View clinical trials related to Glioma.
Filter by:This research is being done to study the safety and utility of 5-aminolevulinic acid (5-ALA) (also known as Gliolan) for identifying brain tumor tissue during surgery. The goal of this study is to determine if 5-ALA can differentiate between tumor and normal brain tissue. Sometimes, during brain surgery, the removal of tumor tissue can be difficult because the tumor can look like normal brain tissue. Studies in other countries have shown that in some brain tumors, 5-ALA can make the tumors appear brighter under ultraviolet light. This may make it easier for doctors to remove as much tumor as safely as possible from your brain. This study also hopes to see if 5-ALA can find different cell populations within the tumor that is removed and allow the researchers to better understand brain tumors. The purpose of this study is to: - Find out how well 5-ALA can separate normal brain tissue from tumor tissues AND to see how well 5-ALA can find different cell populations within brain tumors - Identify the amount of 5-ALA that should be taken before surgery to make the tumors glow under ultraviolet light - Make sure the 5-ALA identifies tumor and not normal brain - Make sure 5-ALA does not cause any side effects
Gliomas are the most common primary brain tumor, yet remain a challenge to effectively treat. Mounting evidence suggests that survival improves with greater tumor removal, yet being able do a complete removal can be difficult due to the tumor's infiltrating nature. 5-aminolevulinic acid (5-ALA) is a natural compound that, when patients take it by mouth 3 hours before surgery, is selectively taken up by glioma cells and causes a red/pink fluorescence (glow) under a blue light that allows tumor margins to be seen during the course of surgery. While this compound is used as a standard-of-care agent in Europe, it remains under testing by the Food and Drug Administration (FDA). A recent clinical trial in Germany, however, has demonstrated a significant improvement in the rate of complete resection for certain brain tumors (65% vs. 34%). The Barrow 5-ALA Intraoperative Confocal (BALANCE) Trial will measure the effect of 5-ALA on the amount of glioma tumor removal. To improve the usefulness of 5-ALA, a new special microscope fitted with a blue light, will be used to magnify microscopic fluorescence at the tumor margins. The investigators' hypothesis is that 5-ALA fluorescence with the use of the special microscope during surgery will greatly lower the amount of tumor left behind.
The aim of the present study is to assess whether a new method of quantifying therapy-associated hemodynamic alterations based on DCE MR imaging may help to distinguish pseudoprogression from true progression in patients with high grade glioma, who received CCRT.
The purpose of this study is to investigate whether weekly Vinorelbine treatment can shrink or slow the growth of pediatric low-grade gliomas that have either returned or are continuing to grow. Vinorelbine is a semi-synthetic vinca alkaloid that has recently generated interest in patients with pediatric low-grade glioma. It has been specifically synthesized to broaden its therapeutic spectrum and decrease the neurotoxicity associated with related agents.
Purpose of the Study: To determine the maximally tolerated dose (MTD) and the Recommended Phase 2 Dose (RP2D) of PVSRIPO when delivered intracerebrally by convection-enhanced delivery (CED). To obtain correlative mechanistic evidence of PVSRIPO's effects on infected WHO Grade IV malignant glioma tumors and to estimate progression-free survival (PFS) and overall survival (OS) in recurrent WHO Grade IV malignant glioma patients. To obtain information about clinical response rates to intratumoral inoculation of PVSRIPO. To estimate the efficacy of PVSRIPO administered at the optimal dose.
RATIONALE: Mibefradil dihydrochloride may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Drugs used in chemotherapy, such as temozolomide, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. PURPOSE: This phase I trial is studying the best dose of mibefradil dihydrochloride when given together with temozolomide in treating patients with glioma.
Many clinical studies have been reported on iMRI, however, their evidence levels are relatively not as good as what people hope they will be. Based on the available literature, there is, at best, level 2 evidence that iMRI-guided surgery is more effective than conventional neuronavigation-guided surgery. The investigators aim to do a single center prospective randomized triple-blind controlled clinical trial to assess the effect of 3.0T high-field intraoperative MRI-guided glioma resection on surgical efficiency and progression-free survival of malignant glioma to provide a level 2A evidence for its clinical application.
The purpose of this Phase 1/2, open-label, single-arm study is to determine the safety and the maximal tolerated dose (MTD) of VAL-083 in patients with recurrent malignant glioma. Pharmacokinetic (PK) properties will be explored and tumor responses to treatment will be evaluated.
This is an open-label, sequential dose exploration study of single agent AMG 595 administered in subjects with recurrent glioblastoma multiforme (GBM) and/or anaplastic astrocytomas (AA). The purpose of the study is to evaluate safety, tolerability, and pharmacokinetics (PK) of AMG 595, and also to evaluate the objective response rate in subjects receiving AMG 595. This study will be conducted in two parts. Part 1 will explore doses of AMG 595 in subjects with recurrent GBM and/or AA. Part 2 (dose expansion) will examine the MTD established in Part 1 in subjects with recurrent GBM.
A Study to Evaluate the Safety and Feasibility of Transcranial MRI-Guided Focused Ultrasound Surgery in the Treatment of Brain Tumors