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A Semi-automated Approach to Preparing Antibody Cocktails for Immunophenotypic Analysis of Human Peripheral Blood
Published on: February 8, 2016
New methodologic approaches for immunophenotyping acute leukemias
1Laboratorio di Oncoematologia Dipartimento di Pediatria, Università di Padova, via Giustiniani 3, 35128 Padua, Italy. gbasso@oncopedipd.org
Insights
Multiparametric flow cytometry aids acute leukemia diagnosis and classification. Standardizing antigen expression reporting is crucial for consistent results across laboratories, improving patient care.
Area of Science:
- Hematology
- Immunology
- Cell Biology
Background:
- Flow cytometry is the standard for identifying and characterizing leukemia blast cells.
- Current standardized protocols still face inter-laboratory reproducibility challenges.
- Accurate immunophenotyping is essential for diagnosing acute leukemia and monitoring minimal residual disease.
Purpose of the Study:
- To review the current status and applications of multiparametric immunophenotyping in acute leukemia.
- To highlight the importance of standardized reporting for inter-laboratory consistency.
Main Methods:
- Review of author experience and relevant literature.
- Focus on simultaneous three and four-color staining techniques.
Main Results:
- Multiparametric immunophenotyping effectively distinguishes normal from malignant cells.
- Immunologic gating is fundamental for diagnosis, classification, and prognosis in acute leukemias.
- Specific panels and analytic processes differ for lymphoblastic and myeloblastic leukemias.
- Quantitative reporting of antigen expression (units and CV) is recommended for standardization.
Conclusions:
- Phenotypic aberrations correlate with genetic abnormalities in leukemic cells.
- Immunophenotypic analysis is clinically relevant for minimal residual disease monitoring.
- It aids in subclassifying acute myeloid and lymphocytic leukemias.
Background And Objectives:
Flow cytometry is nowadays the preferred method for immunophenotypic identification, enumeration and characterization of blast cells at diagnosis. Despite widespread application of standardized protocols, inter-laboratory reproducibility has still not been achieved. The complexity of diagnosis and evaluation of minimal residual disease, in immunophenotyping acute leukemia, demands the use of a test that provides all the necessary information.
Data Sources And Methods:
The information given here is derived from the experience of the authors and from literature files. The most relevant studies with adequate conclusions were considered. We report on the current status of multiparametric immunophenotyping using simultaneous three and four-color staining and the applications of this technique.
Results:
Multiparametric immunophenotyping is a powerful method for achieving a clear discrimination between normal and pathologic cells. The specific identification of leukemic cells by immunologic gating forms the basis for immunophenotypic diagnosis, classification as well as prognostic evaluation of patients with acute leukemias. The performance of the procedure with regards to the panels of reagents and the analytic processes, is necessarily different in lymphoblastic and myeloblastic leukemias, since the diagnostic questions are different. Phenotypic information should be specifically provided for the blast cells and antigen expression should preferably be reported in quantitative units and CV. This would allow a standardized cross evaluation of immunophenotypic results between different investigators and laboratories.
Interpretation And Conclusions:
Recent reports indicate that phenotypic aberrations reflect genetic abnormalities of leukemic cells and therefore their definition and identification is of clinical relevance not only for minimal residual disease monitoring but also for subclassifying acute myeloid and lymphocytic leukemias.
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