Search PubMed⌕ Search

Biomedical subjects

F R Appelbaum

Publications and source records attributed to F R Appelbaum.

At least 217 records · Page 12Linked to original sources

Failure of a single cycle of high dose cyclophosphamide followed by intensive myeloablative therapy and autologous stem cell transplantation to improve outcome in relapsed disease.

BACKGROUND: This study attempted to determine the use of a single cycle of high dose cyclophosphamide (60 mg/kg/day x 2) with (N = 16) and without granulocyte macrophage colony stimulating factor (GM-CSF) (N = 12) followed by intensive treatment and autologous stem cell transplantation (ASCT) in patients with relapsed disease. METHODS: Ten patients with multiple myeloma, eight with non-Hodgkin's lymphoma, three with Hodgkin's disease, six with breast cancer, and one with ovarian cancer were studied. Eighteen patients were in resistant relapse (RR) and 10 had sensitive relapses (SRs). All patients had marrow involvement with tumor and had received extensive prior therapy. RESULTS: When responses were assessed just before undergoing ASCT, none of the patients achieved a complete response (CR). Overall, 17 of 28 patients (61%) achieved a partial response (PR). Seven of 18 patients with RR achieved PR (39%). All 10 patients with SR achieved a PR. There were three early deaths. Sixteen patients underwent peripheral blood stem cell (PBSC) collection. Ten of 16 patients received cyclophosphamide plus GM-CSF, and 6 received cyclophosphamide alone. In patients treated with cyclophosphamide plus GM-CSF and cyclophosphamide alone, a median of 5.52 x 10(6) CD34+ cells/kg (range, 0.26-30.49) and 5.72 x 10(6) (range, 1.25-15.66) were collected, respectively. There was no apparent improvement in collection efficiency with GM-CSF. Twenty-two of 28 patients proceeded to ASCT irrespective of response, a median of 45 days (range, 21-203 days) after cyclophosphamide administration. After transplantation, 11 achieved a CR (50%) and 6 a PR (27%). To date, eight patients are alive (median, 679 days; range, 215-1190 days) and five remain in CR more than 6 months (median, 321 days; range, 215-1190 days). All eight surviving patients achieved a PR after high dose cyclophosphamide. CONCLUSIONS: High dose cyclophosphamide reduced the tumor burden by at least 50% in all patients with sensitive disease and in 39% of patients with refractory disease. However, only 5 of 22 patients (23%) remained in CR after ASCT, and all had sensitive disease before the administration of cyclophosphamide. These data suggest that high dose cyclophosphamide followed by intensive treatment and ABMT does not improve the fraction of long term disease free survivors in patients with refractory disease. Future trials would probably be required to demonstrate the utility of intensive treatment in patients with responsive relapse.

Adult↗

HLA-DR-, CD33+, CD56+, CD16- myeloid/natural killer cell acute leukemia: a previously unrecognized form of acute leukemia potentially misdiagnosed as French-American-British acute myeloid leukemia-M3.

We have identified and characterized a previously unrecognized form of acute leukemia that shares features of both myeloid and natural killer (NK) cells. From a consecutive series of 350 cases of adult de novo acute myeloid leukemia (AML), we identified 20 cases (6%) with a unique immunophenotype: CD33+, CD56+, CD11a+, CD13lo, CD15lo, CD34+/-, HLA-DR-, CD16-. Multicolor flow cytometric assays confirmed the coexpression of myeloid (CD33, CD13, CD15) and NK cell-associated (CD56) antigens in each case, whereas reverse transcription polymerase chain reaction (RT-PCR) assays confirmed the identity of CD56 (neural cell adhesion molecule) in leukemic blasts. Although two cases expressed CD4, no case expressed CD2, CD3, or CD8 and no case showed clonal rearrangement of genes encoding the T-cell receptor (TCR beta, gamma, delta). Leukemic blasts in the majority of cases shared unique morphologic features (deeply invaginated nuclear membranes, scant cytoplasm with fine azurophilic granularity, and finely granular Sudan black B and myeloperoxidase cytochemical reactivity) that were remarkably similar to those of acute promyelocytic leukemia (APL); particularly the microgranular variant (FAB AML-M3v). However, all 20 cases lacked the t(15;17) and 17 cases tested lacked the promyelocytic/retinoic acid receptor alpha (RAR alpha) fusion transcript in RT-PCR assays; 12 cases had 46,XX or 46,XY karyotypes, whereas 2 cases had abnormalities of chromosome 17q: 1 with del(17)(q25) and the other with t(11;17)(q23;q21) and the promyelocytic leukemia zinc finger/RAR alpha fusion transcript. All cases tested (6/20), including the case with t(11;17), failed to differentiate in vitro in response to all-trans retinoic acid (ATRA), suggesting that these cases may account for some APLs that have not shown a clinical response to ATRA. Four of 6 cases tested showed functional NK cell-mediated cytotoxicity, suggesting a relationship between these unique CD33+, CD56+, CD16- acute leukemias and normal CD56+, CD16- NK precursor cells. Using a combination of panning and multiparameter flow cytometric sorting, we identified a normal CD56+, CD33+, CD16- counterpart cell at a frequency of 1% to 2% in the peripheral blood of healthy individuals. Our studies suggest that this form of acute leukemia may arise from transformation of a precursor cell common to both the myeloid and NK cell lineages; thus we propose the designation myeloid/NK acute leukemia. Recognition of this new leukemic entity will be important in distinguishing these ATRA-nonresponsive cases from ATRA-responsive true APL.

