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Biomedical subjects

J M Rappeport

Publications and source records attributed to J M Rappeport.

At least 19 recordsLinked to original sources

Deficient T cell granulocyte-macrophage colony stimulating factor production in allogeneic bone marrow transplant recipients.

The proliferation and differentiation of donor hematopoietic progenitor cells in bone marrow transplantation (BMT) recipients is influenced by hematopoietic growth factors, which could derive from either T cells or adherent stromal bone marrow cells, or both. In this study of 20 BMT recipients, we asked whether T lymphocytes arising from donor bone marrow grafts were able to express normal levels of granulocyte-macrophage colony stimulating factor (GM-CSF) mRNA, and to secrete normal levels of soluble GM-CSF in response to the mitogen phytohemagglutinin. We have found that T cells obtained up to 18 months following BMT express little or no PHA-induced GM-CSF message. T cell GM-CSF secretion in response to PHA is also reduced or absent. This T cell GM-CSF defect was observed in all patients studied, whether or not donor bone marrows had undergone T cell depletion. This defect likely reflects a broader deficit in mitogen-induced lymphokine production. This defect likely contributes to BMT recipients' blunted responses to infections, and contributes to graft failure in T cell-depleted transplants.

Adolescent

Bone marrow transplantation for the Wiskott-Aldrich syndrome. Long-term follow-up.

Wiskott-Aldrich Syndrome (WAS) is a sex-linked disease characterized by immunodeficiency and thrombocytopenia. Supportive treatment of this disease is inadequate and bone marrow transplantation has been reported to result in excellent survival. The long-term follow-up of 8 male patients who received bone marrow transplantation for the WAS is reported here. All of these patients received ablative preparative treatment consisting of ATS (antithymocyte serum), cytoxan and either busulfan or TBI (total body irradiation). Bone marrow was transplanted from an HLA-matched donor. Seven of eight of these male patients have had excellent engraftment of their transplant and now have adequate lymphocyte and platelet function. In addition, they have had good growth and development. This suggests that ablative preparative treatment followed by early bone marrow transplantation from an HLA-matched donor is a highly successful therapy for this congenital disease.

Adolescent

Bone marrow transplantation for myelodysplasia and secondary acute nonlymphoblastic leukemia.

Twenty-three patients with primary myelodysplasia (MDS) or secondary myelodysplasia/acute nonlymphocytic leukemia (MDS/ANLL) were treated with allogeneic or syngeneic bone marrow transplantation (BMT). Only one patient was in a chemotherapy-induced hematologic remission. Graft-versus-host disease prophylaxis included methotrexate, methotrexate plus cyclosporine, cyclosporine, or T-cell depletion using one of two anti-CD5 monoclonal antibodies. For patients with primary MDS, the median age was 19 years (range, 11 to 41 years) and the actuarial disease-free survival was 56% +/- 21% (median follow-up, 2 years; range, 0.8 to 5 years). There were three graft failures (two with autologous recovery) and two early deaths. Outcome appeared to be related to French-American-British (FAB) classification. For patients with secondary MDS/ANLL, the median age was 28 years (range, 3 to 16 years) and the actuarial disease-free survival was 27% +/- 13% (median follow-up, 5 years; range, 2.5 to 8.5 years). There were no graft failures, two relapses, and four early deaths. The presence of marrow fibrosis per se did not predict for graft failure (P = .21); however, the use of T-cell depleted marrow in patients with marrow fibrosis resulted in graft failure in three of five individuals. Our results suggest that in patients with primary MDS or secondary MDS/ANLL, BMT should be considered early in the course of the disease, and that attempts at inducing a remission prior to BMT appeared to be unnecessary. In MDS patients with marrow fibrosis, T-cell depletion should be avoided.

Actuarial Analysis

Monoclonal and oligoclonal gammopathy after bone marrow transplantation.

