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Biomedical subjects

F R Appelbaum

Publications and source records attributed to F R Appelbaum.

At least 361 records · Page 20Linked to original sources

L-leucyl-L-leucine methyl ester treatment of canine marrow and peripheral blood cells. Inhibition of proliferative responses with maintenance of the capacity for autologous marrow engraftment.

Incubation of canine marrow and peripheral blood mononuclear cells with L-leucyl-L-leucine methyl ester resulted in the inhibition of mitogen- and alloantigen-induced blastogenesis, the elimination of allosensitized CTL and NK activity, and prevented the development of CTL from pCTL. The effects of these incubations were similar to those described in mice and humans. Additionally, in vitro CFU-GM growth from treated canine marrow was reduced, but could be regained when the Leu-Leu-OMe-treated marrow was cocultured with either untreated autologous peripheral blood mononuclear cells or monocyte-enriched PBMC but not with untreated monocyte-depleted PBMC. Six of seven dogs conditioned with 920 cGy total-body irradiation engrafted successfully after receiving autologous marrow that was incubated with Leu-Leu-OMe prior to infusion. These cumulative results indicate that incubation with Leu-Leu-OMe is a feasible method to deplete canine marrows of alloreactive and cytotoxic T cells prior to transplantation.

Animals↗

Toxicity trial of prophylactic 9-[2-hydroxy-1-(hydroxymethyl)ethoxymethyl]guanine (ganciclovir) after marrow transplantation in dogs.

The effects of 9-[2-hydroxy-1-(hydroxymethyl)ethoxymethyl]guanine, or ganciclovir, administered during the immediate posttransplant period to dogs given total-body irradiation and autologous marrow transplants were studied. Doses of ganciclovir of 3.0 mg/kg (body weight) per day were well tolerated without detectable delay in hematopoietic recovery, whereas doses of 5.0 mg/kg per day were associated with delayed platelet recovery.

Acyclovir↗

Regimen-related toxicity in patients undergoing bone marrow transplantation.

Bone marrow transplantation is associated with significant morbidity and mortality, some of which is due to high-dose chemoradiotherapy. In order to quantitate toxicity that was felt to be due to the preparative regimen (termed regimen-related toxicity [RRT]), a system was developed in which toxicities were graded from 0 (none) to 4 (fatal). One hundred ninety-five patients who underwent marrow transplantation for leukemia were studied retrospectively to determine whether toxicities that were clinically felt to be due to the preparative regimen were influenced by other factors such as disease status, graft-versus-host disease (GVHD) prophylaxis, and allogenicity. All patients developed grade I toxicity in at least one organ, and 30 developed grades III-IV (life-threatening or fatal) RRT. RRT was more common in relapsed patients v remission patients (P = .04), in those receiving 15.75 Gy total body irradiation (TBI) v 12.0 Gy TBI (P = .028), and in those receiving allogeneic marrow v autologous marrow (P = .0029). Autologous marrow recipients did not develop grades III-IV toxicity in this study. A multivariate analysis controlling for autologous marrow grafting showed that the dose of TBI was the only statistically significant predictor of grades III-IV RRT. Those patients who developed grade III RRT were unlikely to survive 100 days from transplant, though not all deaths could be attributed to RRT. Patients who developed grade II toxicity in three or more organs were more likely to die within 100 days than those developing grade II toxicity in two or less organs (P = .0027). This system was generally able to distinguish RRT from other toxicities observed in marrow recipients.

Antineoplastic Combined Chemotherapy Protocols↗

High-dose cytarabine and total body irradiation with or without cyclophosphamide as a preparative regimen for marrow transplantation for acute leukemia.

Twenty-nine patients were conditioned for allogeneic marrow transplant with cytarabine (ara-C) (3 g/m2 every 12 hours for 12 doses) and total body irradiation (TBI) (200 cGy daily for six days) with or without cyclophosphamide (CY) (60 mg/kg) to determine toxicity and efficacy. Four patients had chronic myelogenous leukemia (CML) in accelerated phase or blast crisis, and 25 patients had acute leukemia, 24 at stages later than first remission. Three patients (10%) had fatal regimen-related toxicity and another 10% experienced severe toxicity in at least one organ system. The addition of CY to the ara-C and TBI regimen was not associated with an increase in the frequency of severe toxicity. Twenty-five of 29 patients engrafted eight to 33 days posttransplant: three died early before engraftment, and one patient failed to engraft. Ten of 29 patients are alive without disease, and the actuarial probability of disease-free survival for the entire group at 3 years is 33%. Three of ten patients with acute nonlymphocytic leukemia (ANL), six of 15 with acute lymphocytic leukemia (ALL), and one of four with CML are alive and disease free 25 to 42 months (median, 30 months) after transplant. High-dose ara-C (HDara-C) and TBI with or without CY can be administered with approximately the same toxicity as CY plus TBI. Phase III studies appear warranted to determine if these newer regimens provide improved results compared with currently used regimens.

