Selective depletion of alloreactive T lymphocytes using patient-derived nonhematopoietic stimulator cells in allograft engineering. 2008

Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
Department of Medicine III - Hematology and Oncology, Johannes Gutenberg-University Medical School, Mainz, Germany.

BACKGROUND Selective depletion of alloreactive T cells in vitro results in efficient graft-versus-host disease prophylaxis in allogeneic hematopoietic stem-cell transplantation, but it is accompanied by increased recurrence of leukemia. To spare donor T-cell-mediated graft-versus-leukemia immunity against hematopoiesis-restricted minor histocompatibility (minor-H) antigens, we explored the use of patient-derived nonhematopoietic antigen-presenting cells (APC) as allogeneic stimulators for selective allodepletion in leukemia-reactive donor T-cell lines. METHODS Primary keratinocytes, dermal fibroblasts, and bone marrow fibroblasts were generated from skin biopsies and diagnostic bone marrow aspirates of acute myeloid leukemia patients in vitro. Cell cultures were analyzed for expansion, phenotype, and immunostimulatory capacity in comparison with CD40-activated B cells as professional APC. In addition, nonhematopoietic APCs were used for selective allodepletion in vitro. RESULTS Patient-derived fibroblasts could be reliably expanded to large cell numbers, whereas keratinocytes had limited growth potential. Interferon-gamma-pretreated fibroblasts showed increased expression of human leukocyte antigen (HLA)-class I and II molecules, CD40, and CD54. Fibroblasts and CD40-activated B cells comparably stimulated HLA-A*0301-specific CD8 T cells after transient expression of HLA-A*0301 as a model alloantigen. Finally, fibroblasts could be effectively applied to selectively deplete alloreactivity within leukemia-reactive donor CD8 T-cell lines by targeting the activation-induced antigen CD137. CONCLUSIONS Primary fibroblasts can be efficiently used as allogeneic nonhematopoietic APC for selective depletion of donor T cells reactive to HLA and ubiquitously expressed minor-H antigen disparities in leukemia-stimulated CD8 T-cell lines. Therefore, harnessing alloreactivity to hematopoietic minor-H antigens in addition to leukemia-associated antigens might increase graft-versus-leukemia immunity of donor lymphocyte grafts in allogeneic hematopoietic stem-cell transplantation.

UI MeSH Term Description Entries
D007371 Interferon-gamma The major interferon produced by mitogenically or antigenically stimulated LYMPHOCYTES. It is structurally different from TYPE I INTERFERON and its major activity is immunoregulation. It has been implicated in the expression of CLASS II HISTOCOMPATIBILITY ANTIGENS in cells that do not normally produce them, leading to AUTOIMMUNE DISEASES. Interferon Type II,Interferon, Immune,gamma-Interferon,Interferon, gamma,Type II Interferon,Immune Interferon,Interferon, Type II
D008212 Lymphocyte Depletion Immunosuppression by reduction of circulating lymphocytes or by T-cell depletion of bone marrow. The former may be accomplished in vivo by thoracic duct drainage or administration of antilymphocyte serum. The latter is performed ex vivo on bone marrow before its transplantation. Depletion, Lymphocyte
D004817 Epidermis The external, nonvascular layer of the skin. It is made up, from within outward, of five layers of EPITHELIUM: (1) basal layer (stratum basale epidermidis); (2) spinous layer (stratum spinosum epidermidis); (3) granular layer (stratum granulosum epidermidis); (4) clear layer (stratum lucidum epidermidis); and (5) horny layer (stratum corneum epidermidis).
D005347 Fibroblasts Connective tissue cells which secrete an extracellular matrix rich in collagen and other macromolecules. Fibroblast
D006086 Graft vs Host Disease The clinical entity characterized by anorexia, diarrhea, loss of hair, leukopenia, thrombocytopenia, growth retardation, and eventual death brought about by the GRAFT VS HOST REACTION. Graft-Versus-Host Disease,Homologous Wasting Disease,Runt Disease,Graft-vs-Host Disease,Disease, Graft-Versus-Host,Disease, Graft-vs-Host,Disease, Homologous Wasting,Disease, Runt,Diseases, Graft-Versus-Host,Diseases, Graft-vs-Host,Graft Versus Host Disease,Graft-Versus-Host Diseases,Graft-vs-Host Diseases
D006681 HLA-D Antigens Human immune-response or Class II antigens found mainly, but not exclusively, on B-lymphocytes and produced from genes of the HLA-D locus. They are extremely polymorphic families of glycopeptides, each consisting of two chains, alpha and beta. This group of antigens includes the -DR, -DQ and -DP designations, of which HLA-DR is most studied; some of these glycoproteins are associated with certain diseases, possibly of immune etiology. Antigens, HLA-D,Class II Human Antigens,HLA-Dw Antigens,Human Class II Antigens,Ia-Like Antigens, Human,Immune Response-Associated Antigens, Human,Immune-Associated Antigens, Human,Immune-Response Antigens, Human,HLA-D,HLA-Dw,Immune Response Associated Antigens, Human,Antigens, HLA D,Antigens, HLA-Dw,Antigens, Human Ia-Like,Antigens, Human Immune-Associated,Antigens, Human Immune-Response,HLA D Antigens,HLA Dw Antigens,Human Ia-Like Antigens,Human Immune-Associated Antigens,Human Immune-Response Antigens,Ia Like Antigens, Human,Immune Associated Antigens, Human,Immune Response Antigens, Human
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000078404 Epidermal Cells Cells from the outermost, non-vascular layer (EPIDERMIS) of the skin. Epidermal Cell,Epidermic Cells,Cell, Epidermal,Cell, Epidermic,Cells, Epidermic,Epidermic Cell
D000328 Adult A person having attained full growth or maturity. Adults are of 19 through 44 years of age. For a person between 19 and 24 years of age, YOUNG ADULT is available. Adults
D001402 B-Lymphocytes Lymphoid cells concerned with humoral immunity. They are short-lived cells resembling bursa-derived lymphocytes of birds in their production of immunoglobulin upon appropriate stimulation. B-Cells, Lymphocyte,B-Lymphocyte,Bursa-Dependent Lymphocytes,B Cells, Lymphocyte,B Lymphocyte,B Lymphocytes,B-Cell, Lymphocyte,Bursa Dependent Lymphocytes,Bursa-Dependent Lymphocyte,Lymphocyte B-Cell,Lymphocyte B-Cells,Lymphocyte, Bursa-Dependent,Lymphocytes, Bursa-Dependent

Related Publications

Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
January 2003, Neoplasma,
Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
August 2005, Zhongguo shi yan xue ye xue za zhi,
Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
March 2010, Laboratory hematology : official publication of the International Society for Laboratory Hematology,
Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
May 2000, Bone marrow transplantation,
Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
May 2006, Blood,
Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
March 1978, Cellular immunology,
Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
September 2003, Blood,
Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
January 2013, Cell transplantation,
Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
December 2004, Blood,
Marion Nonn, and Wolfgang Herr, and Shamsul Khan, and Mariya Todorova, and Irina Link, and Jochen Thies, and Eva Distler, and Marcus Kaltwasser, and Julia Hoffmann, and Christoph Huber, and Udo F Hartwig
December 1987, Journal of immunology (Baltimore, Md. : 1950),
Copied contents to your clipboard!