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Leukemia, Lymphoid clinical trials

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NCT ID: NCT01090973 Terminated - Clinical trials for Non-Hodgkin's Lymphoma

Oral LBH589 in Relapsed or Refractory Chronic Lymphocytic Leukemia (CLL) and Mantle Cell Lymphoma (MCL)

Start date: March 2010
Phase: Phase 2
Study type: Interventional

The purpose of the study is to find out the effects and the safety of an investigational study drug called LBH589 when given to people with relapsed or refractory chronic lymphocytic leukemia (CLL) or mantle cell lymphoma (MCL).

NCT ID: NCT01090414 Terminated - Clinical trials for Chronic Lymphocytic Leukemia

An Extension Study for Subjects Who Are Deriving Benefit With Idelalisib (GS-1101; CAL-101) Following Completion of a Prior Idelalisib Study

Start date: March 22, 2010
Phase: Phase 1/Phase 2
Study type: Interventional

This is a long-term safety extension study of idelalisib (GS-1101; CAL-101) in patients with hematologic malignancies who complete other idelalisib studies. It provides the opportunity for patients to continue treatment as long as the patient is deriving clinical benefit. Patients will be followed according to the standard of care as appropriate for their type of cancer. The dose of idelalisib will generally be the same as the dose that was administered at the end of the prior study, but may be titrated up to improve clinical response or down for toxicity. Patients will be withdrawn from the study if they develop progressive disease, unacceptable toxicity related to idelalisib, or if they no longer derive clinical benefit in the opinion of the investigator.

NCT ID: NCT01088763 Terminated - Clinical trials for Unspecified Childhood Solid Tumor, Protocol Specific

Gamma-Secretase Inhibitor RO4929097 in Treating Young Patients With Relapsed or Refractory Solid Tumors, CNS Tumors, Lymphoma, or T-Cell Leukemia

Start date: March 2010
Phase: Phase 1
Study type: Interventional

This phase I/II clinical trial is studying the side effects and best dose of gamma-secretase inhibitor RO4929097 and to see how well it works in treating young patients with relapsed or refractory solid tumors, CNS tumors, lymphoma, or T-cell leukemia. Gamma-secretase inhibitor RO4929097 may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth.

NCT ID: NCT01076556 Terminated - Clinical trials for Chronic Lymphocytic Leukemia

Cyclophosphamide, Alvocidib, and Rituximab in Treating Patients With High Risk B-Cell Chronic Lymphocytic Leukemia or Small Lymphocytic Lymphoma

Start date: April 2010
Phase: Phase 1
Study type: Interventional

This phase I trial is studying the side effects and the best dose of alvocidib when given together with cyclophosphamide and rituximab in treating patients with high risk B-cell chronic lymphocytic leukemia or small lymphocytic lymphoma. Drugs used in chemotherapy, such as cyclophosphamide, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing. Alvocidib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Monoclonal antibodies, such as rituximab, can also block cancer growth in different ways. Some block the ability of cancer cells to grow and spread. Other find cancer cells and help kill them or carry cancer-killing substances to them. Giving cyclophosphamide, alvocidib, and rituximab together may kill more cancer cells.

NCT ID: NCT01076270 Terminated - Clinical trials for Recurrent Mantle Cell Lymphoma

Plerixafor and Filgrastim For Mobilization of Donor Peripheral Blood Stem Cells Before A Donor Peripheral Blood Stem Cell Transplant in Treating Patients With Hematologic Malignancies

Start date: June 2010
Phase: N/A
Study type: Interventional

RATIONALE: Giving chemotherapy and total-body irradiation (TBI) before a donor peripheral blood stem cell transplant helps stop the growth of cancer cells and helps stop the patient's immune system from rejecting the donor's stem cells. When the healthy stem cells from a donor are infused into the patient they will help the patient's bone marrow make stem cells, red blood cells, white blood cells, and platelets. Giving colony-stimulating factors, such as filgrastim (G-CSF) and plerixafor, to the donor helps the stem cells move (mobilization) from the bone marrow to the blood so they can be collected and stored. PURPOSE: This clinical trial is studying giving plerixafor and filgrastim together for mobilization of donor peripheral blood stem cells before a peripheral blood stem cell transplant in treating patients with hematologic malignancies

NCT ID: NCT01066468 Terminated - Clinical trials for Chronic Myeloid Leukemia (CML)

Glivec/Gleevec Pediatric (Age 1 to Less Than 4) PK Study in CML, Ph+ ALL Patients and Other Glivec/Gleevec® Indicated Hematological Disorders.

