View clinical trials related to Brain Metastases.
Filter by:Up to 10% of patients with cancer will develop symptomatic brain metastases. Given this limited survival it is important to consider quality of life (QOL) when treating these patients. Whole brain radiotherapy (WBRT) can increase survival to 6 month. However, WBRT itself has been shown to reduce QOL by increasing drowsiness, leg weakness and hair loss in patients with brain metastases. Both fatigue and hair loss were reported to have the largest decline in QOL scores when WBRT is used in the prophylactic setting in small cell lung cancer. Recent technological improvements in patient positioning and treatment planning will allow us to treat the whole brain with reduced margins, allowing better sparing of the scalp. In view of the large impact of hair loss on quality of life, the investigators hypothesize to see an improved quality of life with scalp sparing techniques. Study hypothesis: Volumetric arc therapy results in a reduced hair loss and a subsequent clinically important improvement in QOL.
The aim of this study is to evaluate the clinical efficacy and safety of continuous Endostar infusion combined with radiotherapy for treatment of brain metastases.
The purpose of this study is to determine the safety, tolerability, and pharmacokinetics (PK) of 2B3-101 both as single agent and in combination with trastuzumab. Furthermore, the study will explore the preliminary antitumor activity of 2B3-101 as single agent in patients with with solid tumors and brain metastases or recurrent malignant glioma as well as in patients with various forms of breast cancer with and in combination with trastuzumab in HER2+ breast cancer patients with brain metastases.
Because electrochemotherapy is a quick and effective treatment for cutaneous metastases, a novel electrode device has been developed for treatment in soft tissue such as the brain. Up to 18 patients will be treated in this phase I dose-escalating study of electrochemotherapy for brain metastases. Primary endpoint of the clinical trial is safety and secondary endpoint is efficacy. One brain metastasis is treated once-only with the electrode device guided stereotactically through a burr hole using CT monitoring. The patient will be fully anesthetized during the treatment procedure. Patients are followed up for 6 months with regard to neurological function, Barthel Index, steroid use and adverse effects registration (CTCAE). Tumor response will be evaluated by Magnetic Resonance imaging (MRI).
The main purpose of this study is to investigate the efficacy of bevacizumab, etoposide and cisplatin in treating breast cancer patients with central nervous system metastasis (including brain parenchymal and leptomeningeal metastasis).
Background: - Cisplatin and carboplatin are standard cancer treatment drugs used for various childhood cancers, including brain tumors. Both drugs frequently have severe side effects that may reduce their effectiveness, particularly in children, and new treatments are needed that may be similarly effective but less toxic for cancer patients. - Satraplatin is an experimental drug, similar to cisplatin and carboplatin, that has not yet been approved by the Food and Drug Administration. Satraplatin has been shown to treat cancer by interfering with genetic material (DNA) in cancer cells. Some adults with cancer who have received satraplatin had slowing of the growth or shrinkage of their tumor. Researchers are interested in determining whether satraplatin can be effective for cancers that occur in children. Objectives: - To evaluate the safety and effectiveness of satraplatin as a treatment for children and young adults who have solid tumors that have not responded to standard treatment. - To study the effects of satraplatin on the body in terms of side effects and blood chemistry. - To examine the effect that genetic variations may have on the effectiveness of satraplatin. Eligibility: - Children, adolescents, and young adults between 3 and 21 years of age who have solid tumors (including brain tumors) that have not responded to standard treatment. Design: - Participants will be screened with a full physical examination and medical history, blood tests, and tumor imaging studies. - Participants will receive satraplatin pills to be taken every day in the morning for 5 consecutive days, with no food for 2 hours before or 1 hour after the dose. Participants will then have 23 days without the drug to complete a 28-day cycle of treatment. Participants will also receive medication to prevent nausea and vomiting 30 minutes before the first dose of satraplatin. Following the first dose of satraplatin, medication for nausea will be given if needed. - Satraplatin doses will be adjusted based on response to treatment, including potential side effects. Participants will have frequent blood tests and imaging studies to evaluate the effectiveness of the treatment and monitor any side effects, as well as hearing tests and other examinations as required by the study researchers. - Participants will receive satraplatin every 4 weeks for up to 2 years until serious side effects occur or the tumor stops responding to treatment.
Ovarian cancer, especially epithelial ovarian carcinoma, has the highest mortality rate among the gynecologic malignancies. The majority of patients with epithelial ovarian carcinoma are diagnosed at advanced stage which has the overall survival rates of only 19-30%. As the advance in the managements which prolonged the overall survival, metastatic lesion in rare location such as brain was noted in few patients of ovarian cancer in recent years. In the retrospective study, the investigators will review the medical records of the ovarian cancer patients with brain metastasis in the investigators hospital to investigate the incidence, clinical courses, optimal managements and possible prognostic factors in the rare condition.
This study will investigate the safety, tolerability, and effectiveness of changing the order of receiving radiation therapy for treating brain cancer. The investigators hope that changing the sequence of radiation therapy will lower the risk of cancer spreading throughout your spinal fluid, which covers your brain and spinal cord.
This phase II open-label study will be performed to evaluate the response rate of brain metastases from lung and breast tumors under treatment with WBRT and lapatinib.
The purpose of the study is to investigate the response rate for triple negative breast cancer patients with brain metastasis when INIPARIB is used in combination with irinotecan. Based on data generated by BiPar/Sanofi, it is concluded that iniparib does not possess characteristics typical of the PARP inhibitor class. The exact mechanism has not yet been fully elucidated, however based on experiments on tumor cells performed in the laboratory, iniparib is a novel investigational anti-cancer agent that induces gamma-H2AX (a marker of DNA damage) in tumor cell lines, induces cell cycle arrest in the G2/M phase in tumor cell lines, and potentiates the cell cycle effects of DNA damaging modalities in tumor cell lines. Investigations into potential targets of iniparib and its metabolites are ongoing.