Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0018133 (graft-versus-host disease)
18,032 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

We have established a murine model to compare the antileukemic effect of PBPC grafts obtained after treatment with SCF + G-CSF and G-CSF alone. C57/BL6, DBA and Balb/c mice were splenectomized and injected with optimal doses of rhG-CSF (250 microg/kg/day s.c.) or rrSCF (100 microg/kg/day s.c.) or with a combination thereof. On day 5, we determined the hematopoietic potential (number of CD34+ cells, CFUs, total CFC, CFU-gm), the proportion of lymphoid (T, NK and B cells) and myeloid components and graft-versus-leukemia activity after allogeneic and syngeneic PBPCT and BMT in Balb/c mice bearing a B-lymphoblastic leukemia cell line (A20). The absolute number of progenitor cells increased two-fold after administering a combination of G-CSF and SCF as compared to G-CSF alone (1500 vs 940 CD34+ cells/microl; 190 vs 70 total CFC/microl; 150 vs 50 CFU-gm/microl and 6600 vs 3000 CFUs/ml). Although no differences could be detected in the cellular composition, especially in the number of T cells, PBPC grafts mobilized by the combination of G-CSF + SCF demonstrated significantly higher antileukemic activity compared to G-CSF alone (94% vs 71% freedom from leukemia, P < 0.05). Because the incidence of lethal GVHD was similar in both groups, improved GVL activity resulted in superior overall survival. Our data suggest that the higher number of progenitor cells can be harvested after G-CSF + SCF and that grafts mobilized by G-CSF + SCF exert significantly enhanced antileukemic activity compared to those harvested after treatment with G-CSF alone.
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PMID:Superior antileukemic activity of murine peripheral blood progenitor cell (PBPC) grafts mobilized by G-CSF and stem cell factor (SCF) as compared to G-CSF alone. 971 86

Patients with advanced acute leukemia (AL) have a poor prognosis with death due to disease or complications of therapy. High-dose chemoradiotherapy followed by allogeneic marrow transplantation (BMT) has been used to overcome resistance of the leukemic clone resulting in long-term survival of up to 20%. Due to lack of suitable related donors BMT from an HLA-compatible unrelated donor (MUD) has been increasingly applied in these patients during the last years. Between January 1991 and August 1997 twenty five patients with advanced acute myeloid (n=19) or lymphoid (n=6) leukemia, 11 males and 14 females, age 22 to 41 (median 32) years received MUD (n=22) or 1-antigen mismatched unrelated donor (n=3) grafts. In four patients an autologous BMT had been performed previously. For conditioning all patients were given total body irradiation containing regimens. Graft-versus-host disease (GVHD) prophylaxis consisted of cyclosporine (CSA) and methotrexate (n=24) or CSA and methylprednisone (n=1). In 23 patients (92%) class II region compatibility was assessed by DRB1, DRB3, DRB5, and DQB1 allele typing by hybridization of amplified DNA with ligation based typing. In 2 patients HLA-DR typing was performed by two colour fluorescence cytotoxicity test and mixed lymphocyte cultures. As of November 1997 10/25 patients (40%) are surviving leukemia-free after a median observation time of 17 (range, 3 to 38) months. Transplant-related mortality was an overall of 36% and 28% in patients receiving their first BMT. In 6/25 patients (24%) relapse occurred 2 to 26 months after BMT. Incidence of acute GVHD grade I to IV was 85%. The probability of relapse projected at 3 years was 35%. High-dose chemoradiotherapy followed by MUD marrow infusion has a curative potential for patients with advanced acute leukemia and offers the chance of long-term leukemia-free survival. Currently, up to 80% of patients with acute myelogenous leukemia (AML) and acute lymphoid leukemia (ALL) under the age of 50 years achieve complete hematological remission (CR) with conventional dose chemotherapy. However, in patients who are refractory to induction chemotherapy or relapse prognosis is still poor. There, high-dose chemoradiotherapy followed by allogeneic marrow infusion has been used to overcome resistance of the refractory leukemic clone and has resulted in long-term survival. For selected patients lacking a human leukocyte antigen (HLA) compatible family donor marrow transplantation (BMT) with a suitable unrelated marrow donor (MUD) has become a feasible and effective treatment. Here, we report our experience in patients with advanced acute leukemia given marrow grafts from unrelated donors.
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PMID:Matched unrelated donor marrow transplantation in patients with advanced acute leukemia. 991 36

