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Large Granular Lymphocyte Leukemia
1Division of Medical Oncology and Hematology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, Florida 33612, USA.
Insights
Large granular lymphocyte (LGL) leukemia, a CD3+ T-cell disorder, primarily affects the elderly with symptoms like infections and anemia. Treatment with low-dose methotrexate can induce remission.
Area of Science:
- Hematology
- Immunology
- Oncology
Background:
- Large granular lymphocyte (LGL) disorders originate from either T-cell or NK-cell lineages.
- CD3+ T-cell LGL leukemia is the predominant form, recognized as a distinct entity in classifications.
- Understanding its clinicobiological aspects is crucial for diagnosis and management.
Purpose of the Study:
- To review the clinical course, biological features, and pathogenesis of CD3+ LGL leukemia.
- To describe the differential diagnosis for LGL proliferations.
- To highlight diagnostic and therapeutic considerations.
Main Methods:
- Literature review of clinical course, biological features, and pathogenesis.
- Analysis of differential diagnosis spectrum.
- Examination of immunophenotypic and genotypic findings.
Main Results:
- T-LGL leukemia predominantly affects elderly individuals, often presenting with infections, neutropenia, anemia, and rheumatoid arthritis.
- The common immunophenotype is CD3+, CD8+, CD57+, with clonality confirmed by T-cell receptor gene rearrangement.
- Potential pathogenetic factors include BA21 epitope reactivity, IL-12/IL-15 lymphokines, Fas ligand expression, and multidrug resistance phenotype.
Conclusions:
- CD3+ LGL leukemia is a distinct T-cell lymphoproliferative disorder with unique clinicobiological features.
- A broad spectrum of LGL proliferations exists, necessitating comprehensive immunophenotypic and genotypic analysis for accurate diagnosis.
- Low-dose methotrexate can achieve clinical and molecular remission.
Abstract:
BACKGROUND: Clonal diseases of large granular lymphocyte (LGL) disorders can arise from a CD3+ T-cell lineage or from a CD3- NK-cell lineage. CD3+ LGL leukemia is the most frequent form of LGL leukemia and is a distinct entity by FAB and REAL classifications. METHODS: The clinical course, biological features, and recent data on pathogenesis of CD3+ LGL leukemia are reviewed. The spectrum of differential diagnosis is described. RESULTS: T-LGL leukemia affects elderly people. Approximately 60% of patients are symptomatic; recurrent infections secondary to chronic neutropenia, anemia, and rheumatoid arthritis are the main clinical features. The most common phenotype is CD3+, CD8+, CD57+. Clonality is detected by clonal rearrangement of the T-cell receptor gene. Clinical and molecular remission can be obtained with oral low-dose methotrexate. Serologic findings show frequent reactivity to the BA21 epitope of HTLV-I env p21e, suggesting that a cellular or retroviral protein with homology to BA21 may be important in pathogenesis. Clonal expansion may be facilitated by IL-12 and IL-15 lymphokines. Constitutive expression of Fas ligand by leukemic LGLs support the hypothesis that leukemic cells arise from antigen-activated cytotoxic T cells. Leukemic LGLs express a multidrug-resistance phenotype that could partly explain the chemoresistance observed in aggressive cases. CONCLUSIONS: CD3+ LGL leukemia is a distinct lymphoproliferative T-cell disorder with specific clinicobiological aspects. The clinical spectrum of LGL proliferations is wide and immunophenotypic, and genotypic studies are needed to establish the diagnosis.
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