
Effect of Standard Nutrition Therapy on Nutritional Status and Prognosis in Locoregionally Advanced...
Nasopharyngeal CarcinomaNutrition TherapyThis is a multicenter, randomized controlled, phase III clinical trial. The purpose of this study is to evaluate the efficacy of standard nutrition treatment versus conventional nutrition treatment in local advanced nasopharyngeal carcinoma patients.

A Study of ICP-022 in Patients With R/R DLBCL
Diffuse Large B Cell LymphomaIt is a phase II, multicenter, open-label study is to evaluate the safety, efficacy and pharmacokinetics of a novel BTK inhibitor, ICP-022, in approximately 85 subjects with R/R DLBCL. There will be no control group in this study. Each subject will receive treatment orally every day in 28-day cycles. Each cycle starts immediately after the previously completed cycle without a break between cycles.

Chemoradiation Followed by Durvalumab in Poor Risk and/or Elderly Patients With Stage III NSCLC...
Stage III Non-small-cell Lung CancerElderly (age 70 years or older) or >18 years old AND poor risk (ECOG 2) newly diagnosed stage IIIA-C (AJCC 8th edition) inoperable non-small cell lung cancer (NSCLC) patients are eligible to participate in this phase II open label study of concurrent, split course chemoradiation followed by Durvalumab (MEDI4736).

FOLFOX6 Versus mFOLFIRINOX as First Line Chemotherapy in Metastatic Gastric Cancer or Esophagogastric...
Gastric Carcinoma Stage IVEsophagogastric Junction Adenocarcinoma Stage IVPatients with metastatic adenocarcinoma of the stomach or the esophagogastric junction (II-III type by Siewert) without previous therapy will be treated with one of two chemotherapy combinations . One half of the patients gets 5-Fluorouracil (5-FU), Leucovorin, Oxaliplatin (FOLFOX6), the others 5-Fluorouracil (5-FU), Leucovorin, Oxaliplatin and Irinotecan (mFOLFIRINOX). Main objective of the study is progression free survival.

CD34+ (Malignant) Stem Cell Selection for Patients Receiving Allogenic Stem Cell Transplant
Chronic Myeloid Leukemia (CML)Acute Myelogenous Leukemia (AML)4 moreThe purpose of this study is to learn more about the effects of (classification determinant) CD34+ stem cell selection on graft versus host disease (GVHD) in children, adolescents, and young adults. CD34+ stem cells are the cells that make all the types of blood cells in the body. GVHD is a condition that results from a reaction of transplanted donor T-lymphocytes (a kind of white blood cell) against the recipient's body and organs. Study subjects will be offered treatment involving the use of the CliniMACS® Reagent System (Miltenyi Biotec), a CD34+ selection device to remove T-cells from a peripheral blood stem cell transplant in order to decrease the risk of acute and chronic GVHD. This study involves subjects who are diagnosed with a malignant disease, that has either failed standard therapy or is unlikely to be cured with standard non-transplant therapy, who will receive a peripheral blood stem cell transplant. A malignant disease includes the following: Chronic Myeloid Leukemia (CML) in chronic phase, accelerated phase or blast crisis; Acute Myelogenous Leukemia (AML); Myelodysplastic Syndrome (MDS); Juvenile Myelomonocytic Leukemia (JMML); Acute Lymphoblastic Leukemia (ALL); or Lymphoma (Hodgkin's and Non-Hodgkin's).

Primary Prevention of Patients With Hepatocellular Carcinoma and Concomitant Esophageal Varices...
Bleeding Esophageal VaricesHepatocellular CarcinomaRandomized comparison within the endoscopic esophageal varices ligation versus non-selective beta-blocker in the primary prevention of esophageal variceal bleeding in patients with HCC.

Study of Orally Administered AG-120 in Subjects With Advanced Hematologic Malignancies With an IDH1...
Relapsed or Refractory Acute Myeloid Leukemia (AML)Untreated AML2 moreThe purpose of this Phase I, multicenter study is to evaluate the safety, pharmacokinetics, pharmacodynamics and clinical activity of AG-120 in advanced hematologic malignancies that harbor an IDH1 mutation. The first portion of the study is a dose escalation phase where cohorts of patients will receive ascending oral doses of AG-120 to determine maximum tolerated dose (MTD) and/or the recommended Phase II dose. The second portion of the study is a dose expansion phase where four cohorts of patients will receive AG-120 to further evaluate the safety, tolerability, and clinical activity of the recommended Phase II dose. Additionally, the study includes a substudy evaluating the safety and tolerability, clinical activity, pharmacokinetics, and pharmacodynamics of AG-120 in subjects with relapsed or refractory myelodysplastic syndrome with an IDH1 mutation. Anticipated time on study treatment is until disease progression or unacceptable toxicity occurs.

