Technology of blood and marrow transplantation.
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Biomedical subjects
Publications and source records attributed to R Champlin.
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The value of early myeloablative therapy supported by autologous bone marrow or blood progenitor cells was assessed in 72 patients with multiple myeloma who were treated within 1 year of initial therapy. Forty-five patients were consolidated during remission, and 27 patients were treated for primary refractory disease. Outcomes were compared with those of similar patients who did not receive intensive treatment primarily for socioeconomic reasons. Among patients who had responded previously, myeloablative therapy increased the rate of complete remission from 5% to 45% (P < .01) but did not prolong progression-free intervals or survival times. The same treatment controlled the myeloma in 70% of patients with primary resistant disease and prolonged the median survival from 37 to 83 months (P = .03). Intensive treatment for primary resistant myeloma administered later in the disease course resulted in significantly lower response rates and shorter progression-free intervals. Current myeloablative regimens supported by autologous stem cells appeared useful primarily in patients with primary resistant disease during the first year of therapy.
The utility of myeloablative therapy supported by autologous bone marrow (BM) or blood progenitor cells was assessed in 49 patients with multiple myeloma who had received at least 1 year of prior chemotherapy. Outcomes were compared with those of similar patients who did not receive intensive treatment primarily for socioeconomic reasons. Among patients with disease in resistant relapse despite treatment with vincristine-doxorubicin by continuous infusion with pulse dexamethasone (VAD), a 61% response rate was associated with a median remission time of 5 months. After primary resistance for more than 1 year, 6 of 15 patients responded and the overall survival was similar to that of control patients. For patients with melphalan-resistant disease that responded to VAD, the remission time was similar to that of control patients. Current myeloablative treatments supported by autologous BM or blood stem cells were useful to very few patients with multiple myeloma after the first year of chemotherapy.
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Bone marrow transplantation from a histocompatible sibling donor may produce complete remission in patients with induction failure or relapsed acute leukaemia. Through the National Marrow Donor Program, histocompatible bone marrow from unrelated donors has become available for high-risk patients. In this study we analyse the results of matched unrelated bone marrow transplant in 55 patients with highly advanced acute myelogenous and acute lymphoblastic leukaemia. 28 patients with advanced acute lymphoblastic leukaemia and 27 patients with advanced acute myelogenous leukaemia, age 2-51, were treated with high-dose chemoradiotherapy and transplantation of 6/6 HLA matched (n = 46) or one antigen mismatched (n = 9) unrelated donor bone marrow. After a median follow-up of 36 months, 13 patients remain alive 17-74 months after transplant for a 2-year actuarial disease-free and overall survival of 23 +/- 12% (median disease-free survival 3.5 months). The actuarial risk of relapse is 24 +/- 16% at 1 year. Moderate to severe graft-versus-host disease occurred in 27/47 evaluable patients (57%). Significant prognostic factors for poor leukaemia-free survival include age > 21, abnormal karyotype, and active leukaemia at the time of transplant. Other pretreatment characteristics such as gender or type of leukaemia were not significant prognostic factors. Our results show that matched unrelated bone marrow transplant for patients with advanced acute leukaemia may provide long-term leukaemia-free survival, but transplant-related complications produce a significant impact on survival with older age and adverse disease characteristics predicting for poor prognosis.
This study assessed the feasibility and effect of blood progenitors as the only source of haemopoietic support for myeloablative therapy for patients with primary resistant multiple myeloma and markedly infiltrated bone marrow. 17 patients with advanced, primary resistant myeloma received a priming regimen of cyclophosphamide (3 g/m2) and etoposide (900 mg/m2) with GM-CSF. During haematological recovery, at least 2 x 10(6) CD34+ mononuclear cells/kg were collected from each patient with 4-12 leukaphereses. High-dose chemotherapy was then given which consisted of thiotepa (750 mg/m2), busulfan (10 mg/kg) and cyclophosphamide (120 mg/kg) followed by reinfusion of the blood progenitors. Haemopoietic reconstitution was rapid with recovery of granulocytes to > 1.0 x 10(9)/l after a median of 10 d and of platelets to 50 x 10(9)/l after a median of 29 d. The myeloma responded in 10/17 patients for a projected median duration of at least 12 months. Survival was prolonged significantly in comparison with the outcome of control patients who did not receive intensive treatment. Blood progenitors, assessed from the number of CD34+ cells, produced early haemopoietic recovery after myeloablative therapy that induced sustained control of advanced and resistant multiple myeloma.
Few effective regimens are available for patients with advanced multiple myeloma resistant to alkylating agents and VAD. We treated 65 patients with advanced and refractory multiple myeloma with the combination of cyclophosphamide (3.0 gm/m2) and etoposide (900 mg/m2) followed by GM-CSF at a daily dose of 0.125 mg/m2. Thirty-five percent of patients responded with a 6% mortality rate. After a median of 2 months, 16 patients received myeloablative treatment supported by autologous bone marrow or blood stem cells. Four of ten previously resistant patients responded so that the overall response rate was 42%. The median survival for all patients was 10 months and the median remission was 8 months. The median survival for patients with both low serum lactate dehydrogenase and B2 microglobulin, or for those who received myeloablative treatment, was projected at 18 months. Our combination of cyclophosphamide and etoposide provided an effective rescue treatment for many patients with advanced multiple myeloma resistant to conventional therapies. This program allowed early blood stem cell collection in support of subsequent myeloablative therapy for selected patients.
