
A Phase II Study of Dovitinib in Recurrent and/or Metastatic Adenoid Cystic Carcinoma of the Salivary...
Recurrent Adenoid Cystic Carcinoma of the Salivary GlandsMetastatic Adenoid Cystic Carcinoma of the Salivary Glands2 moreThis is a non-randomized, phase II, open label study of dovitinib in patients with progressive, recurrent and/or metastatic adenoid cystic carcinoma (ACC). The primary purpose of this study is to assess the anti-cancer effects of dovitinib in this population in order to evaluate whether dovitinib is worthy of further study in patients with progressive ACC.

Ph II SAHA and Bevacizumab for Recurrent Malignant Glioma Patients
Recurrent Glioblastoma MultiformeMalignant Glioma1 moreIt has been shown that bevacizumab has significant anti-tumor activity in patients with recurrent glioblastoma multiforme. Vorinostat has modest anti-tumor activity against malignant glioma and can enhance the action of both chemotherapy and anti-angiogenics. Patients will be treated with a combination of bevacizumab and vorinostat.

Dalantercept in Treating Patients With Recurrent Ovarian Epithelial, Fallopian Tube, or Primary...
Recurrent Fallopian Tube CarcinomaRecurrent Ovarian Carcinoma1 moreThis phase II trial studies the side effects and how well dalantercept works in treating patients with ovarian epithelial, fallopian tube, or primary peritoneal cavity cancer that has returned. Dalantercept may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Dalantercept may also stop the growth of tumor cells by blocking blood flow to the tumor.

CPI-613 in Treating Patients With Advanced or Metastatic Bile Duct Cancer That Cannot Be Removed...
Adult Primary Cholangiocellular CarcinomaAdvanced Adult Primary Liver Cancer7 moreThis pilot clinical trial studies 6,8-bis(benzylthio)octanoic acid in treating patients with advanced or metastatic cholangiocarcinoma that cannot be removed by surgery. 6,8-Bis(benzylthio)octanoic acid may stop the growth of cholangiocarcinoma by blocking blood flow to the tumor

CLEARI (Clinical Efficacy Assessment on Recurrent Upper-Respiratory Tract Infections) Study
Recurrent Upper-Respiratory Tract InfectionsThe purpose of this study is to assess the efficacy and safety of J022X ST for prevention of Recurrent Upper-Respiratory Tract Infections (RURTI) compared to placebo in children of younger age who develop infectious diseases more frequently than other children of this age in general.

NovoTTF-100A With Bevacizumab (Avastin) in Patients With Recurrent Glioblastoma
Adult Giant Cell GlioblastomaAdult Glioblastoma2 moreNovoTTF-100A is a device and Bevacizumab is a study drug that have both been approved by the FDA (Food and Drug Administration) for use as monotherapy in treating glioblastoma multiforme. The NovoTTF-l00A is a portable battery operated device which produces TTFields within the human body using surface electrodes (transducer arrays). Intermediate frequency electric fields (TTFields) stunt the growth of tumor cells. The purpose of this study is to determine the efficacy of the combination of Bevacizumab and NovoTTF-100A in Bevacizumab naive (meaning have never received bevacizumab before) patients with recurrent glioblastoma (GBM) as measured by 6-month progression free survival.

Quizartinib With Azacitidine or Cytarabine in Treating Patients With Relapsed or Refractory Acute...
FLT3 Gene Mutation NegativeFLT3 Internal Tandem Duplication Positive6 moreThis phase I/II trial studies the side effects and best dose of quizartinib when given in combination with azacitidine or cytarabine in treating patients with acute myeloid leukemia or myelodysplastic syndrome that have come back (relapsed) or are not responding to treatment (refractory). Quizartinib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Drugs used in chemotherapy, such as azacitidine and cytarabine work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving quizartinib with azacitidine or cytarabine may work better in patients with acute myeloid leukemia or myelodysplastic syndrome.

A Phase I Study Of Panobinostat/Lenalidomide/Bortezomib/Dex for Relapsed And Relapsed/Refractory...
Multiple Myeloma in RelapseThis research study is evaluating an investigational drug called "panobinostat" (LBH589) in combination with the standard agents lenalidomide, bortezomib, and dexamethasone as a possible treatment for multiple myeloma.

Folic Acid vs 5-methyltetrahydrofolate (5MTHF) in Recurrent Abortion
Recurrent AbortionRecent data indicates that 5 methyltetrahydrofolate (5MTHF) can reduce serum homocystein level more efficiently than folic acid. On the other hand, folic acid is currently an important part of treatment in idiopathic recurrent abortion. There is no study comparing the effectiveness of these supplements in the treatment of recurrent abortion. The aim of this study is to compare the efficiency of these two agents in the treatment of recurrent abortion. In this study, patients with idiopathic recurrent abortion, referring to Avicenna clinic will be randomly allocated into two groups of those taking either folic acid (5 mg) or 5 MTHF (5mg) from 8 weeks prior to conception until the 20th week of pregnancy. The serum level of folate, homocystein, and ongoing pregnancy will be analysed and compared in the two groups.

Radiolabeled Monoclonal Antibody and Combination Chemotherapy Before Stem Cell Transplant in Treating...
Recurrent B-Cell Non-Hodgkin LymphomaRecurrent Hodgkin Lymphoma6 moreThis phase I/II trial studies the side effects and the best dose of radiolabeled monoclonal antibody when given together with combination chemotherapy before stem cell transplant and to see how well it works in treating patients with high-risk lymphoid malignancies. Radiolabeled monoclonal antibodies, such as yttrium Y 90 anti-CD45 monoclonal antibody BC8, can find cancer cells and carry cancer-killing substances to them without harming normal cells. Giving chemotherapy before a stem transplant stops the growth of cancer cells by stopping them from dividing or killing them. Stem cells collected from the patient's blood are then returned to the patient to replace the blood-forming cells that were destroyed by the radiolabeled monoclonal antibody and chemotherapy.