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Flow cytometric analysis of kappa and lambda light chain expression in evaluation of specimens for B-cell neoplasia
P I Fukushima1, P K Nguyen, P O'Grady
1Flow Cytometry Unit, Laboratory of Pathology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892-1500, USA.
Insights
Accurate light chain expression analysis in flow cytometry is crucial for diagnosing B-cell disorders. This study highlights the importance of selecting appropriate anti-light chain antibodies and employing multiple strategies for reliable B-cell monoclonality detection.
Area of Science:
- Clinical laboratory science
- Immunology
- Hematology
Background:
- Light chain expression analysis is vital for flow cytometric immunophenotyping.
- Technical factors like antibody choice and cytophilic antibodies complicate accurate light chain determination.
- Conflicting reports exist regarding optimal methods for light chain analysis.
Purpose of the Study:
- To investigate methods for light chain analysis in normal donors and patient specimens.
- To compare different anti-light chain antibodies and strategies for challenging cases.
- To evaluate the impact of antibody choice and cytophilic antibodies on B-cell monoclonality detection.
Main Methods:
- Analysis of 104 normal donors and 366 patient specimens.
- Comparison of polyclonal versus monoclonal anti-light chain antibodies.
- Evaluation of strategies for specimens with low B-cell counts, admixed polyclonal cells, or cytophilic antibodies.
Main Results:
- No significant difference in staining between monoclonal and polyclonal antibodies in normal controls.
- Cytophilic antibodies did not obscure results in normal controls.
- Monoclonality detection failed with at least one antibody set in 43% of grossly monoclonal specimens.
- Cytophilic antibody artifact in monoclonal specimens was overcome by appropriate antibody combinations.
- A small monoclonal population was detected in 63% of cases with low or admixed B cells using specific strategies.
Conclusions:
- Antibody choice is critical for accurate light chain analysis in flow cytometry.
- Multiple strategies are necessary for comprehensive B-cell monoclonality assessment.
- Cytophilic antibody interference can be managed with appropriate antibody selection.
Abstract:
Analysis of light chain expression is one of the most important determinations in flow cytometric immunophenotyping of patient specimens. Numerous technical factors, such as antibody choice and cytophilic antibody artifact, impact a laboratory's ability to perform this test. There have been conflicting reports concerning the efficacy of polyclonal versus monoclonal antibodies, as well as methods of circumventing cytophilic antibodies, indicating that a consensus has not been reached on optimal methods for light chain determination. The authors have investigated methods for light chain analysis in 104 normal donors and 366 patient specimens, comparing different anti-light chain antibodies as well as strategies for analysis of specimens with low numbers of monoclonal B cells, admixed polyclonal B cells, or cytophilic antibodies. The patient specimens were either part of the initial diagnostic evaluation of patients with suspected lymphoma, or were performed for staging or assessment of treatment of patients with known B-cell neoplasia. No monoclonality was detected in control specimens, and there was no significant difference in staining with monoclonal verses polyclonal anti-light chain antibodies. In addition, cytophilic antibody did not obscure results in normal controls. Monoclonality was detected in 106 patient specimens, with 89 showing gross involvement with a predominant monoclonal B-cell process. However, in 43% of the grossly monoclonal specimens, there was failure to detect monoclonality with at least one light chain antibody set, with 8% of these cases showing failure with two anti-light chain sets. This indicates the importance of antibody choice in light chain analysis. Cytophilic antibody artifact in monoclonal specimens was easily overcome by appropriate antibody combinations, obviating the need for cytophilic antibody-shedding by incubation at 37 degrees C in fetal calf serum. In 27 patient specimens with low numbers of B cells or admixed polyclonal B cells, a clonal search based on FSC and CD19 or CD20 expression was performed. In 17 of the 27 cases (63%), a small monoclonal population was detected among admixed polyclonal B cells. The authors conclude that multiple strategies are necessary in flow cytometric analysis for B-cell monoclonality.
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