Despite consolidation and/or maintenance chemotherapy most patients with newly diagnosed acute myelogenous leukemia relapse such that only 20-30% survive free of recurrence at five years. To evaluate the long-term effects of dose-intensive consolidation, we analysed 123 consecutive patients, age 16 to 84 (median 48 years), who received high-dose cytarabine-based consolidation chemotherapy. After a median follow-up of 88 months (range 26 to 126 months), 38 patients remain alive, with 26 in continued remission from 45 to 126+ months. Median remission duration for all eligible patients is 14 months (range 1.3 to 126 months) and actuarial leukemia-free survival at five years is 24 +/- 8%. Median survival from remission is 24 months (range 1.3 to 126 months) and actuarial survival from remission is 31 +/- 9%. Eighty-two patients (67%) have relapsed with an actuarial risk of relapse of 71 +/- 9% at five years. Adverse prognostic factors were age over 45 and male gender. When compared to historical controls (P = 0.02), dose-intensive consolidation produced improved leukemia-free survival for patients age < 45, but compliance and enhanced toxicity in the older age groups may limit further dose intensification.
Eighteen patients with chronic myelogenous leukemia (CML) in chronic (9 patients) or advanced phases (9 patients) underwent autologous bone marrow transplantation (BMT) with a preparative regimen using high doses of cyclophosphamide, etoposide and total body irradiation (CY-VP16-TBI): cyclophosphamide 60 mg/kg daily on days 1 and 2; VP16 250 mg/m2 twice daily on days 1-3 and TBI 1020 cGy in six fractionated doses on days 5-7. Autologous marrow cells were reinfused on day 8. Three of the 8 patients in late chronic phase Philadelphia (Ph) chromosome-positive CML (37%) achieved a cytogenetic response, with Ph suppression to 25%, 29% and 44% Ph-positive metaphases, respectively, and lasting for 11, 1 and 3 months, respectively. The median duration of chronic phase following BMT was 26+ months (range 2-33+ months). One patient with Ph-negative, BCR-rearranged, chronic phase CML had a decrease of the BCR-rearranged band to 10% of pretreatment levels, which persisted for 6 months. None of the 9 patients with advanced CML phases (5 in second chronic, 1 in blastic, 3 in accelerated) achieved meaningful cytogenetic responses. Their median survival was 7 months from the time of BMT. Toxicities were mostly related to myelosuppression, particularly thrombocytopenia. Febrile episodes developed in 16 patients (89%). Treatment-related deaths occurred in 2 patients (11%). In summary, autologous BMT using a TBI-containing regimen had acceptable toxicity. Future investigations will evaluate the additional benefit of purged autologous stem cell transplantation in patients with chronic phase CML.
BACKGROUND AND METHODS: Allogeneic bone marrow transplantation is curative in a substantial number of patients with hematologic cancers, marrow-failure disorders, immunodeficiency syndromes, and certain metabolic diseases. Unfortunately, only 25 to 30 percent of potential recipients have HLA-identical siblings who can act as donors. In 1986 the National Marrow Donor Program was created in the United States to facilitate the finding and procurement of suitable marrow from unrelated donors for patients lacking related donors. RESULTS: During the first four years of the program, 462 patients with acquired and congenital lymphohematopoietic disorders or metabolic diseases received marrow transplants from unrelated donors. The probability of engraftment by 100 days after transplantation was 94 percent, although 8 percent of patients later had secondary graft failure. The probability of grade II, III, or IV acute graft-versus-host disease was 64 percent, and the probability of chronic graft-versus-host disease at one year was 55 percent. The rate of disease-free survival at two years among patients with leukemia and good prognostic factors was 40 percent and among patients at higher risk, 19 percent. Twenty-nine percent of the patients with aplastic anemia were alive at two years, and the rate of two-year disease-free survival among patients with myelodysplasia was 18 percent. For patients with congenital immunologic or nonimmunologic disorders, the probability of survival was 52 percent. CONCLUSIONS: The National Marrow Donor Program has benefited a substantial number of patients in need of marrow transplants from closely HLA-matched unrelated donors and has facilitated the recruitment of unrelated donors into the donor pool and the access to suitable marrow.
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We have used autologous bone marrow transplantation (ABMT) as a setting to develop the genetic therapy of cancer in hematopoietic neoplasms based on the use of the bone marrow as a conduit through which to introduce regulatory molecules into the patient. This has involved three developmental phases: 1) learning how to develop genetic modification techniques; 2) learning how to develop in vivo selection techniques for the genetically modified cells; and 3) developing molecular vectors for modification of hematopoietic cells for therapy of cancer. These programs will be summarized in terms of their progress at the conference.
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Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Molecular biology has provided clinical investigators and basic scientists with the tools to identify those changes present within neoplastic hematopoietic and epithelial cells that lead to the evolution of unregulated patterns of cell growth. This information has made possible the development of therapy that involves genetic modification of either the normal hematopoietic cells (for chemoprotection), or the tumor cells themselves to suppress the growth of these cells. This article will summarize the clinical and laboratory data that is evolving in this area.
Few effective regimens are available for patients with advanced multiple myeloma resistant to or relapsing after both alkylating agents and VAD. We treated 52 patients with advanced and refractory multiple myeloma with the combination of cyclophosphamide (3.0 g/m2) and etoposide (900 mg/m2) followed by GM-CSF at a daily dose of 0.125 mg/m2 until recovery of granulocytes. 42% of patients responded with a median time of 19 d for recovery of granulocytes to 0.5 x 10(9)/l and a 4% mortality rate. Eight responding patients received a second myeloablative treatment supported by either autologous bone marrow (six patients) or blood stem cells (two patients). The median survival time for all patients was 11 months and the median remission time for responding patients was 8 months. The combination of cyclophosphamide and etoposide provided an effective rescue treatment for many patients with advanced multiple myeloma resistant to conventional therapies. This programme also allowed early marrow or blood stem cell collection in support of subsequent myeloablative therapy for selected patients.