Modified Stem Cell Transplant Procedure to Treat Patients With Blood and Immune System Cancers
Summary
This study will investigate the safety and effectiveness of a modified stem cell transplant procedure for treating cancers of the blood and immune system. Patients with cancers and pre-cancerous conditions originating in blood or immune system cells can sometimes benefit greatly from, and even be cured by, transplants of stem cells (cells produced by the bone marrow that mature into blood cells). In addition to producing new bone marrow and restoring normal blood production and immunity, the donated cells fight any residual tumor cells that might have remained in the body, in what is called a graft-versus-tumor effect. However, severe problems, and sometimes death, may follow these transplants as a result of the high-dose chemotherapy and radiation that accompany the procedure. Also, donated immune system cells called T cells sometimes attack healthy tissues in a reaction called graft-versus-host-disease (GVHD), damaging organs such as the liver, intestines and skin. This study will use the following strategies to try to reduce these risks: * induction chemotherapy to reduce patient's immunity in an attempt to prevent rejection of the donated stem cells; * reduced-intensity conditioning chemotherapy that is easier for the body to tolerate and involves a shorter period of complete immune suppression; * donation of immune cells called T helper type 2 (Th2) cells instead of T cells to try to reduce the risk of serious GVHD; * treatment with methotrexate and cyclosporine to try to reduce the risk of serious GVHD. Patients between 12 and 75 years of age with non-Hodgkin's lymphoma, Hodgkin's lymphoma, multiple myeloma, chronic lymphocytic leukemia, chronic myelogenous leukemia, acute myelogenous leukemia, acute lymphocytic leukemia, myelodysplasia, idiopathic myelofibrosis, polycythemia vera, or chronic myelomonocytic leukemia may be eligible for this study. Candidates will have a medical history, physical and dental examinations, blood and urine tests (including a blood test for genetic match with the donor), lung and heart function tests, and X-ray studies. A bone marrow biopsy may be done to evaluate disease status. Patients with lymphoma may have a nuclear medicine test called a positron emission tomography (PET) scan. Participants will have a central venous line (large plastic tube) placed into a major vein. This tube can stay in the body and be used during the entire treatment period to deliver the donated stem cells and give medications, including chemotherapy and other drugs, antibiotics and blood transfusions, and to withdraw blood samples. Treatment will start with induction chemotherapy, which will include the drugs fludarabine, cyclophosphamide, etoposide, doxorubicin, vincristine, and prednisone. Some patients may also receive an antibody called rituximab. Patients will receive one to three cycles of this treatment, depending on their response to the drugs. (One cycle consists of 5 days on drug therapy followed by a 16-day rest period.) Several days before the transplant procedure, patients will start conditioning chemotherapy with cyclophosphamide and fludarabine. Three days after the conditioning therapy is completed, the stem cells will be infused. To help prevent GVHD, patients will take four doses of methotrexate (by vein) shortly after the transplant, and cyclosporine (by mouth or by vein) for about 6 months after the transplant. The average hospital stay for stem cell transplantation is 3 to 4 weeks. After discharge, patients will return for frequent follow-up visits for 3 months. Monthly visits will be scheduled for the next 3 months, then every 3 months for the next 18 months, and less frequently for a total of at least 5 years post-transplant. These visits will include bone marrow aspirates and biopsies, blood draws, and other tests to monitor disease status.
Timeline
- Start
- 2003-01-03
- Primary completion
- 2014-09-25
- Completion
- 2014-09-25
Publications
- Background Champlin RE. T-cell depletion for bone marrow transplantation: effects on graft rejection, graft-versus-host disease, graft-versus-leukemia, and survival. Cancer Treat Res. 1990;50:99-111. doi: 10.1007/978-1-4613-1493-6_6.
- Background Giralt SA, Kolb HJ. Donor lymphocyte infusions. Curr Opin Oncol. 1996 Mar;8(2):96-102. doi: 10.1097/00001622-199603000-00004.
- Background Martin PJ, Hansen JA, Torok-Storb B, Durnam D, Przepiorka D, O'Quigley J, Sanders J, Sullivan KM, Witherspoon RP, Deeg HJ, et al. Graft failure in patients receiving T cell-depleted HLA-identical allogeneic marrow transplants. Bone Marrow Transplant. 1988 Sep;3(5):445-56.
- Jamshed S, Fowler DH, Neelapu SS, Dean RM, Steinberg SM, Odom J, Bryant K, Hakim F, Bishop MR. EPOCH-F: a novel salvage regimen for multiple myeloma before reduced-intensity allogeneic hematopoietic SCT. Bone Marrow Transplant. 2011 May;46(5):676-81. doi: 10.1038/bmt.2010.173. Epub 2010 Jul 26.
- Baskar S, Suschak JM, Samija I, Srinivasan R, Childs RW, Pavletic SZ, Bishop MR, Rader C. A human monoclonal antibody drug and target discovery platform for B-cell chronic lymphocytic leukemia based on allogeneic hematopoietic stem cell transplantation and phage display. Blood. 2009 Nov 12;114(20):4494-502. doi: 10.1182/blood-2009-05-222786. Epub 2009 Aug 10.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Cyclophosphamide | Other / unclassified | — | — |
| Subject | Cyclosporine | Peptide | — | Intravenous |
| Subject | Doxorubicin | Other / unclassified | — | — |
| Subject | Etoposide | Small molecule | — | — |
| Subject | Fludarabine | Small molecule | — | — |
| Subject | Methotrexate | Small molecule | — | Intravenous |
| Subject | Prednisone | Other / unclassified | — | — |
| Subject | Vincristine | Small molecule | — | — |