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Published on: July 20, 2016
Clonal studies of CD3- lymphoproliferative disease of granular lymphocytes
R Nash1, P McSweeney, R Zambello
1Fred Hutchinson Cancer Research Center, Seattle, WA.
Insights
CD3- large granular lymphocyte (LGL) disease in women appears reactive, not neoplastic. Analysis of X-linked genes showed polyclonal lymphocyte expansion, unlike CD3+ LGL leukemia.
Area of Science:
- Hematology
- Immunology
- Genetics
Background:
- Lymphoproliferative disease of granular lymphocytes (LDGL) involves chronic proliferation of CD3- or CD3+ large granular lymphocytes (LGLs).
- CD3+ LGL proliferations are typically clonal (LGL leukemia), but the nature of CD3- LDGL remains unclear.
- Understanding the origin of CD3- LDGL is crucial for diagnosis and treatment.
Purpose of the Study:
- To investigate the clonal nature of CD3- LDGL in female patients.
- To differentiate between a reactive and neoplastic origin of CD3- granular lymphocytes.
Main Methods:
- Analysis of seven female patients with CD3- LDGL heterozygous at X-linked gene loci.
- Isolation of neutrophils and CD3- granular lymphocytes from peripheral blood.
- Clonal analysis using Southern blotting and PCR on genomic DNA with X-linked gene probes (PGK, DXS255).
Main Results:
- Polyclonal expansion of CD3- granular lymphocytes was demonstrated in six out of seven patients.
- Clonal disease could not be established using X-linked markers in CD3- LDGL patients.
- One patient had indeterminate results.
Conclusions:
- CD3- LDGL in these patients suggests a reactive, rather than neoplastic, origin.
- Findings contrast with the clonal nature of CD3+ LDGL (LGL leukemia).
- Further research is needed to fully elucidate the pathogenesis of CD3- LDGL.
Abstract:
The lymphoproliferative disease of granular lymphocytes (LDGL) results from chronic proliferation of either CD3- or CD3+ large granular lymphocytes (LGLs). Most CD3+ LGLs have been well characterized as clonal LGL proliferations (LGL leukemia). In contrast, the clonal nature and clinical features of patients with CD3- LDGL have not been defined. In this study, we analyzed seven female patients with CD3- LDGL who were heterozygous at certain X-linked gene loci. Neutrophils and CD3- granular lymphocytes were isolated from peripheral blood. Clonal analysis was performed on genomic DNA from these cell fractions on six patients by conventional Southern techniques using probes to the X-linked genes, PGK and DXS255 (M27 beta). In four patients, three of whom were already studied by Southern analyses of genomic DNA and one in whom there were insufficient amounts of DNA, polymerase chain reaction (PCR)-based clonal analysis was performed with primer pairs flanking the BstXI polymorphism on the PGK gene. In six patients, a polyclonal expansion of CD3- granular lymphocytes was demonstrated and in one the result was indeterminate. In contrast to patients with CD3+ LDGL (LGL leukemia), a clonal disease could not be demonstrated with X-linked markers in patients with CD3- LDGL, suggesting a reactive rather than a neoplastic origin of the lymphocytes in these cases.
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