Acute Disease↗

Effects of granulocyte colony-stimulating factor and stem cell factor, alone and in combination, on the mobilization of peripheral blood cells that engraft lethally irradiated dogs.

The effects of recombinant canine granulocyte colony-stimulating factor (rcG-CSF) and recombinant canine stem cell factor (rcSCF), a c-kit ligand, on the circulation of hematopoietic progenitor and stem cells were studied in a canine model. Administration of rcG-CSF (10 micrograms/kg) for 7 days led to a 5.4-fold increase in CFU-GM/mL of blood, while 7 days of rcSCF (200 micrograms/kg) led to an 8.2-fold increase. Although treatment with low-dose rcSCF (25 micrograms/kg) had no effect on the level of peripheral blood progenitors, 7-day exposure to a combination of G-CSF plus low dose SCF led to a 21.6-fold increase (P = .03). To assess the ability of these factors to increase the circulation of cells capable of rescuing animals after lethal total body irradiation (TBI), 1 x 10(8) peripheral blood mononuclear cells (PBMC)/kg were collected and cryopreserved from animals after 7 days of treatment with G-CSF, SCF or a combination of the two. One month later, animals were exposed to 9.2 Gy TBI and transplanted with the previously collected cells. Control animals transplanted with 1 x 10(8) PBMC/kg collected without pretreatment died with marrow aplasia 11 to 29 days after TBI as did animals treated with only low-dose SCF before cell collection. In contrast, all animals given PBMC collected after G-CSF, high-dose SCF, or a combination of G-CSF plus low-dose SCF recovered granulocyte function. Recovery to 500 granulocytes/microL after transplant took 17, 18.8, and 13.6 days, respectively, (P = .056 for the difference between the combination G-CSF-SCF group and the other two groups). In both the G-CSF and SCF groups, 4 of 5 animals completely recovered while 1 of 5 in each group died with prolonged thrombocytopenia. In the combination group, all 5 animals became long-term survivors. These studies demonstrate that both G-CSF and SCF dramatically increase the level of peripheral blood hematopoietic progenitor and stem cells and support the view that these factors can act synergistically.

Animals↗

Phase I study of recombinant interleukin-1 beta in patients undergoing autologous bone marrow transplant for acute myelogenous leukemia.

A phase I trial was conducted with recombinant human interleukin-1 beta (rhIL-1 beta) in patients undergoing autologous bone marrow (BM) transplantation for acute myelogenous leukemia. rhIL-1 beta was administered at 3 dose levels (0.01, 0.02, 0.05 microgram/kg) by 30 minute intravenous infusion once a day beginning on the day of BM infusion and continuing for a total of 5 doses. A total of 17 patients were entered on the trial, and their results were compared with those of 74 consecutive historical control patients that did not receive colony stimulating factors. Moderate toxicity was observed in all patients. All 17 patients developed fever and chills within 30 minutes after initiation of rhIL-1 beta, and hypotension was observed in 14 of 17 patients 5 to 8 hours after the infusion. A total of 30% of patients required therapy (normal saline or dopamine) for treatment of hypotension. Therefore, dose escalation was discontinued at the 0.05 microgram/kg dose level. The number of days required to achieve an absolute neutrophil count greater than 500 mL in patients who received rhIL-1 beta was less than in historical patients (25 v 34; P = .02). This appeared to correlate with a reduced incidence of infection between days 0 and 28 after BM infusion (12% v 23%; P = .049). Median bilirubin, median creatinine, platelet recovery, and days in the hospital were not different between study patients and historical controls. Survival of patients who received rhIL-1 beta compared with that of historical patients was improved (30% v 20%; P = .04). These possible benefits were achieved at the cost of moderate toxicity during rhIL-1 beta administration.

