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Biomedical subjects

R A Clift

Publications and source records attributed to R A Clift.

At least 55 records · Page 3Linked to original sources

Veno-occlusive disease of the liver and multiorgan failure after bone marrow transplantation: a cohort study of 355 patients.

OBJECTIVE: To determine the incidence and clinical course of veno-occlusive disease of the liver (VOD) after bone marrow transplantation and to analyze risk factors for severe VOD. DESIGN: Cohort study of 355 consecutive patients. SETTING: A bone marrow transplantation center. MEASUREMENTS: Each patient was prospectively evaluated for VOD, and many risk factors for severe VOD were analyzed using logistic regression models. The relation of VOD to renal and cardiopulmonary failure was analyzed using time-dependent proportional hazards models. RESULTS: Veno-occlusive disease developed in 190 of 355 patients (54%; 95% CI, 48% to 59%): Fifty-four patients had severe VOD and 136 had mild or moderate VOD. Independent variables derived from a multivariate model for predicting severe VOD included elevated transaminase values before transplantation (relative risk, 4.6; P < 0.0001); vancomycin therapy during cytoreductive therapy (relative risk, 2.9; P = 0.003); cytoreductive therapy with a high-dose regimen (relative risk, 2.8; P = 0.01); acyclovir therapy before transplantation (relative risk, 4.8; P = 0.02); mismatched or unrelated donor marrow (relative risk, 2.4; P = 0.02); and previous radiation therapy to the abdomen (relative risk, 2.2; P = 0.04). Vancomycin therapy was a marker for persistent fever. Multiorgan failure was more frequent among patients with VOD and usually followed the onset of liver disease. CONCLUSIONS: Veno-occlusive disease, which developed in 54% of bone marrow transplant recipients, is frequently associated with renal and cardiopulmonary failure. Pretransplant transaminase elevations, use of high-dose cytoreductive therapy, and persistent fever during cytoreductive therapy are independent predictors of severe VOD.

Acyclovir↗

Autologous marrow transplantation for patients with acute myeloid leukemia in untreated first relapse or in second complete remission.

PURPOSE: This study compares outcomes of autologous bone marrow transplantation (ABMT) in patients with acute myeloid leukemia (AML) in untreated first relapse (REL1) or in second complete remission (REM2). PATIENTS AND METHODS: Forty-seven patients with AML in REL1 (n = 21) or in REM2 (n = 26) were treated with busulfan (BU) and cyclophosphamide (CY) with or without total-body irradiation (TBI) followed by ABMT. All REL1 patients and four REM2 patients had marrow stored during first remission (REM1). Twenty-seven had marrow stored with and 20 without treatment in vitro with 4-hydroperoxycyclophosphamide (4-HC). Eighteen patients received BU and CY and 29 received BU, CY, and TBI. REL1 patients relapsed within a median of 9 months (range, 2 to 26) after marrow harvest and were transplanted a median of 30 days (range, 9 to 87) from detection of relapse. RESULTS: With a median follow-up of 2.1 years (range, 0.4 to 5.3), 19 patients survive in remission (10 of 21 in REL1; nine of 26 in REM2). The actuarial probabilities of relapse-free survival at 2 years for patients transplanted in REL1 and REM2 were 45% +/- 22% and 32% +/- 18%, respectively (P = .33). The corresponding probabilities of relapse were 30% +/- 26% and 44% +/- 23%, respectively (P = .45). No conclusions could be drawn about the benefits of adding TBI to BU plus CY. There were no significant differences in neutrophil or platelet recovery or in posttransplant probabilities of relapse and nonrelapse mortality between patients who received marrow treated or not treated with 4-HC. CONCLUSION: These results suggest that ABMT may produce long-term leukemia-free survival in approximately one third of patients with AML in REL1 or in REM2. There is no apparent clinical advantage in attempting to obtain second remissions in relapsed patients before ABMT if marrow has been cryopreserved during REM1. Although a strategy of transplantation in REL1 has advantages for the patient, such an approach involves the storage of marrow, which may not be used, and is impractical without the coordinated support of the treating physician, the patient, and the marrow transplant center.

Acute Disease↗

Bone marrow transplantation in adult thalassemia.

