Marrow grafting for acute leukemia: results and future treatment strategies.
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Biomedical subjects
Publications and source records attributed to F R Appelbaum.
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It is now almost 2 decades after the first successful human marrow transplants from HLA-identical siblings for the treatment of life-threatening hematologic diseases. Results have improved, especially for patients transplanted earlier in the course of disease. However, major problems remain in supporting patients through the transplant. More effective and less toxic conditioning regimens are needed. Acceleration of hematopoietic and immunologic reconstitution by use of various cytokines holds promise for decreasing infectious morbidity and mortality. Improved regimens to control acute and chronic GVHD and prevent opportunistic infections will play a major role in the advancement of supportive care of the marrow transplant recipient.
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A murine IgG1 antibody specific for the IL-2-binding site on the human lymphocyte IL-2 receptor beta chain (CD25) was evaluated in 11 patients who developed acute graft-versus-host disease following allogeneic marrow transplantation. All patients had received cyclosporine and methotrexate for prophylaxis of GVHD, either alone (4 cases), or in combination with antithymocyte globulin (4 cases) or with prednisone (3 cases). Patients had developed GVHD at 7-53 days (median 12) after transplantation and had failed treatment with corticosteroids for 3-44 days (median 19). Residual GVHD was of grade II severity in 4 patients, grade III in 5 patients, and grade IV in 2 patients. Sequential patients received monoclonal antibody in escalating doses from 0.1 mg/kg/day to 1.0 mg/kg/day for 7 days. Side effects were fever, respiratory distress, hypertension, hypotension, and chills occurring in 11 of 72 (14%) antibody infusions. Trough antibody levels greater than 6 micrograms/ml were achieved in patients treated with 0.5 or 1.0 mg/kg/day. Four of eight evaluable patients had an IgM antibody response, and one had an IgG response to the murine immunoglobulin. Clinical response of GVHD was evaluated in 10 patients who received the entire course of the antibody treatment. Among 7 patients treated within 40 days from transplantation, one patient had a complete response in the skin as the only involved organ, and 3 patients had a partial response, 2 in the skin and one in the gastrointestinal tract. No responses were achieved with liver disease at anytime or in any organ in patients treated beyond 40 days after transplantation. Since administration of this antibody was well tolerated and some efficacy was observed in patients with acute GVHD treated early after transplantation, there is a rationale for testing this antibody as an agent for prophylaxis of GVHD.
Between October 1979 and January 1988, 101 patients with malignant lymphoma who failed initial induction treatment or relapsed received high-dose combination chemotherapy or chemoradiotherapy followed by infusion of autologous bone marrow. Twenty-eight of the 101 patients survive, 18 of whom are disease-free for a median of 26 (range, 12 to 66) months. The 5-year actuarial probabilities of survival, event-free survival (EFS), and relapse from transplantation were 20%, 11%, and 84%, respectively. Multivariate analysis showed that the likelihood of EFS was decreased among patients transplanted with a Karnofsky score of less than 80%. Recurrent lymphoma after transplant was the most important cause of treatment failure with 36 of 62 relapses occurring within 100 days from marrow infusion. Early, but not late relapse, was more frequent in patients transplanted for advanced lymphoma, and both early and late relapses were increased among patients with impaired pretransplant clinical performance or high-grade histology of lymphoma. Ten patients who relapsed post-transplant are alive, seven in remission. Further improvement of these results will require earlier transplantation, improved preparative regimens, or early posttransplant therapy.
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Both myeloproliferative and hemangiomatous diseases are characterized by abnormal cell proliferation. In myeloproliferative disorders, the abnormal growth involves hematopoietic progenitor cells of the marrow, whereas in hemangiomatous diseases, the abnormal growth involves endothelial cells of capillary blood vessels. Recombinant interferon alfa has shown promise in inducing remission in a number of myeloproliferative diseases, and, more recently, it has also been shown to be effective in treating several hemangiomatous disorders. In neither case is the mechanism of action of interferon alfa completely understood.
Dogs conditioned with 9.2 Gy total body irradiation (TBI) and given histoincompatible marrow transplants have a high rate of graft failure. Engraftment can be achieved by using 18 Gy fractionated TBI as preparative regimen. In this study, we tested the effects of infusing, at the time of histoincompatible marrow transplantation, autologous cells that had been stored before beginning high-dose (18 Gy) TBI. Our aim was to identify the peripheral blood mononuclear cells (PBMC) that contribute to failure of marrow grafts. Marrow graft failure was observed in three of three dogs receiving a mean of 2.1 x 10(8) unfractionated autologous PBMC/kg body weight as well as in two of two dogs receiving a mean dose of 0.075 x 10(8) PBMC/kg. When the dose of PBMC was decreased to 0.01 x 10(8)/kg, engraftment was seen in two of two dogs. These experiments thus established a cell dose response for causing marrow graft failure; further studies evaluated which subset of cells mediated this effect. Infusion of 0.09 x 10(8) nylon wool-nonadherent, plastic-nonadherent PBMC/kg was effective in causing marrow graft failure in three of three dogs. In contrast, infusion of 0.03 x 10(8) autologous monocytes/kg, enriched threefold above the number contained in the lower dose of PBMC causing graft failure, was associated with engraftment in four of six dogs. Infusion of 0.13 x 10(8) PBMC/kg treated with L-leucyl-L-leucine methyl ester (Leu-Leu-OMe), a drug that depletes canine cytotoxic T-lymphocytes (CTL), natural killer (NK) cells, and monocytes, permitted engraftment in three of four dogs. These data suggest that cytotoxic lymphocytes mediate failure of histoincompatible marrow grafts.
