
Ruxolitinib in the Treatment of Chronic Lymphocytic Leukemia
Chronic Lymphocytic LeukemiaThe purpose of this study is to determine if Ruxolitinib, an inhibitor of cytokine-signaling, is effective in the treatment of patients with Chronic Lymphocytic Leukemia for whom conventional chemotherapy is either too toxic or ineffective.

A Phase 1b Study Evaluating AMG 232 Alone and in Combination With Trametinib in Acute Myeloid Leukemia...
Advanced MalignancyCancer3 moreOpen-label, sequential dose escalation and expansion study of AMG 232 in subjects with acute myeloid leukemia.

Azacitidine and Sonidegib or Decitabine in Treating Patients With Myeloid Malignancies
Chronic Myelomonocytic Leukemiade Novo Myelodysplastic Syndrome9 moreThis phase I/Ib trial studies the side effects and best dose of azacitidine and sonidegib or decitabine and so see how well they work in treating patients with myeloid malignancies. The hedgehog (Hh) signaling pathway plays an important role in cellular growth, differentiation and repair. Inappropriate activation of Hh pathway signaling and uncontrolled cellular proliferation may be associated with mutations in the Hh-ligand cell surface receptor Smo. Sonidegib binds to the Hh cell surface receptor Smo, which may result in the suppression of the Hh signaling pathway and the inhibition of cancer cells. Azacitidine and decitabine may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving azacitidine together with sonidegib or decitabine may be a safe and successful treatment for patients with myeloid malignancies.

A Phase I Study of Oral Asciminib (ABL001) in Patients With CML or Ph+ ALL
Chronic Myelogenous LeukemiaPhiladelphia Chromosome-positive Acute Lymphoblastic LeukemiaThe design of a phase I, open label, dose finding study was chosen in order to establish a safe and tolerated dose of single agent ABL001 in CML and Ph+ ALL patients who are relapsed or refractory to or are intolerant of TKIs, and of ABL001+Nilotinib, ABL001+Imatinib and ABL001+Dasatinib in Ph positive CML patients who are relapsed or refractory to TKIs.

A Study for Improving the Outcome of Childhood Acute Promyeloid Leukemia
Childhood Acute Promyelocytic LeukemiaOutcome of acute promyelocytic leukemia (APL) has greatly improved since the introduction of all-trans-retinoic acid (ATRA). Treatment with ATRA and anthracycline-based chemotherapy (ATRA + chemotherapy) decreases relapses of the disease as well as early hemorrhagic deaths. Nowadays patients with APL have an event-free survival (EFS) of up to 80%. However, there remains a subset of the patients in whom the disease relapses. Recently, a randomized prospective study showed that the addition of ATO to "ATRA + chemotherapy" treatment protocol had a significantly higher EFS in patients with APL than those treated with "ATRA + chemotherapy" protocol. The patients treated with "ATO + ATRA + chemotherapy" had a five years EFS of 89.2%. Moreover, a recent study showed that Indigo naturalis formula (RIF), a traditional Chinese medicine with tetraarsenic tetrasulfide (As4S4), indirubin, and tanshinone IIA as major active ingredients, yielded synergy in the treatment of a murine APL model in vivo and in the induction of APL cell differentiation in vitro . It is about 20 years since RIF was used to treat ALP in China. Clinical studies showed that this agent was effective against APL. Compared to ATO, RIF is relatively inexpensive and can be taken orally, resulting in reducing the number of hospital days and the treatment cost. However, there is no report comparing treatment outcomes of "ATO + ATRA + chemotherapy" and "RIF + ATRA + chemotherapy" protocols in children with APL so far. For this purpose, therefore, investigators are going to conduct a multicenter and randomized prospective study in children with APL.

SL-401 in Patients With Blastic Plasmacytoid Dendritic Cell Neoplasm or Acute Myeloid Leukemia
Blastic Plasmacytoid Dendritic Cell Neoplasm (BPDCN)Acute Myeloid LeukemiaThis is a 4-stage, non-randomized, open-label, dose escalation and expansion, multicenter study. A cycle of therapy is 21 days. Stage 1 was a dose-escalation stage. During Stages 2-4, patients are treated at the MTD or maximum tested dose at which multiple DLTs are not observed during Stage 1.