Early trials of allogeneic marrow transplantation for homozygous thalassemia were disappointing in patients older than 16, with four of six patients dying early of graft-versus-host disease-related complications, one patient dying at 9 months of infection due to graft failure, and one dying at 6 years of recurrent thalassemia. Three classes of risk could be identified in analyses of results of transplantation in younger patients using the criteria of degree of hepatomegaly, the presence or absence of portal fibrosis, and a history of adequate or inadequate chelation therapy. Patients for whom all three criteria were adverse constituted a very high risk group (class 3) for marrow transplantation. On the basis of these analyses, a conditioning regimen was designed that yielded superior results for class 3 patients under 17 years of age. Most patients older than 16 years presenting for transplantation have disease characteristics that place them in class 3 and, because of the improved results with the new class 3 regimen in younger patients, a study was designed to treat patients older than 16 years using treatment regimens assigned on the basis of disease class. Twenty patients were treated using this protocol and, with a minimum follow-up of 9 months, there have been three early deaths, one patient has recurrent thalassemia, and 16 patients are alive disease-free. The actuarial probabilities of survival, disease-free survival, and rejection are 0.85, 0.80, and 0.05, respectively, with a survival plateau extending from 6 months to 3 years. Marrow transplantation is a reasonable option for adults with progressive thalassemia who have suitable donors.

Adolescent↗

Marrow transplantation following escalating doses of fractionated total body irradiation and cyclophosphamide--a phase I trial.

Thirty-six patients with advanced hematologic malignancy were entered into a Phase I study designed to define the maximum tolerated dose of unshielded total body irradiation delivered from dual 60 Cobalt sources at an exposure rate of 8 cGy/min and given in fractions twice daily for total doses ranging from 12 Gy to 17 Gy. All patients received cyclophosphamide, 120 mg/kg administered over 2 days before total body irradiation. Allogeneic marrow was infused from HLA-identical siblings (n = 29) or one locus HLA incompatible family members (n = 3); three patients received cryopreserved autologous marrow and one patient received syngeneic marrow. The maximum tolerated dose of total body irradiation given as 2 Gy fractions twice a day was 16 Gy. One of eight patients receiving 12 Gy, none of four receiving 14 Gy, three of 20 receiving 16 Gy, and two of four receiving 17 Gy developed severe (Grade 3-4) regimen-related toxicity. The primary dose limiting toxicity was pneumonitis, followed by veno-occlusive disease of the liver, renal impairment, and mucositis. Five patients (14%) are alive, four disease-free 798-1522 days posttransplant. Twenty (56%) relapsed posttransplant. Further investigation of regimens containing 16 Gy of hyperfractionated total body irradiation is warranted to assess anti-tumor efficacy.

Adolescent↗

Allogeneic marrow transplantation during untreated first relapse of acute myeloid leukemia.

PURPOSE: The purpose of this report was to review the Seattle experience in bone marrow transplantation (BMT) for acute myeloid leukemia (AML) during untreated first relapse. PATIENTS AND METHODS: Through 1990, 126 patients were transplanted during untreated first relapse of AML. Several preparative regimens were used, two of which involved more than 20 patients. Regimen 1 (29 patients) consisted of cyclophosphamide (CY) 120 mg/kg and 15.75 Gy of fractionated total-body irradiation (TBI) with methotrexate (MTX) given intermittently during a 102-day period to prevent graft-versus-host disease (GVHD). Regimen 2 (22 patients) consisted of the same CY and TBI treatment and a combination of MTX and cyclosporine (CSP) for GVHD prophylaxis. The remaining 75 patients were treated with 17 other transplant regimens. Outcome was compared for patients who were treated with regimen 1, regimen 2, and any other regimen. RESULTS: The 5-year probabilities of relapse-free survival (RFS), relapse, and nonrelapse mortality for 126 patients were .23, .57, and .44, respectively. With regimen 1, relapse (.26) was significantly less than for regimen 2 (.70; P = .004) or any other regimen (.76; P = .004). Regimen 1 patients developed more acute GVHD (.67) than regimen 2 patients (.26; P = .02) or patients on other regimens (.41; P = .02), and had increased nonrelapse mortality. Nevertheless, regimen 1 patients had a significantly higher 3-year RFS (.38) than those treated with regimen 2 (.18; P = .04) or any other regimen (.20; P = .05). CONCLUSIONS: For patients who received 120 mg/kg CY and 15.75 Gy TBI, relapse incidence was less and survival was better after GVHD prophylaxis with MTX alone than after a combination of MTX and CSP, despite a significantly higher incidence of acute GVHD. The results of treatment with regimen 1 justify future studies of the optimal timing of allogeneic BMT in the treatment of patients with AML.