Gene products of the major histocompatibility complex (MHC) have been shown to elicit lethal graft-versus-host disease (GVHD) in experimental animals. Antibodies specific for MHC cell surface determinants might therefore be expected to overcome histocompatibility barriers and influence survival of marrow graft recipients. GVHD can be consistently induced in dogs by transplanting donor marrow cells into lethally irradiated, unrelated, mismatched recipients. Three anti-Ia monoclonal antibodies were administered to five canine recipients, each at a dose of 0.2 mg/kg body weight per day intravenously for 10 days, beginning on day 0, the day of transplantation. Eight canine recipients were treated with antidog alloantiserum 10 ml/kg body weight per day intravenously on days -2 to day +20, in addition to receiving postgrafting methotrexate. The antiserum was generated by immunizing a matched littermate of the donor with peripheral blood cells of the recipient before transplantation. Survival was no different in the two groups of dogs, compared with historical controls without antibody treatment. A possible explanation for the failure of anti-MHC antibodies to modify acute GVHD in the dog is the inability of antibody to reach critical tissue sites targeted in GVHD.
In order to measure the impact on long-term survival of rabbit leukocyte antigen (RLA) matching and the administration of cyclosporine (CSP) in allogeneic marrow transplantation of irradiated adult rabbits, four groups of five rabbits each were studied. Group 1 consisted of RLA-mismatched animals that did not receive CSP following transplant. All five animals died of infectious complications or graft-versus-host disease (GVHD) (median survival 12 days, range 6-20 days). Group 2 consisted of animals that were similarly mismatched but treated with CSP as postgrafting immunosuppression. All animals also died of GVHD or infection but the median survival was extended to 18 days, range 12-27 days. Group 3 consisted of RLA-matched animals that did not receive CSP. Median survival was 65 days, range 27-121 days, and two are still alive at 120 and 121 days after transplant. Three of five animals died of GVHD. The only group of animals to consistently achieve long-term survival was group 4; these animals were RLA matched and were treated with CSP. Five of five animals survived with a median survival of 564 days following transplant, range 220-806 days. All five became complete hematopoietic chimeras as determined by cytogenetic analysis of bone marrow lymphocytes. Thus, long-term survival after allogeneic bone marrow transplantation in the irradiated adult rabbit was achieved and was dependent upon the use of RLA-matched donors and the administration of cyclosporine as GVHD prophylaxis.
One hundred thirty-six patients underwent radionuclide ventriculography as part of an evaluation prior to bone marrow transplantation. One hundred twenty-six who were considered suitable transplant candidates began conditioning chemotherapy or chemoradiotherapy and were retrospectively evaluated for development of cardiac toxicity. The cumulative pretransplant anthracycline dose in patients who began the conditioning regimen was not a significant predictor for decreased pretransplant ejection fraction (EF) or severe cardiac toxicity following transplantation. Fourteen patients (10%) had EFs less than 50%. Of these, 10 began the preparative regimen and two (20%) experienced grade III or IV cardiac toxicity (95% confidence interval (CI) 2.5-56%) versus five of 116 patients (4%; CI 1.4-9.8%) with EFs greater than or equal to 50% (p = 0.096). The incidence of grade III or IV cardiac toxicity among patients with any history of cardiac dysfunction or with an abnormal physical examination prior to transplant was 9% (two of 22) versus 5% among the remaining patients (five of 104) (p = 0.605). Though transplant-related cardiac toxicity may be more common in patients with mildly reduced EFs, the small number of patients with reduced EFs referred for transplant does not warrant the routine pretransplant screening of all patients with radionuclide ventriculography.
Ten dogs were given 9.2 Gy of total body irradiation and autologous bone marrow infusion followed by ten daily transfusions of leukocytes for a total of 11.5 to 36.2 (median, 18.8) x 10(8)/kg obtained via leukapheresis from histoincompatible unrelated donors. Four dogs were given unirradiated leukocytes, and all developed graft-versus-host disease (GVHD). In contrast, only two of three dogs given leukocytes irradiated with 20 mJ/cm2 of ultraviolet (UV) light (200 to 300 nm), and none of three dogs given leukocytes irradiated with 1,000 mJ/cm2 developed GVHD. These data indicate that UV irradiation abrogates the alloreactive potential of transfused leukocytes, and suggest that UV irradiation can be used to prevent the development of transfusion-induced GVHD.
