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. 2009 Jan;37(1):143-50.
doi: 10.1016/j.exphem.2008.09.011.

Investigation of immunological approaches to enhance engraftment in a 1 Gy TBI canine hematopoietic stem cell transplantation model

Affiliations

Investigation of immunological approaches to enhance engraftment in a 1 Gy TBI canine hematopoietic stem cell transplantation model

Sandra Lange et al. Exp Hematol. 2009 Jan.

Abstract

Objective: Stable mixed hematopoietic chimerism can be established in a canine stem cell transplantation model using a conditioning consisting of total body irradiation (TBI; 2 Gy) and postgrafting immunosuppression with mycophenolate mofetil (MMF) and cyclosporin (CSA). Reduction of TBI had resulted previously in graft rejection in this model. We investigated whether postgrafting stimulation of donor T cells against recipient's hematopoietic antigens or graft augmentation with donor monocyte-derived dendritic cells (MoDC) promote engraftment following 1 Gy TBI.

Materials and methods: All dogs received dog leukocyte-antigen-identical bone marrow transplantation. Dogs were conditioned with either 2 Gy TBI (group 1) or 1 Gy TBI, followed by repetitive recipient hematopoietic cell lysate vaccinations (group 2) or graft augmentation with MoDC (group 3). Immunosuppression consisted of CSA and MMF.

Results: In group 1, four animals remained stable chimeras for >110 weeks, and three rejected their grafts (week 10, week 14, week 16). All dogs in groups 2 and 3 rejected their graft (median: week 10 and 11, respectively). Peak chimerism and engraftment duration was shorter in the 1-Gy groups (p < 0.05) compared to group 1.

Conclusion: Neither postgrafting vaccination nor graft augmentation with MoDC were effective in supporting durable engraftment. Additional modifications are necessary to improve potential strategies aimed at establishment of early tissue specific graft-vs-host reactions.

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Conflict of interest statement

Disclosure: There are no commercial or other associations that might pose a conflict of interest in connection with the submitted article.

Figures

Figure 1
Figure 1
Study design. Three HSCT groups were investigated. Group 1 (control) received unmodified DLA-identical littermate bone marrow (BM) for HSCT following 2 Gy TBI conditioning. Group 2 received unmodified DLA-identical littermate BM for HSCT following 1 Gy TBI conditioning and received recipient haematopoietic cell lysate vaccinations (1 × 105 lysed cells/kg + 125 μg GM-CSF; 3x week [wk 1-5], 1x week [wk 6-9]) for in vivo graft stimulation thereafter. Group 3 received DLA-identical littermate BM enriched with donor monocyte derived dendritic cells (MoDCDonor) for HSCT following 1 Gy TBI conditioning. All dogs received for immunosuppression CSA (days -1 to +35) and MMF (days 0 to +27).
Figure 2
Figure 2
Development of haematopoietic donor chimerism following HSCT. Dogs received 2 Gy conditioning (group 1; a, b; n = 7), 1 Gy conditioning in combination with vaccination (group 2; c, d; n = 7), and 1 Gy TBI plus enrichment of graft with MoDC (group 3; e, f; n = 6). Analyses were performed within the granulocyte (a, c, e) as well as within the PBMC (b, d, f) compartment.
Figure 3
Figure 3
Recipient T-cell proliferation response at different times after HSCT. T-cells were stimulated with irradiated (25 Gy) PBMC of the same dog collected and croypreserved before transplantation. Proliferation was measured using a [3H]-thymidine incorporation assay and has been illustrated as counts per minute. Data are representative of 5 independent experiments done in triplicates (+p < 0.05 compared to pretransplantation [pre Tx]).
Figure 4
Figure 4
Flow cytometric 4 quandrant analyses of the intracellular cytokine production by lymphocytes. Percentages of positive cells are given for each quadrant. The dog received a DLA-identical HSCT but lost its graft eventually on day +98. TNF-α and IFN-γ producing cells seem to increase during the period of graft rejection.

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References

    1. Storb R, Yu C, Wagner JL, et al. Stable mixed hematopoietic chimerism in DLA-identical littermate dogs given sublethal total body irradiation before and pharmacological immunosuppression after marrow transplantation. Blood. 1997;89:3048–3054. - PubMed
    1. Prigozhina TB, Gurevitch O, Zhu J, Slavin S. Permanent and specific transplantation tolerance induced by a nonmyeloablative treatment to a wide variety of allogeneic tissues: I. Induction of tolerance by a short course of total lymphoid irradiation and selective elimination of the donor-specific host lymphocytes. Transplantation. 1997;63:1394–1399. - PubMed
    1. Pelot MR, Pearson DA, Swenson K, et al. Lymphohematopoietic graft-vs.-host reactions can be induced without graft-vs.-host disease in murine mixed chimeras established with a cyclophosphamide-based nonmyeloablative conditioning regimen. Biol Blood Marrow Transplant. 1999;5:133–143. - PubMed
    1. Giralt S, Estey E, Albitar M, et al. Engraftment of allogeneic hematopoietic progenitor cells with purine analog-containing chemotherapy: harnessing graft-versus-leukemia without myeloablative therapy. Blood. 1997;89:4531–4536. - PubMed
    1. Slavin S, Nagler A, Naparstek E, et al. Nonmyeloablative stem cell transplantation and cell therapy as an alternative to conventional bone marrow transplantation with lethal cytoreduction for the treatment of malignant and nonmalignant hematologic diseases. Blood. 1998;91:756–763. - PubMed

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