Radiation Therapy Plus Hyperbaric Oxygen in Treating Patients With Newly Diagnosed Glioblastoma...
Brain and Central Nervous System TumorsRATIONALE: Radiation therapy uses high-energy x-rays to damage tumor cells. Hyperbaric oxygen may increase the effectiveness of radiation therapy. Combining hyperbaric oxygen with radiation therapy may be an effective treatment for glioblastoma multiforme. PURPOSE: Phase I/II trial to study the effectiveness of combining radiation therapy with hyperbaric oxygen in treating patients who have newly diagnosed glioblastoma multiforme.
A Trail of Fluzoparil in Combination With Temozolomide in Patients With Recurrent Glioblastoma
GlioblastomaThis is a one arm, open, single center phase II study. The main purpose of this study was to evaluate the efficacy and safety of fluzoparil combined with temozolomide in patients with recurrent glioblastoma.
Trial of AEO in New Glioblastoma (GBM)
Glioblastoma MultiformeThis is a multicenter, Phase 2, Proof-of-concept study in subjects with newly diagnosed glioblastoma multiforme (GBM). All subjects will receive standard of care therapy for the treatment of their GBM and any Anti-Epileptic Drug (AED) deemed necessary for their surgical resection of the GBM. Patients who are taking concomitant AEDs will be eligible for the study. Treatment with Anhydrous Enol-Oxaloacetate will be added to the Standard of Care. This study is testing adjuvant Anhydrous Enol-Oxaloacetate (AEO) in GBM, an orally active drug candidate which in animal studies has demonstrated decreased tumor growth rate and increased survival.
Repurposing Chlorpromazine in the Treatment of Glioblastoma
Glioblastoma MultiformeMGMT-Unmethylated GlioblastomaThis study evaluates the addition of chlorpromazine to the first-line therapeutic protocol, i.e. maximal well-tolerated surgical resection followed by radiotherapy plus concomitant and adjuvant chemotherapy with temozolomide, in newly diagnosed glioblastoma multiforme patients carrying a hypo-methylated O6-methylguanine-DNA-methyltransferase (MGMT) gene
Clinical Study on the Treatment of Recurrent Glioblastoma With Anlotinib
Recurrent GlioblastomaAnlotinib is a novel small molecule multi-target tyrosine kinase inhibitor that can inhibit tumor angiogenesis and inhibit tumor cell growth. We performed second-generation gene sequencing on pathological specimens and cerebrospinal fluid of patients with recurrent glioblastoma.If patients have a genetic mutation (VEGFR,Kit,PDGFR,FGFR)and meet other eligibility criteria, they will be treated with antroinib. The initial observation targets were progression-free survival and adverse reactions. The secondary objective was overal survival.
Nk Cell Therapy for Recurrent Glioblastoma Multiform Patients
Glioblastoma MultiformRecurrent GlioblastomaGlioblastoma multiform is one of the most invasive and deadly cancers that progresses rapidly and leads to death. Surgery with radiotherapy /chemotherapy, as a treatment approach is ineffective in some cases and is associated with relapse and death. Immunotherapy is a special strategy that used as an adjunct therapy in various cancers and among the various methods of immunotherapy; it seems that cell therapy with NK cells is of special importance. A previous study conducted at the Royan Research Institute showed that NK cell proliferation and amplification resulted in the removal of glioblastoma tumor masses in the animal model. The animals had no evidence of tumor recurrence after treatment, and all tumor-related complications resolved after treatment. Therefore, in this study, the investigators intend to evaluate the safety of ex vivo activated cells in 5 patients with glioblastoma multiform whose disease has returned after treatment and who have not had any appropriate treatment.
The Efficacy and Safety of Brain-targeting Immune Cells (EGFRvIII-CAR T Cells) in Treating Patients...
GlioblastomaGlioblastoma Multiforme2 moreThis phase I trial investigates the efficacy and safety of brain-targeting epidermal growth factor receptor chimeric antigen receptor immune cells (EGFRvIII-CAR T cells) in treating patients with leptomeningeal disease from glioblastoma. T cells are part of the immune system and help the body fight malignant tumours. Immune cells can be genetically modified to destroy brain tumor cells in the laboratory. EGFRvIII -CAR T cells are brain tumor specific and can enter and express its genes in immune cells. Administering patients EGFRvIII -CAR T cells may help to recognize and destroy brain tumor cells in patients with leptomeningeal disease from glioblastoma.
MBM-02 (Tempol) for the Treatment of Glioblastoma Multiforme (GBM)
GlioblastomaGlioblastoma MultiformeMBM-02 (Tempol) is an HIF-1 and HIF-2 inhibitor that is being tested as an addition to standard of care treatment that includes radiotherapy and TMZ. MBM-02's ability to increase progression free survival and decrease side effects of TMZ and radiotherapy treatment will be assessed.
To Evaluate the Efficacy and Safety of CAN008 Combined With Re-irradiation (rRT) for Treating Patients...
GBMThis is a multicenter, randomized, controlled study, aiming to evaluate the efficacy and safety of CAN008 administered once-weekly with rRT for treating first tumor recurrence in patients with GBM.
ExAblate Blood-Brain Barrier Disruption for Glioblastoma in Patients Undergoing Standard Chemotherapy...
Glioblastoma MultiformeThe purpose of this study is to evaluate the safety of the ExAblate Model 4000 Type 2.0 used as a tool to disrupt the BBB in patients with Glioblastoma undergoing standard of care therapy.