6533b858fe1ef96bd12b5b66
RESEARCH PRODUCT
Depletion of alloreactive T cells via CD69: implications on antiviral, antileukemic and immunoregulatory T lymphocytes
Shamsul A. KhanRalf G. MeyerMarion NonnWolfgang HerrUdo F. HartwigChristoph Hubersubject
Antigens Differentiation T-LymphocyteCD4-Positive T-LymphocytesEpstein-Barr Virus InfectionsHerpesvirus 4 HumanT cellCytomegalovirusGraft vs Host DiseaseCell Cycle Proteinschemical and pharmacologic phenomenaStreptamerBiologyLymphocyte ActivationLymphocyte DepletionCell LineInterleukin 21Antigens CDmedicineHumansTransplantation HomologousCytotoxic T cellLectins C-TypeIL-2 receptorAntigen-presenting cellTransplantationHematopoietic Stem Cell TransplantationNuclear ProteinsForkhead Transcription FactorsReceptors Interleukin-2hemic and immune systemsHematologyT lymphocyteNatural killer T cellDNA-Binding Proteinsmedicine.anatomical_structureCytomegalovirus InfectionsImmunologyRNA Splicing FactorsCarrier ProteinsImmunologic Memorydescription
Selective depletion of alloreactive T cells from stem-cell allografts should abrogate graft-versus-host disease while preserving beneficial T cell specificities to facilitate engraftment and immune reconstitution. We therefore explored a refined immunomagnetic separation strategy to effectively deplete alloreactive donor lymphocytes expressing the activation antigen CD69 upon stimulation, and examined the retainment of antiviral, antileukemic, and immunoregulatory T cells. In addition to the CD69high T cell fraction, our studies retrieved two T cell subsets based on residual CD69 expression. Whereas, truly CD69(neg) cells were devoid of detectable alloresponses to original stimulators, CD69-low (CD69low)-expressing T cells elicited significant residual alloreactivity upon restimulation. In interferon-gamma enzyme linked immunospot assays, anti-cytomegalovirus and anti-Epstein-Barr virus responses were preserved at significant numbers among CD69neg T lymphocytes. Accordingly, T cells recognizing the leukemia-associated Wilm's tumor-1 antigen were still detectable in the CD69neg subset. However, antiviral and antileukemic specificities were also consistently found within CD69low T cells, suggesting that memory-type donor T cells were partially captured due to residual CD69 expression. Finally, CD4+CD25+ Foxp3+ immunoregulatory T cells did not upregulate CD69 upon allogeneic stimulation. Our data suggest that CD69-mediated removal of alloreactivity can result in efficient allodepletion, but may partially affect the persistence of antiviral and antileukemic donor memory specificities captured among CD69low-expressing lymphocytes.
year | journal | country | edition | language |
---|---|---|---|---|
2005-12-05 | Bone Marrow Transplantation |