Treatment Strategies in Colorectal Cancer Patients With Initially Unresectable Liver-only Metastases...
Colorectal CancerLiver MetastasesColorectal cancer patients with initially unresectable liver-only metastases may be cured after downsizing of metastases by neoadjuvant systemic therapy. However, the optimal neoadjuvant induction regimen has not been defined, and no consensus exist on criteria for resectability. In this study colorectal cancer patients with initially unresectable liver-only metastases, as prospectively confirmed by an expert panel according to predefined criteria, will be tested for RAS and BRAF tumor mutation status and selected by location of primary tumor. Patients with RAS or BRAF mutant and/or right sided tumors will be randomised between doublet chemotherapy (FOLFOX or FOLFIRI) plus bevacizumab (schedule 1), and triple chemotherapy (FOLFOXIRI) plus bevacizumab (schedule 2). Patients with RAS AND BRAF wildtype AND left-sided primary tumors will be randomized between doublet chemotherapy (FOLFOX or FOLFIRI) plus either bevacizumab (schedule 1) or panitumumab (schedule 3). Patient imaging will be reviewed for resectability by a central panel, consisting of at least one radiologist and three surgeons every assessment. Central panel review will be performed prior to randomization as well as during treatment, as described in the protocol.

Cladribine, Idarubicin, Cytarabine, and Venetoclax in Treating Patients With Acute Myeloid Leukemia,...
Acute Biphenotypic LeukemiaAcute Myeloid Leukemia15 moreThis phase II trial studies how well cladribine, idarubicin, cytarabine, and venetoclax work in patients with acute myeloid leukemia, high-risk myelodysplastic syndrome, or blastic phase chronic myeloid leukemia. Drugs used in chemotherapy, such as cladribine, idarubicin, cytarabine, and venetoclax, 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.

A Phase I Study of Mebendazole for the Treatment of Pediatric Gliomas
Pilomyxoid AstrocytomaPilocytic Astrocytoma11 moreThis is a study to determine the safety and efficacy of the drug, mebendazole, when used in combination with standard chemotherapy drugs for the treatment of pediatric brain tumors. Mebendazole is a drug used to treat infections with intestinal parasites and has a long track record of safety in humans. Recently, it was discovered that mebendazole may be effective in treating cancer as well, in particular brain tumors. Studies using both cell cultures and mouse models demonstrated that mebendazole was effective in decreasing the growth of brain tumor cells. This study focuses on the treatment of a category of brain tumors called gliomas. Low-grade gliomas are tumors arising from the glial cells of the central nervous system and are characterized by slower, less aggressive growth than that of high-grade gliomas. Some low-grade gliomas have a more aggressive biology and an increased likelihood of resistance or recurrence. Low-grade gliomas are often able to be treated by observation alone if they receive a total surgical resection. However, tumors which are only partially resected and continue to grow or cause symptoms, or those which recur following total resection require additional treatment, such as chemotherapy. Due to their more aggressive nature, pilomyxoid astrocytomas, even when totally resected, will often be treated with chemotherapy. The current first-line treatment at our institution for these low-grade gliomas involves a three-drug chemotherapy regimen of vincristine, carboplatin, and temozolomide. However, based on our data from our own historical controls, over 50% of patients with pilomyxoid astrocytomas will continue to have disease progression while on this treatment. We believe that mebendazole in combination with vincristine, carboplatin, and temozolomide may provide an additional therapeutic benefit with increased progression-free and overall survival for low-grade glioma patients, particularly for those with pilomyxoid astrocytomas. High grade gliomas are more aggressive tumors with poor prognoses. The standard therapy is radiation therapy. A variety of adjuvant chemotherapeutic combinations have been used, but with disappointing results. For high-grade gliomas this study will add mebendazole to the established combination of bevacizumab and irinotecan to determine this combinations safety and efficacy