proliferation by indicating cells in cell cycle phases other than G0. With the development of immunotherapy, several antibodies against markers such as programmed death-ligand 1 (PD-L1), CD19, and CD30 have been used as biomarkers to identify therapeutic targets. It is critical to properly fix the specimens to obtain accurate immunohistochemical results. Therefore, all processes, from tissue collection to the final pathological diagnosis, must be performed appropriately for accurate lymphoma diagnosis.
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