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Browse 1,466 clinical trials for brain cancer. Find studies that match your criteria and connect with research centers.
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NCT01730950
This randomized phase II trial studies how well bevacizumab with or without radiation therapy works in treating patients with recurrent glioblastoma. Monoclonal antibodies, such as bevacizumab, can block tumor growth in different ways. Some block the ability of tumor cells to grow and spread. Others find tumor cells and help kill them or carry cancer-killing substances to them. Specialized radiation therapy that delivers a high dose of radiation directly to the tumor may kill more tumor cells and cause less damage to normal tissue. It is not yet know whether bevacizumab is more effective with or without radiation therapy in treating patients with recurrent glioblastoma
NCT04077866
This is a randomized, parallel-arm, phase I/II study to evaluate the safety and efficacy of B7-H3 CAR-T in between Temozolomide cycles comparing to Temozolomide alone in treating patients with glioblastoma that has come back or does not respond to the standard treatment. The antigen B7-H3 is highly expressed in glioblastoma of a subset of patients. B7-H3 CAR-T, made from isolated patient peripheral blood mononuclear cells, can specifically attack patient glioblastoma cells that expressing B7-H3.
NCT04444427
Evaluation of GLR2007 for Advanced Solid Tumors
NCT05656300
Rationale: Visualization of tumor spread is of crucial importance when treating patients suffering from glioblastoma (GBM) as the success of tumor resection depends strongly on the extent of tumor infiltration. Current MRI protocols, however, cannot visualize the extent the tumor infiltration. The use of non-toxic, non-dangerous ultrasmall superparamagnetic biodegradable iron oxide (USPIO) particles as a very strong blood pool contrast agent could help visualizing this invisible infiltration Objective: To what extent, do GBMs infiltrate healthy brain tissue and can we use ultrasmall superparamagnetic iron oxide particles to visualize co-opting infiltrating tumor cells in an attempt to predict regions of tumor recurrence? Study design: This study concerns a single arm prospective observational study. Study population: Patients diagnosed with suspected glioblastoma. Intervention (if applicable): USPIO neuroimaging Main study parameters/endpoints: The main parameter of this study concerns the feasibility of using of USPIO particles in healthy controls (n=6) and glioblastoma patients (n=15). Nature and extent of the burden and risks associated with participation, benefit and group relatedness: During this study patients will be intravenously injected with low doses of USPIOs. Risks involved with this procedure include: bruising of the skin after venapunction and allergic reaction to USPIO particles. The application of USPIO neuroimaging can improve diagnosis of patients with suspected glioblastoma, provide more information on the pathophysiology of growth of glioblastoma lesiosn, the role of neuro-inflammation in these lesions and maybe predict regions of tumor recurrence after treatment.
NCT05641220
This trial is set up as a prospective observational cohort study to identify if either biopsy or resection should be the surgical modality of choice in elderly glioblastoma patients with a newly diagnosed tumor. Patients who are considered eligible for GBM resection or biopsy will be included. Through shared-decision making patients and their treating physicians will decide upon resection or biopsy. Written informed consent will be obtained. Participants will be followed for 1 year postoperative to assess potential differences in health-related quality of life and overall survival. Follow-up will consist of health-related quality of life questionaires and neurological assessment at 6 weeks, 3 months, 6 months and 12 months postoperative. Additionally Cognitive and neuro-linguistic tests will be done at 3 months postoperative. These will be compared to results pre-operative. After surgery, patients will receive standard adjuvant treatment with concomitant Temozolomide and radiation therapy, and standard follow-up. Patients in whom the diagnosis GBM is not confirmed in histological analyses will be excluded from the study. Total study duration will be 4 years, of which 3 years will comprise patient inclusion, with a follow-up duration of 1 year.
NCT04895553
Glioma patients with history of venous thromboembolism (VTE) treated on low molecular weight heparin (LMWH) and who decided with their physician to convert to Apixaban (oral drug) will be enrolled into our study and will collect data regarding recurrent VTE and Intracranial hemorrhage and the incidence of these events.
NCT05630664
The general objective of this project is to evaluate the value of cell-free DNA circulating in plasma as a marker of tumor evolution in patients with high-grade gliomas and meningiomas. To this end, we propose to longitudinally collect four samples of plasma at the following time points: * T0: before surgery; * T1: one month after surgery; * T2: one month after the end of radiotherapy; * T3 at the time of radiological progression. The goal is to evaluate whether changes in plasma concentration of circulating cell-free DNA can help predict progression-free survival, overall survival, and response to therapies.