Adolescent↗

Fractionated versus single-dose total body irradiation at low and high dose rates to condition canine littermates for DLA-identical marrow grafts.

We explored in dogs the immunosuppressive properties of 450 cGy total body irradiation (TBI) delivered from two opposing 60Co sources, as assessed by the criterion of successful engraftment of allogeneic genotypically DLA-identical littermate marrow. Two questions were asked in this study. Firstly, does dose rate affect the immunosuppressive effect of TBI when administered in a single dose? Secondly, does fractionation alter the immunosuppression of TBI when delivered at a very fast dose rate? Dose rates studied included 7 and 70 cGy/min, and fractionation involved four fractions of 112.5 cGy each, with 6-hour minimum interfraction intervals. Six of 7 dogs receiving 450 cGy single-dose TBI at 70 cGy/min showed sustained engraftment of the allogeneic marrow, compared with 1 of 7 dogs receiving single-dose TBI at 7 cGy/min (P = .01). Fractionated TBI at 70 cGy/min resulted in sustained allogeneic engraftment in 3 of 10 dogs, a result that was statistically significantly worse than that with single-dose TBI at 70 cGy/min (P = .03) and not statistically different (P = .24) from that with fractionated TBI delivered at 7 cGy/min (0 of 5 dogs engrafted). A single dose of 450 cGy of TBI delivered at a rate of 70 cGy/min is significantly more immunosuppressive than the same total dose delivered at 7 cGy/min. Fractionated TBI at 70 cGy/min is significantly less immunosuppressive than single-dose TBI at 70 cGy/min and not significantly different from fractionated TBI administered at 7 cGy/min. Results are consistent with the notion that significant DNA repair in lymphoid cells is possible during interfraction intervals at the relatively high dose rate of 70 cGy/min.

Animals↗

Unrelated donor or autologous marrow transplantation for treatment of acute leukemia.

High-dose chemoradiotherapy followed by marrow transplantation from an HLA-matched sibling donor is curative for patients with acute leukemia. Autologous marrow transplantation has been used with success for some patients without such a sibling. Alternatively, the option of performing a transplant from an HLA-matched unrelated donor has been made possible by the recent development of large registries of HLA-typed volunteers. The purpose of this study was to compare the outcomes for patients with advanced leukemia treated by unrelated or autologous marrow transplantation. Forty-three patients with acute myeloid or lymphoid leukemia were transplanted from a closely HLA-matched unrelated donor. Results were compared with those of a disease-, disease-stage-, and age-matched cohort of 77 patients treated with autologous marrow transplantation at the same institution during the same period. Myeloid reconstitution with peripheral granulocyte counts greater than 10(9)/L was achieved in 93% of unrelated recipients and 70% of autologous recipients at a median of 24 and 36 days after transplantation, respectively (P = .0001). The cumulative proportions of patients discharged alive (79% v 77%) and times from transplant to first hospital discharge (35 v 34 days) were not different between unrelated and autologous recipients (P = .65). For patients transplanted in complete remission, relapse occurred after transplantation in 27% of the unrelated and in 55% of the autologous recipients (P = .08). For patients transplanted in relapse, the corresponding posttransplant relapse rates were 48% and 63%, respectively (P = .72). Forty percent of unrelated recipients and 28% of autologous recipients died in remission. Leukemia-free survivals were 33% for unrelated and 25% for autologous recipients transplanted in remission (P = .45), and 12% for unrelated and 5% for autologous recipients transplanted in relapse (P = .75). Unrelated donor transplants appear no less effective than autologous transplants to achieve long-term survival and may be more effective in eradicating leukemia in patients who have failed conventional chemotherapy. Further studies are warranted to assess the relative effectiveness of unrelated and autologous transplantation performed earlier in the course of the disease.

