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Brain Metastases clinical trials

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NCT ID: NCT02284490 Not yet recruiting - Brain Metastases Clinical Trials

High-dose Pemetrexed to Treat Lung Adenocarcinoma With Brain Metastases

Start date: November 2014
Phase: Phase 2
Study type: Interventional

This phase II trial is studying how well pemetrexed disodium works in treating patients with Lung Adenocarcinoma With Brain Metastases

NCT ID: NCT02220491 Completed - Brain Metastases Clinical Trials

Whole Brain Radiotherapy Versus Volumetric Modulated Arc Therapy for Brain Metastases

Amadeus
Start date: October 1, 2014
Phase: N/A
Study type: Interventional

Patients with brain metastases with expected life expectancy of 3-6 months are typically treated with radiotherapy to the whole brain giving a dose of 20 Gy over a 5 day period. This study will compare this with volumetric modulated arc therapy (VMAT) which is capable of delivering 15 Gy in one single session to identified disease within the brain but sparing the normal surrounding brain tissue. Primarily the study will assess whether it is possible to recruit sufficient patient numbers to a trial of this type. It will also compare effectiveness, side effects and quality of life between the two treatment methods.

NCT ID: NCT02215512 Completed - Brain Metastases Clinical Trials

Dose-Escalation Study of RRx-001 in Combination With Whole Brain Radiation in Subjects With Brain Metastases

BRAINSTORM
Start date: February 6, 2015
Phase: Phase 1
Study type: Interventional

In this dose-escalation study, the safety and tolerability of escalating dose levels of RRx-001 administered intravenously twice a week in subjects with brain metastases receiving whole brain radiation therapy (WBRT) will be assessed. Once a maximum tolerated dose is identified, further (up to approximately 30) participants will be recruited. The study will use MRI to monitor changes in tumor blood flow associated with RRx-001.

NCT ID: NCT02187822 Terminated - Brain Metastases Clinical Trials

Fractionated Stereotactic Radiotherapy (FSRT) in Treatment of Brain Metastases

Start date: October 9, 2014
Phase: Phase 1
Study type: Interventional

The main purpose of this study is to see whether addition of TPI 287 to FSRT is safe and tolerable. Researchers also want to find out if adding TPI 287 to FSRT can help with better controlling the growth of brain lesions in people with brain metastases from their cancer.

NCT ID: NCT02185352 Active, not recruiting - Breast Cancer Clinical Trials

Bevacizumab, Etoposide and Cisplatin Followed by Whole Brain Radiotherapy in Breast Cancer With Brain Metastases

A-Plus
Start date: April 21, 2014
Phase: Phase 2
Study type: Interventional

The primary objective of A-PLUS trial is to evaluate and compare the efficacy of induction BEEP (bevacizumab preconditioning followed by etoposide and cisplatin) followed by whole bran radiotherapy (WBRT) with WBRT alone in the controlling of brain metastases (BM) in metastatic breast cancer (MBC) patients who have not previously received WBRT. In past 2 years, the research team has demonstrated that BEEP regimen is a highly effective treatment for brain metastases of breast cancer progressing from WBRT by a multi-center phase II study (ClinicalTrials.gov Identifier: NCT01281696). The basic concept of preconditioning, as referred to starting bevacizumab 1 day before chemotherapy, is that the effect of bevacizumab induced tumor vascular normalization takes time to mature. The investigators hypothesized that as induction BEEP decreased the size of brain tumors, the effectiveness of WBRT would be maximized. The investigators expect this integrated approach will do greater benefit to MBC patients with BM, irrespective of subtype.

NCT ID: NCT02147028 Completed - Brain Metastases Clinical Trials

Hippocampal Sparing Whole Brain Radiotherapy vs Conventional Whole Brain Radiotherapy in Patients With Brain Metastases

HIPPO
Start date: August 3, 2016
Phase: Phase 2
Study type: Interventional

The purpose of this study is to evaluate whether sparing the hippocampi during whole brain radiotherapy following neurosurgery or stereotactic radiosurgery in patients with brain metastases from a systemic tumour helps preserve brain function.

NCT ID: NCT02115139 Completed - Melanoma Clinical Trials

GEM STUDY: Radiation And Yervoy in Patients With Melanoma and Brain Metastases

GRAY-B
Start date: April 4, 2014
Phase: Phase 2
Study type: Interventional

Ipilimumab adds a clinical benefit to radiation therapy in patients with melanoma metastatic to the brain. Melanoma is the third most common cancer causing brain metastases, after cancers of the lung and breast, which appears to reflect the relative propensity of melanoma to metastasize to the central nervous system (CNS). Brain metastases are responsible for 20 to 54 percent of deaths in patients with melanoma, and among those with documented brain metastases, these lesions contribute to death in up to 95 percent of cases, with an estimated median overall survival ranging between 1.8 and 10.5 months, depending upon other prognostic factors. Ipilimumab is an anti-Cytotoxic T-Lymphocyte Antigen 4 (anti-CTLA4) monoclonal antibody that has demonstrated a clinically relevant and statistically significant improvement in overall survival, either alone (second line) or in combination with dacarbazine (DTIC) in 1st line. Ipilimumab has shown activity against brain metastases. According to the European Medicines Agency (EMA) approved label for Yervoy®, the use of glucocorticoids at baseline (commonly prescribed when brain metastases are diagnosed) should be avoided before the administration of ipilimumab. Data show that the use of even high doses of glucocorticoids for the management of immune-related adverse events do not decrease the efficacy of Yervoy®. There is no documented experience on the efficacy of Yervoy® when given concomitantly with radiation therapy and glucocorticoids. In experimental models, radiation therapy is synergistic to anti-Cytotoxic T-Lymphocyte Antigen 4 (anti-CTLA4) strategies (abscopal effect). There are no published results from clinical trials on the interaction between radiation therapy and ipilimumab.

NCT ID: NCT02104193 Completed - Brain Metastases Clinical Trials

Simvastatin Effect on Radiation Therapy of Brain Metastases

Start date: April 2014
Phase: Phase 2
Study type: Interventional

The purpose of the study is to evaluate the effect of simvastatin in combination with radiotherapy on the clinical outcomes of patients with brain metastases.

NCT ID: NCT02097732 Terminated - Metastatic Melanoma Clinical Trials

Ipilimumab Induction in Patients With Melanoma Brain Metastases Receiving Stereotactic Radiosurgery

Start date: April 2014
Phase: Phase 2
Study type: Interventional

This is a study to test the efficacy of using standard immune therapy for melanoma prior to stereotactic radiosurgery (ipilimumab induction), as compared to stereotactic radiosurgery followed by immune therapy. The study's hypothesis is that ipilimumab induction is as good as or better than controlling brain metastases as compared to stereotactic radiosurgery followed by immune therapy.

NCT ID: NCT02085070 Completed - Clinical trials for Non-Small Cell Lung Cancer

MK-3475 in Melanoma and NSCLC Patients With Brain Metastases

Start date: March 2014
Phase: Phase 2
Study type: Interventional

The purpose of this trial is to study the activity of MK-3475 in untreated brain metastases from melanoma or non-small cell lung cancer.