Allogeneic bone marrow transplantation (BMT) is a common treatment of hematologic malignancies. Recurrence of the underlying malignancy is a major cause of treatment failure. Donor-derived cytotoxic T lymphocytes (CTLs) specific for patients' minor histocompatibility antigens (mHags) play an important role in both graft-versus-host disease (GVHD) and graft-versus-leukemia (GVL) reactivities. mHags HA-1 and HA-2 induce HLA-A*0201-restricted CTLs in vivo and are exclusively expressed on hematopoietic cells, including leukemic cells and leukemic precursors, but not on fibroblasts, keratinocytes, or liver cells. The chemical nature of the mHags HA-1 and HA-2 is known. We investigated the feasibility of ex vivo generation of mHag HA-1- and HA-2-specific CTLs from unprimed mHag HA-1- and/or HA-2-negative healthy blood donors. HA-1 and HA-2 synthetic peptide-pulsed dendritic cells (DCs) were used as antigen-presenting cells (APC) to stimulate autologous unprimed CD8(+) T cells. The ex vivo-generated HA-1- and HA-2-specific CTLs efficiently lyse leukemic cells derived from acute myeloid leukemia (AML) and acute lymphoid leukemia (ALL) patients. No lytic reactivity was detected against nonhematopoietic cells. Sufficient numbers of the CTLs can be obtained for the adoptive immunotherapy purposes. In conclusion, we present a feasible, novel therapy for the treatment for relapsed leukemia after BMT with a low risk of GVHD.
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PMID:Feasibility of immunotherapy of relapsed leukemia with ex vivo-generated cytotoxic T lymphocytes specific for hematopoietic system-restricted minor histocompatibility antigens. 1063 95

Induction of an optimal immune response will likely be a prerequisite for successful immunotherapy of human leukemias and other malignancies. Dendritic cells are highly effective at inducing an immune response to antigens to which the host is unresponsive, while transgenic expression of the costimulator molecule CD40 ligand (gp39/CD154) and the T cell growth factor interleukin 2 (IL2) are also able to augment immune responsiveness. We therefore investigated whether a combination of these two distinctive approaches to immunostimulation could safely increase the anti-tumor immune response compared to each stimulus alone. We injected BALB/CBYJ mice with syngeneic dendritic cells (DC) exposed to A20 lymphoblastic leukemia cell-derived peptides and proteins which had been acid-eluted from the cell surface. In additional mice, the pulsed DC were mixed with genetically modified syngeneic fibroblasts that were expressing CD40 ligand or secreting interleukin 2 (IL2). Three days after their third, weekly, vaccination, they were challenged with parental A20 cells. Tumor growth was suppressed by responses to pulsed DC alone (P < 0.02). This suppression was further enhanced when pulsed DC were coinjected with fibroblasts expressing CD40 ligand and IL2 (P < 0.0005 compared to DC alone) even though CD40 ligand and IL2-expressing fibroblasts alone offered no significant protection in this model. Mice receiving the full complement of immunostimulants either failed to develop visible tumors or developed small tumors which quickly necrosed and regressed, allowing the mice to become long term tumor-free survivors. Antibody mediated depletion of either CD4+ or CD8+ T-cell subset significantly reduced the level of protection afforded by the vaccination. However, it became evident that this intensive stimulation of the immune system lead not only to tumor eradication but also to destruction of cells bearing normal self antigens. Hence, 60 days after challenge with A20 cells all mice in the DC/IL2/CD40 ligand group developed a severe, systemic autoimmune disorder that resembled graft versus host disease and manifest itself by significant peripheral blood cytotoxicity against autologous fibroblasts, blood dyscrasias, gross hepatosplenomegaly, cachexia and fur loss. This phenomenon depended on CD8+ cytotoxic T lymphocytes. Our results therefore suggest that the most effective strategies of immunotherapy against leukemia may also exceed the threshold of anergic cells, leading to a loss of self tolerance to normal self-antigens and the induction of an CD8+ anti-self effector response.
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PMID:Autoimmune disease induced by dendritic cell immunization against leukemia. 1037 48