Serial serum protein electrophoreses were performed on 60 patients undergoing allogeneic and syngeneic bone marrow transplantation (BMT). More than 50% of patients (31 of 60) developed transient oligoclonal and monoclonal gammopathies that appeared an average of 84 days posttransplantation (range 27 to 336 days) and persisted an average of 175 days (range 14 to 652 days). Immunofixation analysis revealed 82% of the M components to be of the immunoglobulin G (IgG) type and 18% to be IgM; 56% were kappa and 44% were lambda. A strong correlation between development of graft versus host disease (GVHD) and appearance of M components was observed (73% incidence in GVHD patients v 27% in non-GVHD patients, P = .0003). Two of the three syngeneic graft recipients also developed monoclonal gammopathies. Evidence of oligoclonal circulating B-cell populations was found in 68% of patients posttransplantation by flow cytometric B-cell clonal excess assay. No correlation of recovery of particular B- or T-lymphocyte subsets and development of M components was seen. The development of transient oligoclonal and monoclonal gammopathies after transplantation may be a ubiquitous finding reflecting recapitulation of early B-cell ontogeny.

B-Lymphocytes

Regulation of cytotoxic T lymphocyte-mediated graft rejection following bone marrow transplantation.

Cytotoxic T lymphocytes have been implicated as the effector cell mediating graft rejection following human allogeneic bone marrow transplantation. We have studied a BMT patient who rejected haploidentical T cell-depleted marrow. In vitro studies demonstrated that the circulating lymphocytes were CD3+ and CD8+, of recipient origin, and exhibited selective cytotoxicity against donor-specific class I major histocompatibility complex antigens. Cytotoxicity was inhibited by monoclonal antibodies directed against CD3, CD8, CD2, and lymphocyte function-associated antigen-1 on the T cell, and against MHC class I proteins on the target cell. Furthermore, these circulating cells inhibited the in vitro growth and differentiation of enriched donor bone marrow progenitor cells, an inhibition that was partially reversed by anti-CD3 MAb. Donor-specific recipient-derived CTL may mediate resistance to engraftment, and CTL activity may be inhibited by a number of MAb. The implications of these findings for host preparation and treatment are discussed.

Adolescent

Cirrhosis as a consequence of graft-versus-host disease.

A 28-yr-old woman with severe idiopathic aplastic anemia received an HLA-identical mixed lymphocyte culture nonreactive bone marrow transplant from her brother. In the months after successful engraftment, she developed cutaneous and hepatic graft-versus-host disease, associated with marked cholestatic jaundice. Despite a series of therapeutic maneuvers, cholestasis persisted but remained relatively stable over the ensuing 10 yr. However, serial liver biopsies revealed progressive biliary-type fibrosis culminating in cirrhosis. Subsequently, her clinical course deteriorated and she developed signs of hepatic failure, and ultimately died 10.5 yr after bone marrow transplantation. The evolution of chronic graft-versus-host disease to cirrhosis may be a limiting factor in the long-term survival of this group of bone marrow transplant recipients. The lack of correlation between the stable clinical or biochemical indices and the progressive hepatic disease underscores the need for sequential liver biopsies in patients with sustained liver function abnormalities after bone marrow transplantation.

Adult

B lymphocyte reconstitution after human bone marrow transplantation. Leu-1 antigen defines a distinct population of B lymphocytes.

Differences in the expression of Leu-1 (CD5) define two populations of recovering B cells after human marrow transplantation, Leu-1+ and Leu-1- B cells. The Leu-1+ B cells were polyclonal, of donor origin, and did not express detectable interleukin 2 receptor. Leu-1+ B cells generally appeared 2-4 wk after marrow grafting and often preceded the recovery of Leu-1- B cells. Acute and chronic graft vs. host disease (GvHD) resulted in the recovery of significantly fewer Leu-1+ B cells, whereas Leu-1- B cells were only decreased in acute GvHD. Multivariate analysis showed no significant effect of age, disease, prednisone or azathioprine, or ex vivo treatment of the marrow with anti-Leu-1 and complement on recovery of Leu-1+ and Leu-1- B cells, independent of the effects of GvHD. Leu-1+ B cells are a major lymphocyte population posttransplant. They may reflect a stage of differentiation of normal B cells or a separate B cell lineage.

Antibody Formation

Decreased hematopoietic accessory cell function following bone marrow transplantation.