Adolescent↗

Rescue from anti-MHC class II antibody-mediated marrow graft failure by c-kit ligand.

Dogs given 920 cGy of total body irradiation (TBI) followed by autologous marrow infusion uniformly achieve sustained hematopoietic reconstitution. We have previously shown that administration of the anti-MHC class II monoclonal antibody (MoAb) H81.98.21 (IgG2a) at 0.6 mg/kg/d immediately after transplantation results in delayed graft failure. A second noncrossblocking anti-MHC class II MoAb, B1F6, of the same isotype, at the same dose, did not interfere with sustained engraftment, suggesting that the observed effect was epitope dependent. Although higher concentrations of B1F6 were required, in the present study both MoAbs interfered with the propagation of long-term marrow cultures. When MoAb B1F6 was given in vivo at 1.2 mg/kg/d, ie, twice the dose used previously, dogs so treated also developed delayed marrow graft failure. Marrow failure with either MoAb involved myeloid, erythroid, and megakaryocytic lineages. Administration of recombinant canine c-kit ligand/stem cell factor (SCF) for 7 or 21 days posttransplant resulted in reversal of graft failure. Although the short course did induce a broad transient early peak of granulocytes, the longer course of SCF was accompanied by earlier sustained recovery than the short course. In conclusion, therefore, marrow graft failure induced by anti-MHC class II MoAb does not appear to be epitope dependent, involves all hematopoietic lineages, and is overcome by the administration of c-kit ligand.

Animals↗

Effect of recombinant canine granulocyte-macrophage colony-stimulating factor on hematopoietic recovery after otherwise lethal total body irradiation.

Recombinant canine granulocyte-macrophage colony-stimulating factor (rcGM-CSF) was studied in normal dogs and in dogs receiving otherwise lethal total body irradiation (TBI) without marrow transplant. Five normal dogs receiving 25 micrograms/kg of rcGM-CSF by subcutaneous (SC) injection twice daily (BID) for 14 days showed increases in peripheral blood neutrophil counts of three to five times the baseline. Platelet counts decreased during administration of rcGM-CSF to a mean nadir of 52,800. Ten dogs received 400 cGy TBI at 10 cGy/min from two opposing 60Co sources and no marrow graft. Within 2 hours of TBI, rcGM-CSF was begun at a dose of 50 micrograms/kg SC BID for 5 doses and then continued at 25 micrograms/kg SC BID for 21 days. Only 1 of the 10 dogs receiving rcGM-CSF survived with complete and sustained recovery of hematopoiesis. One of 13 historical control dogs survived after 400 cGy with no hematopoietic growth factor or marrow infusion. Results with rcGM-CSF were compared with previous and concurrent data with G-CSF studied in the same model. Of 10 dogs receiving G-CSF, 8 survived with complete and sustained hematopoietic recovery, a significantly better survival than that seen with rcGM-CSF (P = .006). Neutrophil counts were sustained at higher levels after TBI for the first 18 days in the G-CSF group (P < .016) and the neutrophil nadirs were higher. No differences in neutrophil nadirs were noted between the rcGM-CSF and control groups. Dogs treated with rcGM-CSF experienced a more rapid decline of platelet counts than G-CSF-treated or control dogs over the first 18 days (P < .001). The nadir of the platelet count was higher in the control group than in either the G-CSF or rcGM-CSF group and no significant difference was observed between the G-CSF and rcGM-CSF groups. After otherwise lethal TBI (400 cGy) in dogs, rcGM-CSF was not effective in promoting hematopoietic recovery or improving survival.

Animals↗

Retrovirus-mediated gene transduction into canine peripheral blood repopulating cells.