Acute Disease↗

Phase I study of busulfan and cyclophosphamide in preparation for allogeneic marrow transplant for patients with multiple myeloma.

PURPOSE: To study the toxicity and potential efficacy of busulfan (BU) and cyclophosphamide (CY) as a conditioning regimen before allogeneic bone marrow transplantation (ABMT) in patients with multiple myeloma (MM). PATIENTS AND METHODS: Twenty patients with MM underwent conditioning, which was followed by ABMT from 16 HLA-identical donors, three one-antigen-mismatched donors, and one HLA A, B, D-identical unrelated donor. Four levels of BU plus CY were evaluated. RESULTS: Severe regimen-related toxicity occurred in two of five patients who received BU 16 mg/kg and CY 120 mg/kg, in none of the four patients who received BU 14 mg/kg and CY 120 mg/kg, in one of eight patients who received BU 14 mg/kg and CY 147 mg/kg, and in two of three patients who received BU 14 mg/kg and CY 174 mg/kg. Twelve of 15 (80%) assessable patients achieved a complete remission with the disappearance of M-protein and the return of normal marrow morphology. Ten patients died of complications related to the ABMT, and two patients died of progressive or relapsed MM. Overall, eight of 20 patients were alive; seven (35%) were in complete remission 190 to 1,271 days after ABMT. CONCLUSIONS: The maximum-tolerable dose given in this setting was BU 14 mg/kg and CY 147 kg/mg. These results suggest that this regimen may have significant antimyeloma activity. Further phase II studies are warranted.

Adult↗

Recombinant human erythropoietin (rh-Epo) administration to normal marrow donors.

Ten normal marrow donors, two children and eight adults, received 9-22 daily subcutaneous doses (100 units/kg) of recombinant human erythropoietin (rh-Epo) and oral iron prior to marrow harvesting. The two children did not have autologous blood stored prior to marrow harvesting while all eight adults did. Except for a mild skin rash at the sites of injection in three cases and transient headaches in a further three, no side effects were observed. The effects of rh-Epo on preoperative and postoperative hematocrits were evaluated and compared with those of control donors matched for age, sex, weight and blood loss. Initial hematocrits were assigned a value of 100%. The mean percentage increase between the initial hematocrit and the preoperative hematocrit in the rh-Epo group was 16% compared with a decrement of 4% in the control group (p = 0.0001). The mean % decrement between the initial hematocrit and the postoperative hematocrit was 4% for the rh-Epo group and 26% for the control group (p = 0.0003). It was concluded from this study that rh-Epo could be given safely to normal marrow donors with a significant increase in hematocrit occurring in the 2-3 weeks prior to marrow harvesting. This approach should be explored further, especially in children, for whom storage of autologous blood is not routinely performed.

Adolescent↗

Etoposide, cyclophosphamide and fractionated total body irradiation as a preparative regimen for marrow transplantation in patients with advanced hematological malignancies: a phase I study.

Thirty-seven patients with advanced hematologic malignancy were entered into a phase I study designed to define a maximum tolerable dose (MTD) of etoposide (VP-16) and cyclophosphamide (CY) combined with 12 Gy fractionated total body irradiation (TBI) as preparation for marrow transplantation from an HLA-identical sibling (n = 13) or with cryopreserved autologous marrow (n = 24). Dose levels ranged from 36 mg/kg of VP-16 combined with 67 mg/kg of CY to 52 mg/kg of VP-16 combined with 103 mg/kg of CY followed by 12 Gy TBI. The MTD for allogeneic marrow recipients was 36 mg/kg of VP-16 + 52 mg/kg of CY followed by 12 Gy TBI and for autologous marrow recipients 44 mg/kg of VP-16 + 103 mg/kg CY followed by 12 Gy TBI. Pulmonary and liver toxicities were dose limiting. All of 31 evaluable patients transplanted in relapse achieved a complete remission. However, in all but three of these patients the disease relapsed 28-899 (median 110) days post-transplant. Currently, six of 24 autologous marrow recipients are surviving, three in remission 256, 340 and 764 days post-transplant. None of 12 allogeneic marrow recipients have survived. In conclusion, a preparative regimen combining 44 mg/kg of VP-16 + 103 mg/kg CY followed by 12 Gy TBI is well tolerated by autologous marrow recipients and 36 mg/kg VP-16 + 67 mg/kg CY followed by 12 Gy TBI is well tolerated by allogeneic marrow recipients.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Allogeneic marrow transplantation in patients with chronic myeloid leukemia in the chronic phase: a randomized trial of two irradiation regimens.

