
A Phase I Safety Study of a Cancer Vaccine to Treat HLA-A2 Positive Advanced Stage Ovarian, Breast...
Ovarian NeoplasmsBreast Neoplasms1 moreTo determine the safety and immunogenicity profile of two (2) different doses of the vaccine DPX-0907 to treat breast, ovarian and prostate cancer.

Evaluate Recovery of Testosterone for Patients Using Eligard
Prostate CancerThe purpose of this study is to determine if testosterone will recover to 90% by year 1 after using Eligard.

Phase II Clinical Trial of Purified Isoflavones in Prostate Cancer: Comparing Safety, Effectiveness...
Prostate CancerThe purpose of our study is to recruit and treat 96 men diagnosed with prostate cancer and scheduled for a prostatectomy with a capsule form of either purified isoflavones or placebo for a 3-6 week period to see if we can slow down the rate of prostate cancer growth. A placebo is a pill or something that looks like the medicine that is being studied but has no active medicine in it. We also want to see if taking purified isoflavones is safe and if it reduces lower urinary tract symptoms. In addition, we want to study if purified isoflavones are able to slow the progression of prostate cancer, and the mechanism of action of purified isoflavones. If the safety and the effects of purified isoflavones on slowing down the progression of prostate cancer is shown in our study, this will also be a safe way of treating men who are at high risk of prostate cancer, so that we can prevent prostate cancer in the future.

Docetaxel, Androgen Deprivation and Proton Therapy for High Risk Prostate Cancer
Prostate CancerThe purpose of this study is to see what effects, good and/or bad, proton based radiation combined with low dose chemotherapy and hormonal therapy, has on patients and their cancer.

Cixutumumab and Temsirolimus in Treating Patients With Metastatic Prostate Cancer
Hormone-Resistant Prostate CancerProstate Adenocarcinoma2 moreThis phase I/II trial is studying the side effects of giving cixutumumab together with temsirolimus and to see how well it works in treating patients with metastatic prostate cancer. Monoclonal antibodies, such as cixutumumab, 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 tumor-killing substances to them. Temsirolimus may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Giving cixutumumab together with temsirolimus may kill more tumor cells.

Carboplatin, Everolimus, and Prednisone in Treating Patients With Metastatic Prostate Cancer That...
Prostate CancerRATIONALE: Drugs used in chemotherapy, such as carboplatin and prednisone, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Everolimus may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth and by blocking blood flow to the tumor. Giving carboplatin together with everolimus and prednisone may kill more tumor cells. PURPOSE: This phase II trial is studying how well giving carboplatin together with everolimus and prednisone works in treating patients with metastatic prostate cancer that progressed after docetaxel.

Bicalutamide and Raloxifene in Treating Patients With Metastatic or Hormone-Refractory Prostate...
Prostate CancerAdenocarcinoma of the Prostate2 moreRATIONALE: Androgens can cause the growth of prostate cancer cells. Antihormone therapy, such as bicalutamide, may lessen the amount of androgens made by the body. Selective estrogen receptor modulators, such as raloxifene, may work together with bicalutamide to stop the growth of prostate cancer. PURPOSE: This clinical trial studies giving bicalutamide and raloxifene together in treating patients with metastatic or hormone-refractory prostate cancer.

Clinical Study of SU011248 in Subjects With High Risk Prostate Cancer Who Have Elected to Undergo...
Prostate CancerProstate cancer is prevalent in the United States, with approximately 230,110 new cases and 29,900 deaths in 2004. Approximately 30% of new cases will be clinical stage T3 when they are diagnosed. This is a stage in which there is high probability that the cancer has spread beyond the prostate gland itself, making it much more difficult to treat. In these cases, when surgery is done by itself and the prostate is removed, it is still very likely that some cancer that has spread beyond the prostate remains and will get worse. Radiation applied to the prostate also does not work well on tumors that have spread beyond the prostate. Even surgery and radiation combined have not eliminated the problems caused by prostate cancer that has spread into the tissue outside the prostate itself. New treatments are needed to deal with prostate cancer at this more serious stage. Study doctors believe that it might be possible to shrink the prostate cancer using a new drug called SUO11248 or Sunitinib. After the patients take the drug, study doctors believe the cancer will shrink back to within the prostate, and they can then surgically remove the prostate and all the cancer. Patients on this study also will be given increasing doses of Sunitinib to find out how much of the drug can be given safely.

Investigation of a New Trial Drug (FE200486) in Prostate Cancer Patients
Prostate CancerThe purpose of this trial was to find an optimal dose for a new trial drug - degarelix (FE200486) - in the treatment of prostate cancer. Furthermore the safety of the drug was studied. Patients participating were treated with FE200486 on one occasion. Thereafter they came in for visits following a specific schedule until blood samples showed that there was no further effect.

Dose Finding Trial With a New Treatment (Degarelix) for Prostate Cancer
Prostate CancerThe purpose of the trial was to evaluate the safety and efficacy of degarelix when comparing six different doses. The patients participating in the trial were treated with degarelix every month for a year. During the treatment the patients had to visit the clinic for investigations. Blood samples for testosterone, dihydrotestosterone, luteinizing hormone, follicle stimulating hormone, and Prostate Specific Antigen were taken and analysed throughout the trial.