Hematologic engraftment following bone marrow transplantation requires not only pluripotent stem cells but also functioning accessory cells whose trophic factors support the proliferation and differentiation of stem cells and progenitors to mature blood cells. To better understand the regulation of hematopoiesis following transplantation, we studied hemopoietic accessory cell function in bone marrow transplant recipients 3 weeks to 10 months following transplantation. In general, hematopoietic accessory cell function was decreased following bone marrow transplantation. Sequential fractionation of accessory cells demonstrated that adherent cells often produced near-normal functional burst-promoting activity (BPA) and granulocyte-macrophage colony-stimulating activity (GM-CSA), but Fc receptor-positive (Fc+) cells and T cells uniformly produced greatly reduced BPA and GM-CSA, as compared to transplant donor cells. This cellular deficiency was corrected by soluble burst-promoting activity and granulocyte-macrophage colony-stimulating activity and so appeared to be due to the failure of accessory cells to produce trophic hormones. Limiting-dilution analysis (LDA) for proliferating T-cell precursors demonstrated a greatly reduced frequency in phytohemagglutinin-responsive cells, supporting the role of deficient hematopoietic growth factor production by activated T cells in transplant recipients. This hemopoietic accessory cell defect may thus reflect more generalized lymphocyte dysfunction in these patients. Hematopoiesis following bone marrow transplantation appears to rely upon growth factors released by accessory cells in the adherent layer.

Adolescent

Retarded recovery of functional T cell frequencies in T cell-depleted bone marrow transplant recipients.

We have studied the effect of removing donor T cells by treatment with the monoclonal antibody Leu-1 and complement before marrow transplantation on the regeneration of functionally competent T lymphocytes in the blood at selected times after transplant. Using sensitive limiting-dilution methods that allow us to enumerate helper, cytotoxic, and proliferating T lymphocyte precursors, we report that regeneration of a functional T cell compartment is more severely impaired for the first 180 days after transplantation in those patients given T cell-depleted bone marrow than in recipients of untreated marrow. After this first 6 months, however, patients given T cell-depleted bone marrow had blood T cell frequencies comparable to those observed in patients given untreated marrow. Diminished frequencies of reactive T cells in recipients of depleted marrow could leave them more susceptible to infection or to the recurrence of neoplastic cells.

Bone Marrow Cells

HTLV-III infection after bone marrow transplantation.

We prospectively documented the development of a fatal, secondarily acquired severe immunodeficiency in a 19-year-old man who underwent uncomplicated bone marrow transplantation. He had no graft v host disease (GVHD) and had normal recovery of his immune system as determined by lymphocyte phenotyping, mitogenic responses of his peripheral blood lymphocytes, and his ability to secrete immunoglobulin. This alteration in immunity was associated with the acquisition of antibody to HTLV-III. His only risk factor for the development of HTLV-III infection was the transfusions he had received during the transplant and recovery period. Two of his 54 transfusions were from an asymptomatic individual at high risk for acquired immunodeficiency syndrome (AIDS), who was subsequently found to be seropositive for anti-HTLV-III and from whom HTLV-III was isolated. The loss of immunocompetence in patients without chronic GVHD disease is unusual, and our data support the view that this patient's immunodeficiency was due to HTLV-III. When bone marrow transplant recipients without chronic GVHD develop late opportunistic infections, consideration should be given to transfusion-associated AIDS.

Acquired Immunodeficiency Syndrome

Cyclophosphamide cardiotoxicity: an analysis of dosing as a risk factor.

Patients who undergo bone marrow transplantation are generally immunosuppressed with a dose of cyclophosphamide (CYA) which is usually calculated based on the patient's weight. At these high doses of CYA, serious cardiotoxicity may occur, but definitive risk factors for the development of such cardiotoxicity have not been described. Since chemotherapeutic agent toxicity generally correlates with dose per body surface area, we retrospectively calculated the dose of CYA in patients transplanted at our institution to determine whether the incidence of CYA cardiotoxicity correlated with the dose per body surface area. Eighty patients who were to receive CYA 50 mg/kg/d for four days as preparation for marrow grafting underwent a total of 84 transplants for aplastic anemia, Wiskott-Aldrich syndrome, or severe combined immunodeficiency syndrome. Fourteen of 84 (17%) patients had symptoms and signs consistent with CYA cardiotoxicity within ten days of receiving 1 to 4 doses of CYA. Six of the 14 patients died with congestive heart failure. The dose of CYA per body surface area was calculated for all patients and the patients were divided into two groups based on daily CYA dose: Group 1, CYA less than or equal to 1.55 g/m2/d; Group 2, CYA greater than 1.55 g/m2/d. Cardiotoxicity that was thought to be related to CYA occurred in 1/32 (3%) of patients in Group 1 and in 13/52 (25%) patients in Group 2 (P less than 0.025). Congestive heart failure caused or contributed to death in 0/32 patients in Group 1 v 6/52 (12%) of patients in Group 2 (P less than 0.25). There was no difference in the rate of engraftment of evaluable patients in the two groups (P greater than 0.5). We conclude that the CYA cardiotoxicity correlates with CYA dosage as calculated by body surface area, and that patients with aplastic anemia and immunodeficiencies can be effectively prepared for bone marrow grafting at a CYA dose of 1.55 g/m2/d for four days with a lower incidence of cardiotoxicity than patients whose CYA dosage is calculated based on weight. This study reaffirms the principle that drug toxicity correlates with dose per body surface area.