A randomized trial was performed to compare two regimens of total body irradiation in patients with chronic myeloid leukemia treated by allogeneic marrow transplantation while in the chronic phase. All patients received cyclophosphamide 120 mg/kg followed by total body irradiation and marrow from HLA-identical siblings. Cyclosporine and methotrexate were used for prophylaxis against acute graft-versus-host disease. Fifty-seven patients were randomized to receive 2.0 Gy fractions of irradiation daily for 6 days and 59 were randomized to receive 2.25 Gy fractions daily for 7 days. The probabilities of relapse at 4 years were 0.25 for the 12.0 Gy group and 0.00 for the 15.75 Gy group (P = .008). The actuarial probabilities of survival and relapse-free survival at 4 years were 0.60 and 0.58 among the patients who received 12.0 Gy compared with 0.66 and 0.66 for those who received 15.75 Gy. The 4-year probabilities of transplant-related mortality were 0.24 and 0.34 respectively (P = .13) while the probability of moderate to severe acute graft-versus-host disease was 0.33 for the 12.0 Gy group and 0.44 for the 15.75 Gy group (P = .15). The lower relapse probability in the patients receiving the higher dose of total body irradiation did not result in improved survival because mortality from causes other than relapse was increased.

Adult↗

Allogeneic marrow transplantation in patients with acute myeloid leukemia in first remission: a randomized trial of two irradiation regimens.

A randomized trial of 12.0 Gy versus 15.75 Gy of total body irradiation (TBI) was performed in patients with acute myeloid leukemia undergoing allogeneic marrow transplantation while in first complete remission. All patients received 120 mg/kg cyclophosphamide followed by TBI and marrow from HLA-identical siblings. Cyclosporine and methotrexate were used for prophylaxis against acute graft-versus-host disease (GVHD). Thirty-four patients received 2.0-Gy fractions of irradiation daily for 6 days and 37 received 2.25-Gy fractions daily for 7 days. The 3-year actuarial probabilities for relapse-free survival were 0.58 for the patients who received 12.0 Gy and 0.59 for those who received 15.75 Gy. The 3-year probabilities of relapse were 0.35 for the 12.0 Gy group and 0.12 for the 15.75 Gy group (P = .06). The 3-year probabilities of transplant-related mortality were 0.12 and 0.32, respectively (P = .04). The probability of moderate to severe acute GVHD was 0.21 for the 12.0 Gy group and 0.48 for the 15.75 Gy group (P = .02). Patients exposed to the higher irradiation dose received less immunoprophylaxis against, and had a higher incidence of, acute GVHD. The increased dose of TBI significantly reduced the probability of relapse but did not improve survival because of increased mortality from causes other than relapse.

Adolescent↗

Supportive care of the marrow transplant recipient: the Seattle Experience.

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.

Anti-Infective Agents↗

Marrow transplantation for malignant plasma cell disorders: summary of the Seattle experience.

28 patients with plasma cell malignancies received marrow transplants from identical twins (N = 8), HLA-identical family members (N = 15), HLA partially-matched relatives (N = 3) or cryopreserved autologous marrow (N = 2). Treatment regimens included cyclophosphamide (CY) and total body irradiation (TBI) for 15 patients and busulphan (BU) and CY for 13 patients. 3 of 8 twins are alive, 2 without disease at 24 and 34 months, and 1 is alive and well at 116 months without evidence of disease except for at small residual monoclonal protein spike. 12 of the 18 allografted patients died of transplant-related causes and 2 died of progressive disease. 4 of 18 allograft recipients are alive; 2 are free of disease at 16 and 15 months, 1 is alive at 6 months without disease except for persistent monoclonal Kappa protein. 1 patient is alive with residual marrow involvement and a persistent IGA lambda monoclonal protein at 7 months. 1 of the 2 autograft recipients is alive 2 months after transplant and is not yet evaluable for tumor response and the other patient died early of transplant-related complications. Both CY + TBI and BU + CY resulted in remissions in patients with advanced plasma cell malignancies. However, the optimal treatment regimen and timing of transplantation remain to be determined.

Antineoplastic Combined Chemotherapy Protocols↗