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Glioblastoma Multiforme clinical trials

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NCT ID: NCT01260506 Completed - Clinical trials for Glioblastoma Multiforme

Single-Arm Open-Label Multicenter Study of VB-111 in Patients With Recurrent Glioblastoma Multiforme

Start date: December 2010
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of this study is to evaluate the safety, tolerability and efficacy of VB-111 in patients with Relapsed Glioblastoma Multiforme.

NCT ID: NCT01213407 Completed - Clinical trials for Glioblastoma Multiforme

Dendritic Cell Cancer Vaccine for High-grade Glioma

GBM-Vax
Start date: April 2010
Phase: Phase 2
Study type: Interventional

A randomised, open-label, 2-arm, multi-centre, phase II clinical study with one group receiving standard therapy with Temozolomide, radiotherapy, and Trivax; and a control group receiving standard therapy with Temozolomide and radiotherapy only; after tumour resection of at least 70% in both groups. The hypothesis is based on the assumption that time to progression will be doubled in the treatment group.

NCT ID: NCT01209442 Completed - Clinical trials for Glioblastoma Multiforme

Hypofractionated Intensity-Modulated Radiation Therapy With Temozolomide and Bevacizumab for Glioblastoma Multiforme

Start date: September 16, 2010
Phase: Phase 2
Study type: Interventional

The purpose of this study is to find out whether Hypofractionated Intensity-Modulated Radiation Therapy (Hypo-IMRT) combining with temozolomide chemotherapy can be safely given with a targeted agent, bevacizumab, and how effective this study treatment will be in controlling your brain tumor.

NCT ID: NCT01205334 Terminated - Clinical trials for Glioblastoma Multiforme

Administration of CMV-Specific Cytotoxic T Cells in Patients With Glioblastoma Multiforme

COGLI
Start date: November 2010
Phase: Phase 1/Phase 2
Study type: Interventional

Patients have a type of brain cancer called glioblastoma multiforme. Because most GBMs come back after standard therapy, patients are being asked to volunteer to take part in a research study using special immune cells. They may have already thought about being in this study. Some patients with GBM show evidence of infection with a virus called Cytomegalovirus before the time of their diagnosis. CMV is found in the cancer cells of some patients with GBM, suggesting that it may play a role in causing the disease. The cancer cells infected by CMV are able to hide from the body's immune system and escape destruction. We want to see if special white blood cells, called T cells, that have been trained to recognize and kill special parts of CMV infected cells can survive in the blood and affect the tumor. We have used this sort of therapy to treat different types of cancer that are positive for other viruses and have had variable results. Some patients have had responses others did not. It is not possible for us to predict if this treatment will work for GBM. The purpose of this study is to find the largest safe dose of CMV-T cells, to learn what the side effects are, and to see whether this therapy might help patients with GBM.

NCT ID: NCT01186406 Terminated - Clinical trials for Glioblastoma Multiforme

Gliadel, XRT, Temodar, Avastin Followed by Avastin, Temodar for Newly Diagnosed Glioblastoma Multiforme (GBM)

Start date: April 2011
Phase: Phase 2
Study type: Interventional

The purpose of this study is to determine the safety and effectiveness of Gliadel wafers at the time of surgery, followed by the combination of radiation, Temodar, and Avastin, and then the combination of Avastin and Temodar, after radiation is complete, on malignant brain tumors. About six weeks after surgery, subjects will begin standard radiation therapy, a fixed dose of Avastin every 2 weeks, and daily Temodar for the six and a half weeks of radiation. Beginning 2-3 weeks after the last radiation therapy, subjects will be given the same fixed dose of Avastin intravenously (through the vein) every 14 days. They will also be given a higher dose of oral Temodar to take daily the first 5 days of each 28-day study cycle.

NCT ID: NCT01181193 Recruiting - Clinical trials for Glioblastoma Multiforme

Vitamin D for Treatment of Glioblastoma Multiforme

Start date: March 2011
Phase: Phase 1/Phase 2
Study type: Interventional

This is non-randomized phase 2 study to assess efficacy and toxicity of long term high dose vitamin D3 given concurrently with chemo-radiotherapy (CCRT) containing temozolomide followed by adjuvant chemotherapy (ACT) with temozolomide in patients with newly diagnosed glioblastoma multiforme GBM). Preoperative diagnosis of GBM will be based on magnetic resonance imaging (MRI) brain scan. All patient will underwent craniotomy with partial or total resection of a visible tumour mass. All patients will be planned for postoperative three-dimensional conformal RT (3-DCRT) or intensity-modulated RT (IMRT) to residual tumour and/or resection bed. A total RT dose of 54-60 Gy will be delivered using 2 Gy daily fractions given over 5 days a week. Daily chemotherapy with temozolomide in the dose of 75 mg/m2/day will be started at the first day of RT, and will be continued for entire period of RT inclusive week-end breaks. ACT will contain 6 cycles of oral temozolomide 150-200 mg/m2/day given for 5 days every 4 weeks. Oral vitamin D3 will be administered in daily dose of 4000 IU. Vitamin D3 therapy will be started 1 week prior to commencing CCRT, and will be terminated immediately after completing last cycle of ACT. MRI scan of the brain will be performed at 4 months after completing CCRT, and than will be repeated every 4 months for first 2 years, and every 6 months for subsequent years. The study participants will be followed until disease progression or death. The study is expected to complete within 4 years.