Unmodified allogeneic peripheral blood stem cell transplantation (alloPBSCT) was performed in 20 consecutive acute non-lymphoblastic leukemia (ANLL) patients from their HLA-identical siblings. There were 11 males and 9 females. Median age was 34 years (range 17-43). Donors were primed with 2.5-15 micrograms/kg/day s.c. granulocyte-colony stimulating factor (G-CSF, Neupogen, Roche). Conditioning regimen was Bu (16 mg/kg) + Cy (120 mg/kg) in 19 patients and high dose Ara-C (3 gr/m2 twice daily for 3 days) for one patient who relapsed after bone marrow transplantation. Eighteen patients were in CR1. CsA + short-term MTX (n = 19) or CsA alone (n = 1) were used for graft versus host disease (GVHD) prophylaxis. The median number of apheresis procedures for each patient was 2 (2-4). A median of 6.5 (3.2-38.2) x 10(8)/kg MNC or 9.4 (2.2-12.4) x 10(6)/kg CD34+ cells were given. Median days to reach granulocyte of > 0.5 x 10(9)/l and platelet of > 50 x 10(9)/l were 12 (10-14) and 15 (11-35) respectively. Day 100 transplant-related mortality was 20 per cent (4/20). Grade 2 to 4 AGVHD was seen in 8 out of 17 (47%) evaluable patients. Severe AGVHD occurred in 3 out of 17 (18%). Clinical CGVHD of all grades developed in 12 out of 17 (70%) evaluable patients. The mean disease-free survival and overall survival were 17 (range: 8-33 months) and 18 months (range: 10-34 months), respectively. In conclusion, alloPBSCT in ANLL is associated with a faster engraftment, no greater incidence of AGVHD, but increased risk of CGVHD.
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PMID:Allogeneic peripheral blood stem cell transplantation in acute non-lymphoblastic leukemia. 1041 35

We report the occurrence of tuberculosis in a 10-year-old Taiwanese boy, approximately 4 months after he received a matched-related bone marrow transplantation from his sister for acute T-cell lymphoblastic leukemia. After transplantation, grade III acute graft-versus-host disease developed and the patient was treated with prednisolone and cyclosporine. Marrow failure was noted on day 77 post-transplantation, however, after an episode of herpes zoster infection. Interstitial pneumonia, diagnosed on the basis of chest x-ray and computed tomography findings, occurred on day 120. Histologic examination of an open-lung biopsy specimen showed caseating granulomas and a few acid-fast bacilli. The patient died of acute respiratory distress syndrome, despite immediate implementation of antituberculosis therapy. Sputum cultures grew Mycobacterium tuberculosis 5 weeks later. This report demonstrates that the possibility of tuberculosis needs to be considered in immunocompromised patients, and that appropriate prophylaxis should be instituted in areas where tuberculosis is endemic.
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PMID:Acute respiratory distress syndrome due to tuberculosis in a child after allogeneic bone marrow transplantation for acute lymphoblastic leukemia. 1057 42

In this prospective study we analyzed pre-emptive donor leukocyte infusions (DLI) in 82 consecutive patients transplanted with partially T cell-depleted grafts for acute myeloid leukemia, acute lymphoid leukemia, chronic myeloid leukemia, refractory anemia with excess of blasts, refractory anemia with excess of blasts in transformation and multiple myeloma. Donors were HLA-identical siblings. Patients without significant acute (>grade 1) and/or chronic GVHD were scheduled to be treated with DLI (35 patients) and 31 actually received DLI. Patients who developed acute GVHD >grade 1 and/or chronic GVHD were not scheduled to receive DLI and served as a comparison group (47 patients). The median interval between BMT and DLI was 22 weeks. The first six patients received 0.7 x 10(8) CD3+ cells/kg body weight (b.w.). Five out of these six patients developed acute GVHD (grade 1: n = 2, grade 3: n = 2 and grade 4: n= 1) which was more frequent and more severe than we had anticipated. In the next 25 patients the number of T lymphocytes was diminished to 0.1 x 10(8) CD3+ cells/kg b.w. which resulted in less frequent and less severe GVHD. Eight patients in this group developed acute GVHD (grade 1: n = 4, grade 2: n = 4) and three patients had limited chronic GVHD. Patients in the DLI group needed more time to establish complete donor chimerism confirmed by a higher number of mixed chimeras at 6 months after BMT. The projected 3-year probability of disease-free survival was 77% for the 35 patients intended to treat with DLI and 45% for the patients of the comparison group (P = 0.024). Relapse rate at 36 months after transplantation was 18% in the patients who were intended to treat with DLI and 44% in the comparison group (P = 0.026). We conclude that pre-emptive DLI is feasible and generates favorable relapse rates in patients who are at high risk for relapse. Furthermore, the incidence and severity of GVHD disease after DLI is dependent on the number of CD3+ cells infused.
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PMID:Induction of graft-versus-leukemia to prevent relapse after partially lymphocyte-depleted allogeneic bone marrow transplantation by pre-emptive donor leukocyte infusions. 1151 94