Acute Disease↗

Ovarian function following marrow transplantation for aplastic anemia or leukemia.

One hundred eighty-seven women between 13 and 49 years of age had ovarian function evaluated from 1 to 15 years (median, 4) after marrow transplant for aplastic anemia or leukemia. Among 43 women transplanted for aplastic anemia following 200 mg/kg cyclophosphamide (CY), all 27 less than 26 years of age, but only five of 16 greater than 26 years of age recovered normal ovarian function. Nine of the 43 have had 12 pregnancies, resulting in eight live births, and two elective and two spontaneous abortions. All eight children are normal. Nine of 144 women transplanted for leukemia following 120 mg/kg CY and 9.20 to 15.75 Gy total body irradiation (TBI) recovered ovarian function. Two of these nine have had three pregnancies, resulting in two spontaneous and one elective abortion. The probability of having ovarian failure was 0.35 by 7 years for patients receiving CY alone and was 1.00 at 1 year for patients receiving CY plus TBI (P less than .0001). By 7 years after transplant the probabilities of having normal ovarian function were 0.92 after CY alone and 0.24 after CY plus TBI (P less than .0001). Multivariate analysis showed that TBI was the only factor significantly influencing ovarian failure and that both TBI and greater patient age at transplant were significantly associated with a decreased probability of recovering normal ovarian function. These data demonstrate that after high-dose CY, recovery of ovarian function occurs in younger women and in a minority of older women, but after CY and TBI, recovery occurs in only a few younger women and none of the older women.

Adolescent↗

Prednisone and azathioprine compared with prednisone and placebo for treatment of chronic graft-v-host disease: prognostic influence of prolonged thrombocytopenia after allogeneic marrow transplantation.

We conducted a randomized, double-blind comparison of prednisone and placebo (group I) v prednisone and azathioprine (1.5 mg/kg/day) (group II) as early treatment of extensive chronic graft-v-host disease (GVHD). Patients with platelet counts less than 100,000/microL were placed into therapy with prednisone alone (group III). All three groups received identical doses of prednisone (1 mg/kg every other day) and one double-strength trimethoprim-sulfamethoxazole (TMP-SMX) tablet twice daily. Between January 1980 and December 1983, 179 previously untreated patients were enrolled and 164 were evaluable. Patients randomized to group I (n = 63) and group II (n = 63) were well matched for prognostic factors; those placed into group III (n = 38) had more frequent acute GVHD and progressive onset of chronic GVHD. Median duration of therapy was 2 years. Complications included diabetes (5%), aseptic necrosis (5%) and infection. For groups I, II, and III, the respective incidence of infection was disseminated varicella, 11%, 24%, 34%; bacteremia, 6%, 11%, 34%; and interstitial pneumonia, 5%, 14%, 18%. Recurrent malignancy was the most frequent cause of death and did not differ significantly across the groups. Nonrelapse mortality, however, did differ: 21% in group I, 40% in group II, and 58% in group III (I v II, P = .003; I v III, P = .001). Forty patients in group I, 30 in group II, and 10 in group III survive with a minimum follow-up of 3.8 years. Karnofsky performance scores for 68 survivors are 90% to 100%, scores for seven survivors are 70% to 89% and scores for five survivors are less than 70%. Actuarial survival at 5 years after transplant is 61% in group I, 47% in group II, and 26% in group III (I v II, P = .03; I v III, P = .0001). Treatment with prednisone alone results in fewer infections and better survival than prednisone and azathioprine in standard-risk chronic GVHD. Treatment with prednisone alone is less effective in high-risk patients with thrombocytopenia, and other strategies are required.

Adolescent↗

Alternating-day cyclosporine and prednisone for treatment of high-risk chronic graft-v-host disease.