NCT05611645
This randomized phase II trial studies how well lose dose bevacizumab with Hypofractionated Stereotactic Radiotherapy (HSRT) works versus bevacizumab alone in treating patients with glioblastoma at first recurrence. The primary endpoint is 6-month progress-free survivaloverall survival after the treatment. Secondary endpoints included overall survival, objective response rate, cognitive function, quality of life and toxicity.
NCT01954576
This pilot phase II trial studies how well Novocure's Tumor Treating Electric Fields (NovoTTF) therapy works in treating patients with recurrent glioblastoma multiforme. NovoTTF therapy uses a low intensity electric current to kill tumor cells. NovoTTF therapy may be effective treatment for brain cancer.
NCT05600491
This study was to explore the effectiveness and safety of early TMZ chemotherapy between surgery and chemoradiotherapy plus the standard concomitant radiochemotherapy regimen.
NCT05479136
This study will examine whether positron emission tomography (PET) imaging with fluciclovine can reliably differentiate true progression from pseudoprogression months earlier than the conventional MRI methods.
NCT02858895
This is a single-arm, open-label, multicenter study in approximately 52 adults with primary (de novo) GB that has recurred or progressed (first or second recurrence, including this recurrence) after treatment(s) including surgery and radiotherapy with or without chemotherapy and following discontinuation of any previous standard or investigational lines of therapy.
NCT05589961
The primary objective of this study is to evaluate the safety of an innovative integrated treatment regimen for recurrent glioblastoma , including patients with recurrent glioblastoma multiforme.
NCT04114786
This is a single site, investigator initiated study that aims to explore the feasibility of using a personalized 3D printed immobilization mask for CNS patients undergoing radiation therapy. For the purpose of this study, patients will undergo the standard CT SIM, and MR SIM necessary for radiation therapy, creating the masks from the MRIs. Prior to the start of their treatment, patients will have an additional CT scan with the 3D printed mask to confirm safety and treatment accuracy. Patients will then proceed with their standard radiation therapy, immobilized with the mask. There will be a control group that will be treated with the standard thermoplastic mask, as a comparison measure. Both groups will complete a mask tolerability questionnaire throughout the course of their treatment to capture the level of discomfort patients may feel with either masks.
NCT02336165
This is an ongoing Phase 2, open-label, multicenter, non-randomized study of MEDI4736 (durvalumab) in subjects with glioblastoma (GBM) enrolled into 5 non-comparative cohorts. Primary study objectives, which vary by cohort due to differences in subject populations, include evaluation of the clinical efficacy as measured by the overall survival (OS) rate at 12 months (Cohort A), progression-free survival (PFS) at 6 months (Cohorts B, B2, and B3), and OS at 6 months (Cohort C). For all cohorts, secondary objectives include evaluation of the safety/tolerability and clinical efficacy of study treatment, and exploratory objectives include evaluation of the neurologic function and correlative biomarkers.
NCT05569434
PSMA is highly expressed on the cell surface of the microvasculature of several solid tumors, including glioma. This makes it a potentially imaging target for the detection and grading of gliomas. This pilot study was designed to evaluate the diagnostic performance of 68Ga-P16-093, a novel radiopharmaceutical targeting PSMA, which was compared with MRI in the same group of glioma patients.
NCT05556382
This is an observational study on GBM surgical samples to investigate if increasing doses of radiation therapy could improve the radiation response; and in particular the investigators will assess if there is a correlation between the number of the phosphorylated H2AX nuclear foci and the different dose level of radiation therapy.
NCT02885324
This pilot will study the feasibility and exploratory efficacy of using Cabozantinib for recurrent or refractory central nervous system tumors for which there are no curative options. Patients will also be followed for safety, time to progression, event free survival and overall survival
NCT03352427
This trial will evaluate the activity of dasatinib in combination with everolimus for children with gliomas harboring PDGFR alterations, including newly diagnosed high-grade glioma (HGG) or diffuse intrinsic pontine glioma (DIPG) after radiation (stratum A); and recurrent/progressive glioma (grade II-IV, including DIPG) (stratum B).
NCT01137604
An open-label phase 2, multicenter study in participants with recurrent malignant glioma.