In the case of hematopoietic malignancies, direct approach of gene therapy [gene transfer to cancer cells in order to obtain direct therapeutic effects (cell damage)] is difficult, because malignant cells are distributed in the whole body. As for indirect approaches, immuno-gene-therapy is investigated: As a unique approach, suicide gene therapy is applied to donor lymphocyte infusion for relapsed leukemia after bone marrow transplantation. The purpose of gene therapy is to eliminate donor lymphocytes quickly when severe side effects (GVHD) appeared. HSV-TK gene is generally utilized as a suicide gene. Basic studies are conducted to determine whether anti-tumor-angiogenesis therapy is also effective for hematological malignancies. In addition, leukemia development in 2 patients with X-linked severe combined immunodeficiency who underwent hematopoietic stem cell gene therapy is currently a serious problem in the field of gene therapy. In both cases, LMO2 gene was activated through insertional mutagenesis which was caused by retroviral vectormediated gene transfer. This genetic event is considered to be a trigger of T-lymphocytic leukemia development. Further basic studies are needed in terms of safety for stem cell gene therapy.
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PMID:[Hematopoietic malignancies and gene therapy]. 1272 77

Allogeneic peripheral blood progenitor cells (PBPCs) have mostly been mobilized by granulocyte colony-stimulating factor (G-CSF). There is neither clinical nor experimental data available addressing the question if other hematopoietic growth factors or combinations thereof might influence engraftment, graft-versus-host disease (GvHD), and graft-versus-leukemia (GvL) effects after allogeneic peripheral blood progenitor cell transplantation (PBPCT). We used a murine model to investigate these parameters after transplantation of PBPCs mobilized with G-CSF and SCF either alone or in combination. Treatment of splenectomized DBA and Balb/c mice with 250 microg/kg/day G-CSF for 5 days resulted in an increase of CFU-gm from 0 to 53/microl. The highest progenitor cell numbers (147/microl) were observed after treatment with 100 microg/kg/day SCF administered in conjunction with G-SCF. No differences were detected with regard to the number of T cells (CD3+), T cell subsets (CD4+, CD8+), B cells (CD19+) and NK cells (NK1.1+) in PBPC grafts mobilized by G-CSF plus SCF compared to those mobilized with G-CSF alone. The antileukemic activity of syngeneic and MHC-identical allogeneic PBPC grafts was investigated in lethally irradiated Balb/c mice bearing the B-lymphatic leukemia cell line A20. In this model, PBPCs mobilized by G-CSF plus SCF exerted a significantly higher antileukemic activity compared to grafts mobilized by G-CSF alone (94 vs 71% freedom from leukemia at day 100, P<0.05). The antileukemic effect was lowest after BMT (38% freedom from leukemia). Since significant differences in the incidence of lethal GvHD were not observed, improved GVL-activity resulted in superior overall survival. Our data demonstrate that the utilization of specific hematopoietic growth factors not only improve the yield of hematopoietic progenitor cells but can also significantly enhance the immunotherapeutic potential of allografts.
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PMID:Enhanced antileukemic activity of allogeneic peripheral blood progenitor cell transplants following donor treatment with the combination of granulocyte colony-stimulating factor (G-CSF) and stem cell factor (SCF) in a murine transplantation model. 1281 78

Allogeneic stem cell transplantation has a well-defined indication in the treatment of hematological malignancies. The beneficial immune effect of allogeneic marrow transplantation has long been known, but only recently have methods been developed to separate the graft-versus-leukemia (GVL) effect from graft-versus-host disease (GVHD). Animal experiments have shown that lymphocytes from the marrow donor can be transfused without causing severe GVHD if stable chimerism and tolerance is established. First clinical studies have been preformed in patients with recurrent chronic myelogenous leukemia. In these patients complete molecular remissions were induced that persist without further maintenance treatment. These results have been confirmed in larger multicenter studies in Europe and the USA. The best results were obtained in chronic myelogenous leukemia (CML); repeated successes have been reported in relapsing acute myeloid leukemia (AML), myelodysplastic syndromes and multiple myeloma (MMY), and rare responses were reported for acute lymphoid leukemia. Contrary to animal experiments GVHD has been observed in human patients although to a lesser extent than expected in transplants not given immunosuppression. Secondly myelosuppression has been observed in patients treated with relapsing CML. In CML the incidence of GVHD could be reduced by depleting CD8+ T cells from the donor lymphocyte concentrate. Alternatively only small numbers of T lymphocytes can be transfused and in the case of failing responses, the numbers of donor lymphocytes may be increased. Results in recurrent AML have been improved by the use of low-dose cytosine arabinoside, granulocyte-macrophage colony-stimulating factor and granulocyte colony-stimulating factor mobilized blood cells as compared to lymphocytes only. In MMY the response rate is higher than in AML, but the remissions are of limited duration in most patients. Several protocols have been designed to include preemptive donor lymphocyte transfusion in patients with a high relapse risk after transplantation. Problems remain to avoid chronic GVHD and to circumvent the immune escape mechanisms of leukemia.
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PMID:Adoptive immunotherapy in chimeras with donor lymphocytes. 1458 71


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