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Updated: May 31, 2026

Murine Model of CD40-activation of B cells
Published on: March 5, 2010
Differential and tumor-specific expression of CD160 in B-cell malignancies
Timothy W Farren1, Jerome Giustiniani, Feng-Ting Liu
1Division of Haemato-Oncology and Immunophenotyping Section, Department of Haematology, Barts and The London National Health Service (NHS) Trust, London, UK.
Insights
CD160 is a tumor-specific antigen highly expressed in chronic lymphocytic leukemia (CLL) and hairy cell leukemia (HCL). Its expression aids in diagnosing CLL and offers a new therapeutic target for B-cell lymphoproliferative disorders.
Area of Science:
- Immunology
- Hematology
- Oncology
Background:
- CD160 is a natural killer (NK)-cell-activating receptor found on T-cell subsets.
- Its expression in B-cell lymphoproliferative disorders (B-LPDs) has not been extensively studied.
Purpose of the Study:
- To investigate the expression of CD160 in various B-LPDs.
- To evaluate CD160 as a diagnostic marker and therapeutic target for CLL.
Main Methods:
- Analysis of CD160 expression in 811 B-LPD cases using flow cytometry.
- Comparison of CD160 expression in normal B-cell hierarchy and B-LPD subtypes.
- Development of a diagnostic score using CD5, CD23, and CD160.
Main Results:
- CD160 was expressed in 98% of CLL and 100% of HCL cases, but rarely in other B-LPDs.
- CD160 expression was significantly higher in CLL and HCL compared to other B-LPDs.
- A diagnostic score incorporating CD5, CD23, and CD160 effectively characterized CLL.
Conclusions:
- CD160 is a tumor-specific antigen in the B-cell lineage, particularly in CLL and HCL.
- CD160 is a valuable diagnostic marker for CLL and a potential therapeutic target for B-cell malignancies.
- CD160 facilitates cellular activation signals and can be used for minimal residual disease monitoring.
Abstract:
CD160 is a human natural killer (NK)-cell-activating receptor that is also expressed on T-cell subsets. In the present study, we examined 811 consecutive cases of B-cell lymphoproliferative disorders (B-LPDs), and demonstrated CD160 expression in 98% (590 of 600) of chronic lymphocytic leukemia (CLL) cases, 100% (32 of 32) of hairy cell leukemia (HCL) cases, 15% (5 of 34) of mantle cell lymphoma (MCL) in the leukemic phase, and 16% (23 of 145) of other B-LPD cases. CD160 transcript and protein were absent in the normal B-cell hierarchy, from stem cells, B-cell precursors, maturing B cells in the germinal center, and circulating B cells, including CD5(+)CD19(+) B1 cells in umbilical cord. CD160 positivity was significantly higher in CLL and HCL in terms of percentage (65.9% and 67.8%, respectively, P < .0001) and median fluorescence intensity (552 and 857, respectively, P < .0001) compared with all other B-LPD cases. Lymph node CLL samples were also CD160(+). Using the disease-specific expression of CD5, CD23, and CD160, a score of 3 characterized CLL (diagnostic odds ratio, 1430); a score of 0 excluded CLL, MCL, and HCL; and the CD23/CD5 ratio differentiated CLL from leukemic CD23(+) MCL. In the B-cell lineage, CD160 is a tumor-specific antigen known to mediate cellular activation signals in CLL, and is a novel target for therapeutic manipulation and monitoring of minimal residual disease.
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