Retrovirus-mediated gene transfer in primary T lymphocytes impairs their anti–Epstein-Barr virus potential through both culture-dependent and selection process–dependent mechanisms
Open Access
- 15 February 2002
- journal article
- Published by American Society of Hematology in Blood
- Vol. 99 (4) , 1165-1173
- https://doi.org/10.1182/blood.v99.4.1165
Abstract
To modulate alloreactivity after hematopoietic stem cell transplantation, suicide gene–expressing donor T cells can be administered with an allogeneic T-cell–depleted bone marrow graft. Immune competence of such cells is a critical issue. The impact of the ex vivo gene transfer protocol (12-day culture period including CD3/interleukin-2 [IL-2] activation, retroviral-mediated gene transfer, and G418-based selection) on the anti–Epstein-Barr virus (EBV) potential of gene-modified cells has been examined. Cytotoxic (pCTL) and helper (pTh) cell precursor limiting dilution assays, interferon-γ enzyme-linked immunospot, or fluorescence-activated cell sorter analysis after tetrameric HLA-A2/EBV peptide complexes revealed that the frequency of anti-EBV T cells was lower in gene-modified cells (GMCs) than in similarly cultured but untransduced T cells and was even lower than in fresh peripheral blood mononuclear cells, demonstrating both an effect of the culture and of the transduction or selection. The culture-dependent loss of EBV-reactive cells resulted from the preferential induction of activation-induced cell death in tetramer+ cells. Replacing the initial CD3/IL-2 activation by CD3/CD28/IL-2 partially restored the anti-EBV response of GMCs by reducing the initial activation-induced cell death and enhancing the proliferation of EBV-tetramer+cells. Moreover, the G418 selection, and not the transduction, was directly toxic to transduced tetramer+ cells. Replacing the G418 selection by an immunomagnetic selection significantly prevented the selection-dependent loss of EBV-specific cells. Overall, ex vivo gene modification of primary T cells can result in a significant reduction in EBV-reactive T cells through both culture-dependent and selection-dependent mechanisms. Improving immune functions of GMCs through modifications of the cell culture conditions and transduction/selection processes is critical for further clinical studies.Keywords
This publication has 27 references indexed in Scilit:
- Retrovirus-Mediated Gene Transfer in Primary T Lymphocytes: Influence of the Transduction/Selection Process and ofex VivoExpansion on the T Cell Receptor β Chain Hypervariable Region RepertoireHuman Gene Therapy, 2000
- Two subsets of memory T lymphocytes with distinct homing potentials and effector functionsNature, 1999
- A Closed Culture System for the Ex Vivo Transduction and Expansion of Human T LymphocytesJournal of Hematotherapy, 1998
- IN VIVO ALLOREACTIVE POTENTIAL OF EX VIVO-EXPANDED PRIMARY T LYMPHOCYTES1Transplantation, 1998
- Cross‐reactive memory T cells for Epstein‐Barr virus augment the alloresponse to common human leukocyte antigens: degenerate recognition of major histocompatibility complex‐bound peptide by T cells and its role in alloreactivityEuropean Journal of Immunology, 1997
- Donor T Cells to Treat EBV-Associated LymphomaNew England Journal of Medicine, 1994
- T cells specific for viral antigens presented by HLA-Dw4 recognize DA13 on allogeneic cells: a possible mechanism for induction of rejectionTransplant Immunology, 1993
- Lymphocyte activation in HIV-1 infection. I. Predominant proliferative defects among CD45RO+ cells of the CD4 and CD8 lineagesAIDS, 1993
- A rapid limiting dilution assay for measuring frequencies of alloreactive, interleukin-2-producing T cells in humansJournal of Immunological Methods, 1992
- Limiting dilution analysis of human T cells: a useful clinical toolImmunology Today, 1990