Start date: October 2010
Phase: Phase 1
Study type: Interventional

This study will assess the pharmacokinetics of imatinib in pediatric patients ages 1 to <4 years of age to help develop dosing regimens

NCT ID: NCT01050946 Terminated - Clinical trials for Lymphoma, Non-Hodgkin

Hematopoietic Stem Cell Transplantation (HSCT) Using CD34 Selected Mismatched Related Donor and One Umbilical Cord Unit

Haplo/Cord
Start date: July 2009
Phase: Phase 2
Study type: Interventional

This study is a means of providing transplantation to those patients who would be a stem cell transplant candidate who do not have an appropriate donor. The use of CD34 selected haploidentical donor with an umbilical cord unit may help provide earlier engraftment without the need for long term immunosuppression. This study tests a new method of bone marrow transplantation called combined haploidentical-cord blood transplantation. In this procedure, some of the blood forming cells (the stem cells) from a partially human leukocyte antigen (HLA) matched (haploidentical) related donor are collected from the blood, as well as cells from an umbilical cord are transplanted into the patient (the recipient) after administration of a "conditioning regimen". A conditioning regimen consists of chemotherapy and sometimes radiation to the entire body (total body irradiation, or TBI), which is meant to destroy the cancer cells and suppress the recipient's immune system to allow the transplanted cells to take (grow).

NCT ID: NCT01050764 Terminated - Clinical trials for Myelodysplastic Syndrome (MDS)

Haploidentical Allogeneic Transplant With Post-transplant Infusion of Regulatory T-cells

Start date: June 2009
Phase: Phase 1/Phase 2
Study type: Interventional

Patients with hematologic malignancies will receive myeloablative chemotherapy followed by stem cell rescue with bone marrow or hematopoietic peripheral blood stem cells collected by apheresis from a filgrastim- (G-CSF)-mobilized haploidentical related-donor, ie, hematopoietic peripheral blood stem cell transplant (HSCT).

NCT ID: NCT01049113 Terminated - Lymphoma Clinical Trials

Safety Study of ON 013105 in Lymphoma and Acute Lymphoid Leukemia

Start date: November 2009
Phase: Phase 1
Study type: Interventional

This is an open-label, dose-escalation Phase 1 study of the investigational agent, ON 013105. In laboratory animal studies, ON 013105 has demonstrated anti-cancer activity. The purpose of this study is to determine the highest dose of ON 013105 that can be given safely in patients with relapsed/refractory Lymphoma or B-cell Acute Lymphocytic Leukemia (Philadelphia chromosome negative). Patients will receive weekly 2-hour IV infusions of ON 013105 at higher and higher doses until intolerable side effects are observed. It is important to know the highest safe dose so additional studies can be done.

NCT ID: NCT01045382 Terminated - Multiple Myeloma Clinical Trials

MSC and HSC Coinfusion in Mismatched Minitransplants

Start date: July 2010
Phase: Phase 2
Study type: Interventional

The present project aims at evaluating the capacity of MSC to improve one-year overall survival of patients transplanted with HLA-mismatched PBSC from related or unrelated donors after non-myeloablative conditioning. Co-infusion of MSC has been shown to facilitate engraftment of hematopoietic stem cell (HSC) in an immunodeficient mouse model. In addition, it has been shown that infusion of third party MSC in HSC transplantation could be successfully used as treatment for grade II-IV steroid-refractory acute graft versus host disease. One hundred and twenty patients with HLA-mismatched donors will be included over 6 years at multiple centers across Belgium through the transplant committee of the Belgian Hematological Society. The conditioning regimen will consist of fludarabine and 2 Gy TBI, followed by the infusion of donor HSC. Patients will be randomized 1/1 in double-blind fashion to receive or not MSC (1.5-.3.0 x106/kg) from third-party (either haploidentical family members or unrelated volunteer) donors on day 0. Postgrafting immunosuppression will combine tacrolimus and MMF. Except for the collection, expansion and infusion of MSC, the clinical management of the patient will not differ from that of routine NM-HCT.