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Updated: Aug 15, 2026

Artificial Antigen Presenting Cell (aAPC) Mediated Activation and Expansion of Natural Killer T Cells
Published on: December 29, 2012
Large granular lymphocyte proliferation with the natural killer-cell phenotype
1Department of Pathology/Microbiology, University of Nebraska Medical Center, Omaha 68198-3135.
Insights
Natural killer (NK)-cell large granular lymphocyte (LGL) proliferations are distinct from T-cell LGL disorders. These NK-cell LGL disorders are typically indolent, with strong NK-cell activity and fewer associated cytopenias.
Area of Science:
- Hematology
- Immunology
- Oncology
Background:
- Large granular lymphocyte (LGL) disorders are classified into T-cell and rarer natural killer (NK)-cell subsets.
- Understanding the distinct characteristics of NK-cell LGL proliferation is crucial for accurate diagnosis and management.
Purpose of the Study:
- To characterize the immunophenotype, clinical, and genetic features of NK-cell LGL proliferations.
- To compare NK-cell LGL disorders with T-cell LGL disorders.
Main Methods:
- Analysis of immunophenotype using flow cytometry (CD markers).
- Clinical and pathological feature assessment.
- Cytogenetic and molecular genetic analyses (gene configuration, Epstein-Barr virus DNA).
- Assessment of NK-cell activity.
Main Results:
- Seven patients with NK-cell LGL proliferation were studied, typically exhibiting CD2+, CD3-, CD4-, CD11b+, CD16+/CD56+ phenotype.
- Strong NK-cell activity was consistent, irrespective of specific NK-cell marker expression.
- Most cases represented chronic, indolent disorders with a lower incidence of associated cytopenias compared to T-cell LGL disorders.
- Cytogenetic abnormalities were found in 2 of 4 patients.
Conclusions:
- NK-cell LGL proliferations are immunophenotypically and genotypically distinct from T-cell LGL proliferations.
- NK-cell LGL disorders are generally chronic and indolent, with significant NK-cell activity.
- Morphological similarity can mask underlying differences; immunophenotypic and functional analyses are key for differentiation.
Abstract:
Lymphoproliferated disorders involving large granular lymphocytes (LGL) can be divided into a common T-cell subset (CD3+, CD8+) and a rarer natural killer (NK)-cell subset (CD2+, CD3-). The immunophenotype, clinical pathologic features, and cytogenetic and molecular genetic analyses are reported for seven patients with NK-cell-LGL proliferation. The typical immunophenotype was CD2+, CD3-, CD4-, CD11b+, and CD16+ or CD56+. A low but variable percentage of cells were CD8+ or CD57+. Unusual phenotypes with CD2- (1 of 7), CD11b- (1 of 7), or CD16-/CD56- (1 of 7) cells were seen. Strong NK-cell activity was observed in all cases, indicating that none of the NK-cell markers (CD11b, CD16, CD56, CD57) is essential for NK-cell activity. One patient died shortly after diagnosis from coexistent refractory multiple myeloma and another patient died within 1 month from the LGL proliferation. The other patients had been followed for 12 to 70 months, with a median follow-up period of 38 months. There was no progression of their LGL proliferation. Lymphocyte counts varied from 3.3 x 10(3)/microL to 58.4 x 10(3)/microL at the time of diagnosis. Unexplained anemia and neutropenia were observed in one patient. Cytogenetic abnormalities were detected in two of four patients studied with t(6;12) in one and der(5), der(6), and der(11) in the other. The approximately T gamma and T beta genes were in the germline configuration and Epstein-Barr virus DNA was undetectable in five of five patients studied. Natural killer-cell LGL proliferations were morphologically indistinguishable from T-cell LGL proliferations. However, the two were immunophenotypically and genotypically distinct and NK-cell activity was consistently observed in the former. Most of the NK-cell proliferations also were chronic indolent disorders and the incidence of associated cytopenias seemed to be lower than T-cell LGL proliferations.
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