Therapy of chronic graft-v-host disease (GVHD) has been unsatisfactory in patients with platelet counts less than 100,000/microL. Survival at 5 years after marrow transplant is only 26% in such patients treated with trimethoprim-sulfamethoxazole (TMP-SMX) and every other day with prednisone. Since October 1982, 61 patients with high-risk extensive chronic GVHD were treated with a new alternating-day regimen of prednisone (1 mg/kg every other day) and oral cyclosporine (6 mg/kg every 12 hours every other day) with one double-strength TMP-SMX tablet twice daily. Forty patients (group I) received primary treatment of thrombocytopenic chronic GVHD (median platelet count 35 [range 7 to 87] x 10(3)/microL). Twenty-one patients (group II) received salvage treatment after failing initial prednisone +/- azathioprine. Twenty-one patients in group I and 15 in group II survive with a minimum of 2 years and a median of 3.7 years follow-up. At 4 years after transplant, actuarial survival is 51% (group I) and 67% (group II). Causes of death included interstitial pneumonia (six), relapse (five), GVHD without infection (five), infection (four), organ failure (three), and hemorrhage (two). Mortality increased with the progressive type onset of chronic GVHD and treatment failure. Toxicity included hypertension (13), nephrotoxicity (nine), nausea (seven), aseptic necrosis (five), neurologic abnormalities (four), and diabetes (three). Median cyclosporine levels at four and 36 hours were 296 and 64 ng/mL, respectively. Four patients required permanent discontinuation of cyclosporine, but none required renal dialysis. Karnofsky performance scores for 25 survivors are 90% to 100%, scores for six survivors are 70% to 89%, and scores for five survivors are less than 70%. Alternating-day cyclosporine and prednisone has acceptable toxicity and appears to improve survival in patients with high-risk chronic GVHD.

Adolescent↗

Use of recombinant human granulocyte-macrophage colony-stimulating factor in autologous marrow transplantation for lymphoid malignancies.

The use of recombinant human granulocyte-macrophage colony-stimulating factor (rhGM-CSF) following autologous marrow transplantation for lymphoid malignancies was explored in a phase I/II dose escalation study. rhGM-CSF given as a 2-hour infusion daily for 14 days was well tolerated at doses up to 240 micrograms/m2/day. When compared with 86 disease-matched and treatment-matched historical controls, patients receiving greater than or equal to 60 micrograms/m2/day rhGM-CSF recovered neutrophil and platelet counts more rapidly, had fewer days with fever, and were discharged from the hospital sooner.

Blood Platelets↗

What radiation dose for DLA-identical canine marrow grafts?

In view of reported attempts at marrow grafting after nuclear accidents with a broad range of radiation exposures, the present study explored the total-body irradiation (TBI) conditions needed for engraftment in a canine model by using marrow from DLA-identical littermates. Previous studies have shown that such grafts are consistently successful when recipients are exposed to 920 cGy of TBI delivered at a rate of 7 cGy/min from opposing dual cobalt sources. The present TBI doses were all in the lethal range. Five dogs were administered 450 cGy; seven dogs, 600 cGy; five dogs, 700 cGy; and five dogs, 800 cGy of TBI administered at 7 cGy/min. They received a median of 3.3 x 10(8) marrow cells/kg intravenously after completion of radiation. Results showed transient allogeneic marrow engraftment in all dogs administered the lowest dose of TBI studied (450 cGy). Importantly, transient grafts permitted four of five dogs to live long enough for autologous marrow recovery to occur. At increasing radiation doses, 600, 700, and 800 cGy, the risk of graft failure lessened, with 3 of 7, 2 of 5, and 1 of 5 dogs, respectively, showing graft rejection. Fewer dogs survived with autologous marrow recovery, and more showed sustained allogeneic engraftment (4 of 7, 3 of 5, and 4 of 5 dogs, respectively). We conclude that DLA-identical littermate marrow grafts are beneficial in the setting of otherwise lethal radiation exposures, with most dogs either experiencing sustained allogeneic engraftment or surviving with autologous marrow recovery due to the extended support provided by a transient allogeneic graft.

Animals↗

Marrow transplantation for hematologic malignancies: a brief review of current status and future prospects.

The ability to transplant bone marrow makes it possible to treat patients with hematologic malignancies with doses of systemic radiotherapy or chemotherapy that would ordinarily result in fatal myelosuppression. With this approach, some otherwise incurable patients can be treated successfully. For most hematologic malignancies (acute nonlymphocytic leukemia, acute lymphocytic leukemia, chronic myelogenous leukemia, and malignant lymphoma), if transplantation is delayed until patients have end-stage disease (drug-resistant relapse) or blast crisis, approximately 10 to 20% of patients can be saved. If transplantation is carried out earlier in the course of disease, the outcome improves considerably. Some of the major limitations of marrow transplantation are the need for an appropriate source of marrow, the severe myelosuppression seen in the immediate posttransplant period, the complications of graft-v-host disease (GVHD), and disease recurrence. The use of autologous marrow and the formation of a national donor registry may make transplantation more widely applicable. The availability of growth factors can hasten hematopoietic recovery, making the immediate posttransplant period safer. New immunosuppressive regimens and T-cell depletion of donor marrow can diminish the impact of GVHD. The need for better preparative regimens persists and has emerged as the major requirement for continued progress in marrow transplantation.