A Safety and Efficacy Study of LGH447 in Patients With Acute Myeloid Leukemia (AML) or High Risk...
AML and High Risk MDSThis study will assess the safety and preliminary efficacy of escalating doses of LGH447 monotherapy in AML and MDS and LGH447 in combination with midostaurin in AML.

Sorafenib Plus 5-Azacitidine Initial Therapy of Patients With Acute Myeloid Leukemia (AML) and High...
LeukemiaThe goal of this clinical research study is to learn if 5-azacitidine and sorafenib can help to control the disease in patients with Acute Myeloid Leukemia (AML) and high risk Myelodisplastic Syndrome (MDS) with FLT3-ITD mutation. The safety of this drug combination will also be studied.

Sirolimus/Tacrolimus Combination After HLA Matched Related Peripheral Blood Stem Cell Transplants...
Acute Leukemia in RemissionMyelodysplastic Syndromes6 moreStudy Design: To evaluate the efficacy of the combination of sirolimus and tacrolimus as a graft-versus-host disease prophylaxis, the investigators are going to perform a phase II, multicenter clinical trial after human leukocyte antigen (HLA)-matched, related peripheral blood stem cell transplants (PBSCT) in patients with hematologic malignancies. Total 116 patients will be accrued. Objective: The primary objective is to evaluate the rates of 100 day Grade II-IV acute GVHD. Secondary objectives include the time to neutrophil and platelet engraftment, the incidence of grade III-IV acute GVHD, non-relapse mortality during 100 days after transplant, mucositis severity, all infectious complications including cytomegalovirus (CMV) reactivation, vascular complications (venoocclusive disease of liver; VOD, thrombotic microangiopathy; TMA), disease-free survival, and overall survival at 1 year after transplant. Eligibility Criteria: Eligible patients are between 20 and 60 years of age, have acute leukemia, myelodysplastic syndrome (MDS), chronic myelogenous leukemia (CML), and adequate organ function. For available sibling donor, a serologic (or higher resolution) 6/6 Class I HLA-A and B and molecular Class II DRB1 must be matched. Treatment Description: Conditioning regimens will vary by center and donor will donate peripheral blood stem cells according to local institutional practices. Peripheral blood stem cells will not be manipulated or T-depleted prior to infusion. Tacrolimus will be administered at 0.05 mg/kg/day intravenously by continuous infusion beginning on day -1 with a target serum concentration of 5 to 10 ng/mL. Sirolimus will be administered as a 6 mg oral loading dose on day -1, followed by a 3 mg/day single dose, with a target serum concentration of 3 to 12 ng/mL. Levels will be monitored weekly during hospitalization and then as clinically indicated. Intravenous tacrolimus will be converted to an oral equivalent dose prior to discharge and both immunosuppressives will be tapered beginning at day +100 after transplantation and eliminated by day +180 when clinically feasible. Accrual Period: The estimated accrual period is three years. Patients will be followed for 100 days post transplantation for evaluation of the primary endpoint, with additional follow-up to two years after transplantation for evaluation of secondary endpoints.

Zevalin-Containing Nonmyeloablative Conditioning for Stem Cell Transplantation (SCT)
LeukemiaLymphomaThe goal of this clinical research study is to learn if adding Zevalin (ibritumomab tiuxetan) to low-intensity chemotherapy (the combination of rituximab, bendamustine, and fludarabine), followed by an allogeneic stem cell transplant, can help to control lymphoma. The safety of this combination will also be studied. Two (2) forms of ibritumomab tiuxetan will be used in this study. 90Y-ibritumomab tiuxetan is designed to attach to lymphoma cells and destroy the cells using a radioactive particle that is attached to it. 111In-ibritumomab tiuxetan is like 90Y- ibritumomab tiuxetan, but the radioactive particle that is attached to it does not kill lymphoma cells. The radioactive particle makes the drug able to be seen inside your body. It is being used in this study to predict how fast the study drug will travel in the body and how long the drug stays in the body. Rituximab is designed to attach to lymphoma cells, which may cause them to die. Bendamustine is designed to damage and destroy the DNA (genetic material) of cancer cells. Fludarabine is designed to make cancer cells less able to repair damaged DNA. This may increase the likelihood of the cells dying.