We explored the ability of fractionated total body irradiation (TBI) given at a rate of 7 cGy/min from opposing dual 60Co sources at otherwise lethal doses of 450, 600, 700, 800, and 920 cGy to condition dogs for marrow grafts from DLA-identical littermates. Results were compared with those of a previously reported study using single-dose TBI administered under otherwise identical conditions. Fractionated TBI was less immunosuppressive than single-dose TBI, as evidenced by a significantly higher rate of graft rejection (P = .001). Specifically, sustained allogeneic engraftment was observed in only two of 18 (11%) dogs that received 600 to 800 cGy fractionated TBI as compared with 11 of 17 (65%) dogs that received comparable doses of single-dose TBI. Only at 450 cGy (none of the ten dogs studied had sustained engraftment) and at 920 cGy (four of five dogs that received fractionated and 20 of 21 dogs that received single-dose TBI engrafted) were we unable to find differences between the two modes of radiation. Most dogs that rejected their graft survived with autologous recovery (13 of 22 that received fractionated and eight of 12 that received single-dose TBI; P = .49), presumably the result of extended support provided by the transient allogeneic grafts. We conclude that at equivalent doses fractionated TBI is significantly less effective than single-dose TBI to condition DLA-identical littermate dogs for marrow transplantation. These findings have implications for the design of conditioning programs in clinical transplantation, especially when T-cell-depleted marrow grafts are used.
To assess the influence of graft-versus-host disease (GVHD) on recurrent leukemia and survival after allogeneic marrow transplantation, we studied 1,202 patients with acute nonlymphocytic leukemia (ANL), acute lymphocytic leukemia (ALL), and chronic myelogenous leukemia (CML) given unmodified marrow grafts from HLA-identical siblings. Proportional hazards regression models using acute GVHD and chronic GVHD as time-dependent covariates demonstrated a significant association of GVHD with a decreased relative risk (RR, 0.33 to 0.42) of relapse in patients with ANL, ALL, and CML transplanted in advanced disease. Among patients developing either acute or chronic GVHD, treatment failure (that is, mortality or relapse) was decreased in patients with ALL transplanted in relapse (RR = 0.70, P less than .033) and CML in blast crisis (RR = 0.37, P less than .009). This effect was independent of age, sex, preparative regimen, GVHD prophylaxis, or length of follow-up. Five-year actuarial estimates were derived for the subset of 657 patients who survived in remission 150 days after transplant and were at risk for development of chronic GVHD. Among patients with ANL in first remission or CML in chronic phase, GVHD had an adverse effect on survival and no apparent influence on relapse. Among patients with ANL and ALL transplanted in relapse, the probability of relapse after day 150 was 74% without [corrected] GVHD, 45% with acute and chronic GVHD, 35% with [corrected] only acute GVHD, and 34% with only chronic GVHD (P less than .001). Actuarial survival in these four GVHD groups was 25%, 34%, 59%, and 62%, respectively (P less than .009). Among patients with CML in acceleration or blast crisis, the probability of relapse after day 150 was 65% without GVHD and 36% with acute and/or chronic GVHD (P less than .017). We conclude that acute and chronic GVHD were associated with a durable antileukemic effect and improved survival in patients transplanted in advanced stages of ALL and CML.
The occurrence of graft-versus-host disease (GVHD) after allogeneic bone marrow transplantation for leukemia is thought to decrease the probability of recurrence. To study this effect (called adoptive immunotherapy) we modified the prophylaxis of GVHD in patients with advanced hematologic neoplasms (mostly leukemia) who received bone marrow transplants. Patients under 30 years of age were randomly assigned to one of three regimens of post-transplantation immunosuppression: Group I (n = 44) received a standard course of methotrexate for 102 days after transplantation, Group II (n = 40) received an abbreviated (11-day) course of methotrexate, and Group III (n = 25) received the standard course of methotrexate plus viable buffy-coat cells from the marrow donors. All 109 patients received cyclophosphamide (60 mg per kilogram of body weight on each of two days), total-body irradiation (2.25 Gy daily for seven days), and unmodified marrow from HLA-identical sibling donors. The frequency of GVHD of Grades II through IV was 25 percent in Group I, 59 percent in Group II, and 82 percent in Group III (P = 0.0001). The incidence of chronic GVHD, however, did not differ significantly among the groups (33, 51, and 44 percent, respectively), nor did the five-year probability of recurrence of disease (38, 45, and 33 percent, respectively). However, mortality from causes other than cancer was 34 percent in Group I, 45 percent in Group II, and 64 percent in Group III (I vs. III, P = 0.024); the deaths were due primarily to infections complicating the course of GVHD. With a median follow-up of 5.1 years (range, 3.9 to 7.4), disease-free survival was 41 percent in Group I, 30 percent in Group II, and 24 percent in Group III (the differences were not statistically significant). We conclude that abbreviating methotrexate prophylaxis or infusing donor buffy-coat cells increased the incidence of acute GVHD and related mortality without altering the incidence of chronic GVHD or the recurrence of malignant disease.