Genetically marked peripheral blood progenitor cells were used to investigate their contribution to long-term hematopoietic reconstitution after autologous marrow and peripheral blood cell transplantation. After autologous marrow harvest and cryopreservation, canine peripheral blood progenitor cells were mobilized in three dogs by treatment with recombinant canine stem cell factor for 8 days. Peripheral blood mononuclear cells were collected and enriched for major histocompatibility complex (MHC) class II antigen-positive cells by avidin-biotin immunoadsorption, thereby enriching for repopulating cells. Subsequently, the cells were cocultivated for 24 hours on irradiated vector-producing packaging cells (PA317/LN), followed by an 11-day incubation in a vector containing long-term marrow culture system. On the day of transplantation, the animals were irradiated with 9.2 Gy total body irradiation (TBI), and transduced peripheral blood cells and untransduced cryopreserved marrow cells were infused within 2 hours of TBI. All three dogs engrafted. Two dogs are long-term survivors showing intermittently G418-resistant marrow-derived colony-forming unit granulocyte-macrophage colonies at a median of 1% and 2%, respectively (range, 1% to 10%), for now up to 48 weeks after transplantation. Neo-specific sequences were detected by polymerase chain reaction in peripheral blood granulocytes for now up to 65 weeks and in peripheral blood lymphocytes for up to 75 weeks after transplantation. Peripheral blood samples of the dogs were free of helper virus and no side effects from the transduction were observed. One of the three dogs died from chronic canine distemper sclerosing encephalitis on day 84, whereas the other two dogs are alive at 15 and 17 months. Our data show successful retroviral transduction of canine peripheral blood repopulating cells. Long-term persistence of marked myeloid and lymphoid cells after transplantation suggests that peripheral blood contains repopulating cells that contribute to long-term hematopoietic reconstitution after otherwise lethal TBI.

Animals↗

Gamma-irradiation of pretransplant blood transfusions from unrelated donors prevents sensitization to minor histocompatibility antigens on dog leukocyte antigen-identical canine marrow grafts.

Pretransplant blood transfusions from a dog leukocyte antigen (DLA)-identical canine littermate marrow donor will sensitize the recipient to non-DLA-linked polymorphic minor histocompatibility antigens, which uniformly results in graft rejection. We observed previously that 2000 cGy gamma-irradiation of marrow donor blood transfusions prevented this sensitization and subsequent marrow graft rejection. The purpose of the present study was to determine whether treatment of unrelated blood transfusions with gamma-irradiation would also prevent sensitization. Conceivably, sensitization to minor histocompatibility antigens might be more efficient or potent and thus more difficult to prevent when those antigens are seen in the context of disparity for DLA antigens. Furthermore, this model, in which sensitization to DLA-identical littermate marrow is caused by unrelated blood transfusions, is directly relevant to the clinical circumstances of human marrow transplantation. We assessed sensitization caused by unrelated blood transfusions by monitoring graft outcome in recipients transplanted with DLA-identical littermate marrow after conditioning with 920 cGy total body irradiation. Two thousand cGy gamma-irradiation of unrelated blood transfusions significantly reduced the incidence of transfusion-induced sensitization of recipients. There was successful marrow engraftment in 15 of 16 (94%, P < 0.003) of these animals in contrast to the previous study in which only 7 of 16 (44%) animals engrafted after they were transfused with unmodified blood on the same schedule. These results suggest that blood transfusions for use in humans, especially for patients with aplastic anemia, should be gamma-irradiated in order to reduce the incidence of marrow graft rejection caused by sensitization to minor histocompatibility antigens.

Animals↗

Post therapy imaging in high dose I-131 radioimmunotherapy patients.

The biodistribution of a trace-labeled I-131 antibody is used to predict the biodistribution of a high dose I-131 antibody for therapy. Internal radiation dose estimates derived from the trace-labeled antibody have been used to determine the I-131 doses in a phase I escalating dose therapy trial for hematologic malignancy. To confirm the hypothesis that the distribution of a trace- and high-dose labeled antibodies are similar, both trace (7-11 mCi, 259-407 MBq) and high-dose (100-800 mCi, 3700-29600 MBq) I-131 radiolabeled antibody infusion were imaged in 12 patients who were treated for leukemia or lymphoma. With specialized imaging techniques using lead attenuation sheets, clearance data from organs were obtained from serial gamma camera images. Biological clearance half times of I-131 from both trace and therapy level doses were in agreement. An exception was a patient who developed human antimouse antibody before therapy, and subsequently had rapid clearance of the therapy dose. The method was feasible, yielded reproducible results, and provided critical data for relating therapy toxicity to radiation absorbed dose estimates.

Biophysical Phenomena↗

High-dose fractionated total-body irradiation, etoposide, and cyclophosphamide followed by autologous stem-cell support in patients with malignant lymphoma.