Anemia, Aplastic

Phenotype of recovering lymphoid cell populations after marrow transplantation.

Four patients who received bone marrow transplants were studied sequentially during the posttransplant period to define the pattern of recovering lymphoid cell types. Three patients received T cell-depleted, HLA-matched marrow, and one received untreated marrow from an identical twin. Blood lymphoid cells were labeled with 25 different pairs of monoclonal antibodies. In each sample, one antibody was conjugated to fluorescein and one to phycoerythrin, thus allowing simultaneous assessment of the expression of the two markers using the fluorescence activated cell sorter. A total of 14 antibodies were used, routinely including HLE, Leu-M3, Leu-4, Leu-1, Leu-5, Leu-9, Leu-6, Leu-2, Leu-3, HLA-DR, Leu-7, Leu-11, Leu-15, and Leu-12. Other antibodies were used to further define some populations. This study has allowed us to define six distinct cell types that have appeared in all four patients by day 90 posttransplantation, and which account for 90-100% of all circulating lymphoid cells. These cell types are (a) T helper cells expressing Leu-1, Leu-4, Leu-9, Leu-5, Leu-3, and variable amounts of HLA-DR; (b) T suppressor cells expressing Leu-1, Leu-4, Leu-9, Leu-5, Leu-2, and variable amounts of HLA-DR; (c) B cells expressing Leu-12, B1, HLA-DR, IgD, and IgM, but none of the T cell antigens; (d) an unusual B cell phenotype (Leu-1 B) expressing all of the B cell markers, and also having low amounts of Leu-1, but none of the other T cell antigens; (e) natural killer (NK) cells expressing Leu-11, Leu-15, Leu-5 but none of the other T cell or B cell markers; (f) NK cells expressing Leu-11, Leu-15, Leu-5, and low levels of Leu-2. Both NK types also express Leu-7 on some, but not all cells. The relative frequencies of these cell types varied among the patients and with time, but the striking findings were the presence of relatively few mature T cells, large numbers of NK cells, and the preponderance of the unusual Leu-1 B cell over conventional B cells in all three patients who developed B cells. Sorting experiments confirmed the NK activity of the major NK cell phenotypes, and DNA analysis confirmed that all of the cells studied were of donor origin. In addition, analysis of Ig genes in one patient showed that the Leu-1 B cells were not clonally rearranged.(ABSTRACT TRUNCATED AT 400 WORDS)

Adolescent

Long-term survivors of adult acute nonlymphocytic leukemia: fact or fiction?

From 1970 to 1982, remission rates from large series of patients with a median age of approximately 50 years continue to exceed 50% and in series of younger patients may be as high as 75%. These improved results have been due to the combination of cytosar and an anthracycline in RI programs. The current major question is whether or not "consolidation" therapy has improved long-term disease-free survival. Our current results, covering the decade 1970-1980 and using more and more intensive RC programs, do not demonstrate an increase in the percentage of long-term survivors. The results from 1980 to 1982 are encouraging, but must be tempered by the fact that late relapses of adult ANLL are becoming more frequent and 2-year follow-up is much too short an evaluation period. In addition, the prolonged survival in program D may be due to the more intensive RI program and not at all related to the RC. At the present time, our experience lends no support to the theory that more intensive RC programs meaningfully prolong long-term survival.

Acute Disease