NCT ID: NCT01180816 Completed - Clinical trials for Glioblastoma Multiforme

Super-Selective Intraarterial Cerebral Infusion Of Temozolomide (Temodar) For Treatment Of Newly Diagnosed GBM And AA

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

The high-grade malignant brain tumors, glioblastoma multiforme (GBM) and anaplastic astrocytoma (AA), comprise the majority of all primary brain tumors in adults. This group of tumors also exhibits the most aggressive behavior, resulting in median overall survival durations of only 9-12 months for GBM, and 3-4 years for AA. Initial therapy has consisted of surgical resection, external beam radiation or both. More recently, a Phase 3 clinical published by Stupp et al in 2005 showed a benefit for using radiotherapy plus concomitant and adjuvant Temozolomide. Still, all patients experience a recurrence after first-line therapy, so improvements in both first-line and salvage therapy are critical to enhancing quality-of-life and prolonging survival. It is unknown if currently used intravenous (IV) therapies even cross the blood brain barrier (BBB). Superselective Intra-arterial Cerebral Infusion (SIACI) is a technique that can effectively increase the concentration of drug delivered to the brain while sparing the body of systemic side effects. One currently used drug called Temozolomide (Temodar) has been shown to be active in human brain tumors but its actual central nervous system (CNS) penetration is unknown. This phase I clinical research trial will test the hypothesis that following the standard 42 day Temozolomide/radiotherapy regimen, Temozolomide can be safely used by direct intracranial superselective intra-arterial cerebral infusion (SIACI) up to a dose of 250mg/m2, followed by the standard maintenance cycle of temozolomide to ultimately enhance survival of patients with newly diagnosed GBM/AA. The investigators will determine the toxicity profile and maximum tolerated dose (MTD) of SIACI Temozolomide. The investigators expect that this project will provide important information regarding the utility of SIACI Temozolomide therapy for malignant gliomas, and may alter the way these drugs are delivered to our patients in the near future.

NCT ID: NCT01177397 Completed - Multiple Myeloma Clinical Trials

Study to Assess Safety, Pharmacokinetics, and Efficacy of Oral CC-223 for Patients With Advanced Solid Tumors, Non-Hodgkin Lymphoma or Multiple Myeloma

Start date: July 20, 2010
Phase: Phase 1/Phase 2
Study type: Interventional

The main purpose of this first human study with CC-223 is to assess the safety and action of a new class of experimental drug (dual mTOR inhibitors) in patients with advanced tumors unresponsive to standard therapies and to determine the appropriate dose and tumor type for later-stage clinical trials.

NCT ID: NCT01169415 Withdrawn - Clinical trials for Glioblastoma Multiforme

Effects of Steroid Tapering on Functional Capacity and Neurocognition

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

Purpose and Objective: 1. To compare the effects of either an abbreviated or protracted taper of dexamethasone on functional capacity in newly diagnosed glioblastoma multiforme (GBM) patients. 2. To compare neurocognitive function in newly diagnosed GBM patients receiving either an abbreviated or protracted taper of dexamethasone. 3. To compare skeletal muscle strength in newly diagnosed GBM patients receiving either an abbreviated or protracted taper of dexamethasone. 4. To examine the association between functional capacity and neurocognitive function and patient-reported measures (i.e. quality of life, fatigue, etc.) in newly diagnosed GBM patient on either an abbreviated or protracted taper of dexamethasone. 5. To examine the association between functional capacity and neurocognitive function and body composition measures (body-mass index, etc.) in newly diagnosed GBM patient on either an abbreviated or protracted taper of dexamethasone. 6. To examine the association between functional capacity and neurocognitive function and biochemical metabolic measurements in newly diagnosed GBM patient on either an abbreviated or protracted taper of dexamethasone. All study endpoints will be assessed at three timepoints as follows: (1) initial assessment after surgery in the hospital, (2) second assessment at initial clinical visit at the Preston Robert Tisch Brain Tumor Center (PRT-BTC) at Duke, approximately 1 week post-operatively, and (3) third assessment at second clinical visit in the PRT-BTC at Duke, approximately 10 weeks post-operatively and after completion of radiotherapy. An additional fourth assessment will be obtained at 4 weeks post-operatively if the subject is undergoing radiotherapy here at Duke.

NCT ID: NCT01151670 Completed - Clinical trials for Glioblastoma Multiforme

Pioglitazone Hydrochloride in Preventing Radiation-Induced Cognitive Dysfunction in Treating Patients With Brain Tumors

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

RATIONALE: Pioglitazone hydrochloride may be effective treatment for cognitive dysfunction caused by radiation therapy. PURPOSE: This phase I trial is studying the side effects and best dose of pioglitazone hydrochloride in preventing radiation-induced cognitive dysfunction in treating patients with brain tumors.