PURPOSE: To evaluate a high-dose treatment regimen of fractionated total-body irradiation (TBI), etoposide, and cyclophosphamide (Cy) followed by autologous stem-cell transplantation (ASCT) in patients with malignant lymphoma. PATIENTS AND METHODS: Fifty-three patients with non-Hodgkin's lymphoma (NHL; n = 43) or Hodgkin's disease (HD; n = 10) received 12.0 Gy of fractionated TBI, etoposide 60 mg/kg, and Cy 100 mg/kg followed by infusion of autologous hematopoietic stem cells. RESULTS: Thirty-one of 53 patients are alive a median of 643 (range, 177 to 1,144) days after transplant. The 2 year Kaplan-Meier (K-M) estimates of survival, event-free survival (EFS), and relapse for all 53 patients were 54%, 45%, and 43%, respectively. Sixteen of 24 patients with less advanced disease and 10 of 29 patients with more advanced disease survive free of disease for K-M estimates of EFS of 61% and 31%, respectively (P = .006). The K-M estimates of relapse were 34% for patients with less advanced disease and 53% (P = .05) for patients with more advanced disease. The K-M estimates of dying from causes other than relapse were 8% in patients with less versus 25% in patients with more advanced disease (P = .09). CONCLUSION: These data indicate that approximately 60% of patients transplanted early after failure of initial therapy for malignant lymphoma are projected to be disease-free more than 2 years after treatment with fractionated TBI, etoposide, and Cy and infusion of autologous hematopoietic stem cells. The transplant-related mortality rate is low and relapse is the main cause of treatment failure in patients with less advanced disease. For patients with more advanced disease, the K-M estimates of both transplant-related deaths (25%) and relapse (53%) remain major problems.

Adolescent↗

Recombinant human granulocyte-macrophage colony-stimulating factor after autologous bone marrow transplantation for lymphoid cancer: an economic analysis of a randomised, double-blind, placebo-controlled trial.

In a blinded retrospective economic evaluation of a double-blind, randomised, placebo-controlled clinical trial, total utilisation and charges for lymphoid cancer patients who received recombinant human granulocyte-macrophage colony-stimulating factor (rhGM-CSF) or placebo were compared following autologous bone marrow transplantation. The 40 patients enrolled (22 rhGM-CSF, 18 placebo) could have acute lymphoblastic leukaemia, non-Hodgkins lymphoma or Hodgkin's disease, be of any age, and were undergoing autologous bone marrow transplantation in a metropolitan cancer research centre. Main outcome measures consisted of initial hospital lengths of stay (LOS), total and department charges, rehospitalisation rates and charges, and outpatient charges, all inclusive of the first 100 days following bone marrow infusion. The perspective of the study is that of the third party payer. Initial hospitalisation charges were $US54 100 for patients who received rhGM-CSF and $US68 600 for patients who received placebo (p = 0.05). The difference of $US14 500 was 21% less in patients who received rhGM-CSF, mainly due to lower average LOS with rhGM-CSF (24.2 days) compared with placebo (30.8 days). Outpatient charges were $US9500 (rhGM-CSF) and $US6800 (placebo) {p = 0.18}. Total charges, including readmission (10 per group) were $US12 200 lower in the rhGM-CSF group ($US70 300 vs $US82 500, p = 0.19). The use of rhGM-CSF after autologous bone marrow transplantation was shown to result in substantial cost savings during the initial hospitalisation. When comparing total inpatient and outpatient medical charges within the first 100 days following bone marrow infusion, we found no evidence that these savings were negated.

Adolescent↗

Effect of graft-versus-host disease prophylaxis on relapse in patients transplanted for acute myeloid leukemia.

