
Adoptive Immunotherapy in Relapsed Hematological Malignancy: Early GVHD Prophylaxis
Hodgkin's LymphomaLymphoid Leukemia17 moreDetermine the relapse-free, donor lymphocyte infusion (DLI)-free survival in patients receiving the investigational regimen.This is a randomized phase II clinical trial, comparing two different dosing schedules of mycophenolate mofetil for graft versus host disease (GVHD) prevention following allogeneic stem cell transplantation. Risk for relapse, GVHD and non-relapse mortality will be assessed. Adaptive randomization between two study arms will be performed based on T cell counts at day 60.

Study of CLAG + Selinexor in Relapsed or Refractory Acute Myeloid Leukemia
Acute Myeloid LeukemiaSelinexor has shown single-agent activity in a current phase I study enrolling patients with relapsed/refractory AML with durable complete remissions (CR), complete remissions with incomplete hematologic recovery (CRi), partial remissions (PR), and stable disease (SD) observed. Furthermore, common toxicities included nausea, fatigue, and anorexia and were manageable with supportive care agents. Additionally, CLAG chemotherapy has proven activity in relapsed and refractory AML, and has been shown to be a relatively well tolerated regimen without significant non-hematologic toxicity. Given the established role of CLAG chemotherapy, the single agent activity of selinexor, and their non-overlapping toxicities, the investigators propose a phase I/II open label study of selinexor in combination with CLAG for the treatment of patients with relapsed/refractory AML.

Study of Efficacy and Safety of CTL019 in Pediatric ALL Patients
B-cell Acute Lymphoblastic LeukemiaThis is a single arm, open-label, multi-center, phase II study to determine the efficacy and safety of CTL019 in pediatric patients with r/r B-cell ALL.

An Open-label Phase II Study of Lorvotuzumab Mertansine
LeukemiaThe goal of this clinical research study is to learn if lorvotuzumab mertansine can help to control blood cancers that have the CD56 tumor marker. The safety of this drug will also be studied.

A Combination Study of PF-04449913 (Glasdegib) and Azacitidine In Untreated MDS, AML and CMML Patients...
Myelodysplastic SyndromeAcute Myeloid Leukemia1 moreThis multi center open label Phase 1b study is designed to evaluate the safety, efficacy, pharmacokinetics (PK), and pharmacodynamics (PD) of glasdegib (PF-04449913) when combined with azacitidine in patients with previously untreated Higher Risk Myelodysplastic Syndrome (MDS), Acute Myeloid Leukemia (AML), or Chronic Myelomonocytic Leukemia (CMML). This clinical study includes two components: (a) a safety lead in cohort (LIC) and (b) an expansion phase with an AML cohort and an MDS cohort.

A Phase 1/2, Open-label, Dose Finding Study to Evaluate CC-122 in Combination With Ibrutinib and...
LeukemiaLymphocytic2 moreSafety, pharmacokinetics, and preliminary efficacy of CC-122 alone and in combination with ibrutinib and obinuzutumab. CC-122 has multiple activities, including immune modulation of several immune cell subsets and antiproliferative activity in CLL. CC-122 has also been shown to have a tolerable safety profile with some preliminary signs of efficacy with early human experience.

A Study of Selinexor in Combination With Daunorubicin and Cytarabine for Untreated AML
LeukemiaAcute Myeloid Leukemia1 moreThe main purpose of this study is to determine the safety of combining selinexor with daunorubicin and cytarabine. The maximal tolerated dose (MTD) of selinexor with daunorubicin and cytarabine will also be established.

CD8+ Memory T-Cells as Consolidative Therapy After Donor Non-myeloablative Hematopoietic Cell Transplant...
Acute Myeloid LeukemiaB-Cell Non-Hodgkin Lymphoma5 moreThis phase 2 trial studies how well cluster of differentiation 8 (CD8)+ memory T-cells work as a consolidative therapy following a donor non-myeloablative hematopoietic cell transplant in treating patients with leukemia or lymphoma. Giving total lymphoid irradiation and anti-thymocyte globulin before a donor hematopoietic cell transplant helps stop the growth of cells in the bone marrow, including normal blood-forming cells (stem cells) and cancer cells. When the healthy stem cells from a donor are infused into the patient they may help the patient's bone marrow make stem cells, red blood cells, white blood cells, and platelets. Sometimes the transplanted cells from a donor can make an immune response against the body's normal cells (called graft-versus-host disease). Giving cyclosporine and mycophenolate mofetil after the transplant may stop this from happening. Once the donated stem cells begin working, the patient's immune system may see the remaining cancer cells as not belonging in the patient's body and destroy them. Giving an infusion of the donor's white blood cells, such as CD8+ memory T-cells, may boost this effect and may be an effective treatment to kill any cancer cells that may be left in the body (consolidative therapy).

Donor Lymphocyte Infusion With Azacitidine to Prevent Hematologic Malignancy Relapse After Stem...
Acute Myelogenous LeukemiaAcute Lymphoid Leukemia2 moreThe goal of this study is to determine whether post-transplant consolidation with azacitidine combined with donor lymphocyte infusion (DLI) is a safe and effective approach for the prevention of relapse in pediatric and young adult patients with hematologic malignancies who have undergone hematopoietic stem cell transplantation (HSCT).

Interaction Study of Ibrutinib and Cytochrome P450 (CYP) 3A Inhibitors in Participants With B-cell...
B-Cell Chronic Lymphocytic LeukemiaThe purpose of this study is to assess the effect of a moderate Cytochrome P450 (CYP) 3A inhibitor (erythromycin) and a strong CYP3A inhibitor (voriconazole) on the steady-state pharmacokinetics (PK [the study of the way a drug enters and leaves the blood and tissues over time]) of repeated oral doses of ibrutinib in participants with B-cell malignancy (cancer or other progressively enlarging and spreading tumors).