Bone Marrow Transplantation↗

Intensive chemotherapy or chemoradiotherapy with autologous marrow support as treatment for patients with solid tumors.

The use of high-dose chemotherapy or chemoradiotherapy with autologous marrow support has had a major impact in the therapy of patients with hematologic malignancies and is now being studied as therapy for patients with solid tumors. In this article the current status of autologous marrow transplantation for solid tumors is reviewed, the major limitations of this approach are described, and several current areas of research aimed at overcoming these limitations are discussed.

Antineoplastic Agents↗

HLA-identical marrow transplantation during accelerated-phase chronic myelogenous leukemia: analysis of survival and remission duration.

Results of HLA-identical allogeneic marrow transplantation were analyzed for 66 patients with accelerated-phase chronic myelogenous leukemia (CML). Multivariate proportional hazards regression models were used to determine disease-related and transplant-related factors associated with posttransplant mortality and relapse. The projected 5-year survival rate was estimated at 18% by the product-limit method. The major causes of death were interstitial pneumonia, infection, and relapse. Splenomegaly at initial diagnosis and longer time interval from diagnosis to transplant were associated with decreased overall survival and event-free survival. Sixteen patients have relapsed between 17 and 1,569 days (median, 486) posttransplant. The use of T-cell-depleted marrow and older age of the donor or recipient were associated with an increased probability of leukemic relapse. Ten of the 16 relapses occurred among the 15 patients who received T-cell-depleted marrow. The actuarial relapse risk 2.5 years posttransplant was 100% in patients administered T-cell-depleted marrow as compared with 25% in patients administered unmodified marrow. The data in this report emphasize the increased risks and relatively poor results that occur when marrow transplantation is deferred until after signs of acceleration appear. When compared with results for patients who received transplants during chronic phase, the poor results seen here in patients administered unmodified marrow stem primarily from increased transplant-related mortality rather than increased relapse risk. The strikingly increased relapse rate associated with the use of T-cell depletion would discourage its use for graft-v-host disease prevention in patients who receive transplants for CML.

Adolescent↗

Simultaneous infusion of high-dose cytosine arabinoside with cyclophosphamide followed by total body irradiation and marrow infusion for the treatment of patients with advanced hematological malignancy.

Nine patients with advanced hematological malignancy were entered into a phase I study to determine the maximum tolerated doses of cytosine arabinoside (Ara-C) and cyclophosphamide (CY) combined with a standard dose of total body irradiation (TBI). Ara-C was administered continuously over 36 h and two doses of CY were given at 24-h intervals during Ara-C administration. TBI was given as 2.0 Gy fractions on each of 6 consecutive days followed by bone marrow transplantation. The initial three patients received a total dose of 6048 mg/m2 of Ara-C and 84 mg/kg of CY, with two of three patients experiencing fatal toxicity. The next two patients received a total dose of 5040 mg/m2 of Ara-C and 70 mg/kg of CY and both experienced fatal toxicity. The next four patients received a total dose of 3024 mg/m2 of Ara-C, 56 mg/kg of CY; two patients had no toxicity but two had grade 4 (fatal) toxicity. Four of the six patients with fatal toxicity did not complete the TBI regimen and two of these did not receive marrow infusion. One patient is alive (greater than 547 days post-transplant) but has relapsed (day 305). It is concluded that phase I trials of regimens containing concurrent administration of Ara-C and CY may not be appropriate due to severe dose-independent toxicity as demonstrated in this study.

Adolescent↗

Recombinant human granulocyte macrophage colony stimulating factor (rhGM-CSF) following autologous marrow transplantation in man.

The use of rhGM-CSF following autologous marrow transplantation for lymphoid malignancies was explored in a Phase I-II dose escalation study. rhGM-CSF given as a 2 hour infusion for 14 days was well tolerated at doses up to 240 micrograms/m2/day. At doses of 60 micrograms/m2/day or more, rhGM-CSF appeared to have biologic activity accelerating both neutrophil and platelet recovery.

Adult↗