Between November 1978 and September 1988, 184 patients with acute myeloid leukemia in first remission received marrow transplants from HLA-identical siblings after conditioning with 120 mg/kg of cyclophosphamide and 12.0 Gy fractionated total body irradiation. Patients received either cyclosporine (CYA, n = 59), methotrexate (MTX, n = 82), or MTX + CYA (n = 43 as graft-versus-host disease (GVHD) prophylaxis. The probabilities of grades II-IV acute GVHD after CYA, MTX or MTX+CYA were 0.43, 0.48 and 0.28, respectively (p = 0.06). The probability of non-relapse mortality was 0.53, 0.50 and 0.42 at 4 years in patients treated with CYA, MTX, or MTX + CYA, respectively. The probability of relapse was 0.24 in patients receiving CYA, 0.24 in patients receiving MTX and 0.44 in patients receiving MTX + CYA (p = 0.02). The probability of survival at 4 years was 0.54 with CYA, 0.51 with MTX and 0.45 with MTX + CYA. A multivariate analysis of risk factors for relapse examined age, WBC at diagnosis, blast count at diagnosis, percentage of marrow blasts, FAB subtype, the number of remission induction courses to achieve a remission, maintenance therapy, consolidation therapy, marrow cell dose, donor-recipient sex, GVHD prophylaxis regimen and isolation and decontamination in laminar airflow rooms. GVHD prophylaxis with MTX + CYA was independently significantly associated with an increased risk of relapse (relative risk 2.25, p = 0.01). Acute GVHD was associated with increased non-relapse mortality (RR = 3.58, p < 0.0001). The administration of MTX + CYA did not adversely affect survival because patients receiving this regimen experienced less mortality from causes other than relapse when compared with patients receiving either CYA or MTX alone.

Adolescent↗

Hematopoietic growth factors after allogeneic marrow transplantation in animal studies and clinical trials.

The use of hematopoietic growth factors after allogeneic bone marrow transplantation (BMT) was investigated either in a preclinical canine model or in patients. G-CSF administration in dogs after high-dose total body irradiation (TBI) and transplantation of DLA-identical littermate marrow significantly accelerated recovery of peripheral blood neutrophils, monocytes and lymphocytes, but not of platelet counts, without significantly increasing the risks of graft failure or graft-versus-host disease (GVHD). GM-CSF given to patients after HLA-identical sibling BMT was well tolerated at doses < or = 250 micrograms/m2/day and resulted in significantly faster neutrophil recovery compared with matched historical controls. Risks of graft failure, GVHD or relapse were not increased. When GM-CSF was given after matched or 1-antigen mismatched unrelated BMTs, the number of febrile days and septic episodes within the first 28 days was reduced even though neutrophil recovery was not accelerated. Incidences of graft failure, GVHD or relapse were not increased. In recipients of BMT with invasive fungal infections, M-CSF in combination with conventional anti-fungal therapy may have a beneficial effect on survival. Treatment with GM-CSF in patients with graft failure appears to result in improved survival without increasing the risks of GVHD or relapse.

Adult↗

Expression of myeloid antigens by blast cells in acute lymphoblastic leukemia of adults. The Southwest Oncology Group experience.

A subset of adult acute lymphoblastic leukemia (ALL) patients have blast cells which co-express myeloid-associated antigens (MY+ ALL). We have analyzed 113 adult ALL cases for expression of MY-associated antigens (MAA). ALL was diagnosed by standard morphology, cytochemistry, and immunophenotype in central review. MY+ ALL was diagnosed when > or = 20% of lymphoblasts co-expressed CD13 and/or CD33. Overall incidence of MY+ was 31/113 (27%). MAA expression was not significantly correlated with WBC, blast count, hemoglobin, or hematocrit. MY+ cases were more likely to express B-associated antigens, especially CALLA, and to be FAB L2, Ph+, or to have the BCR-ABL translocation by PCR, but these differences were not statistically significant. All patients were induced with a L10M regimen, and 67 (59%) achieved CR: 43/66 (65%) of B MY neg; 14/29 (48%) of B MY+; 10/16 (63%) T MY neg; and 0/2 T MY+. In age-adjusted analyses CR rate did not differ significantly between MY+ and MY neg patients or between B- and T-cell patients. Of the 113 patients, 84 have died and the remaining 29 patients have been followed for a median of 49 months. In proportional hazards regression analyses adjusting for age and WBC, heterogeneity of survival among the four groups was statistically significant (p = 0.021), largely due to MY status. The mortality rate was 85% greater for MY+ patients compared to MY neg patients (two-tailed p = 0.013). By contrast, survival did not vary significantly between B- and T-cell patients. The data indicate that MAA expression is useful for predicting overall survival of adult patients with ALL treated in a L10M protocol. As a predictive factor MAA expression is comparable to the WBC and superior to the more standard stratification by B- or T-cell markers for this group of patients.

Adolescent↗