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Active clinical trials for "Prostatic Neoplasms"

Results 1631-1640 of 5298

Phase I Study of Intensity Modulated Radiation Therapy for Prostate Cancer

Prostate Cancer

BACKGROUND: -This study represents a progression from findings in four previous National Cancer Institute (NCI) Radiation Oncology Branch (ROB) protocols (02-C-0167A, 02-C-0207E, 03-C-0190B, 04-C-0171). In these previous works we have begun to develop techniques to obtain magnetic resonance (MR) biological images and co-register tissue in prostate cancer patients. OBJECTIVES: -The scientific objective of this protocol is to determine the maximum tolerated dose (MTD) of external beam radiation to regions of interest within the prostate based acute toxicity. Secondary objectives of this study are to relate patterns in gene and protein expression to response and toxicity and to evaluate the frequency of late term toxicity. ELIGIBILITY: -Patients with prostate cancer without evidence of metastasis will be eligible for this study. DESIGN: This phase I trial will use intensity modulated radiation therapy (IMRT) to deliver escalating doses of external beam radiation to regions of histologically confirmed prostate cancer. The study will be conducted using a standard 3-6 dose-escalation with an initial 3 patients in each dose cohort and the potential expansion of the cohort to 6 patients. Anatomic magnetic resonance imaging (MRI) and magnetic resonance (MR) biological images, such as magnetic resonance spectroscopy (MRS), will be obtained. Tissue will be acquired from sites of interest, with biopsy locations precisely translated (co-registered) to an MR image of reference. Tissue samples will be processed for complementary deoxyribonucleic acid (cDNA) microarray testing and stored for future analysis in the Radiation Oncology Branch, NCI. A gold seed will be left at the biopsy site as a fiducial marker to direct future radiation therapy. If necessary, additional fiducial markers will be placed for target localization during treatment. Once MR guided biopsies are obtained and fiducial markers placed, the patient will undergo a standard computed tomography (CT) simulation for radiation therapy treatment planning. The MR and CT images will be fused. Areas of pathologically confirmed malignancy will undergo dose escalation as described below. Areas of image abnormality that could not be biopsied or were without definite pathologic evidence of malignancy will be given intermediate doses. The remainder of the prostate gland will receive standard dose (7560 centigray (cGy)'). The trial will accrue 18 to 36 patients with an anticipated accrual period of 2 years.

Terminated19 enrollment criteria

Gene Therapy and Radioactive Iodine in Treating Patients With Locally Recurrent Prostate Cancer...

Prostate Cancer

RATIONALE: Radioactive drugs, such as radioactive iodine, may carry radiation directly to tumor cells and not harm normal cells. Placing a gene called Ad5CMV-NIS in prostate cancer cells may help the prostate cells take in more radioactive iodine and thus kill the cancer cells. Drugs, such as liothyronine sodium, may protect the thyroid from the side effects of radioactive iodine. PURPOSE: This phase I trial is studying the side effects and best dose of gene therapy given together with radioactive iodine in treating patients with locally recurrent prostate cancer that did not respond to external-beam radiation therapy.

Terminated68 enrollment criteria

Docetaxel and Hydroxychloroquine in Treating Patients With Metastatic Prostate Cancer

Prostate Cancer

RATIONALE: Drugs used in chemotherapy, such as docetaxel, work in different ways to stop the growth of tumor cells, either by killing the cells or by stopping them from dividing. Hydroxychloroquine may help docetaxel work better and kill more tumor cells. PURPOSE: This phase II trial is studying how well giving docetaxel together with hydroxychloroquine works in treating patients with metastatic prostate cancer.

Terminated47 enrollment criteria

Safety Study of Autologous Dendritic Cells Injected Into the Prostate After Cryoablation for Advanced...

Prostate Cancer

The purpose of this study is to determine if the intra-tumoral injection of a subject's own dendritic cells after cryotherapy of the prostate is a safe and effective treatment for advanced prostate cancer. In theory, the injected dendritic cells will internalize antigens from the tumor cells which have been damaged by cryotherapy and activate the subject's immune system against that specific tumor. Subjects will also receive a low dose chemotherapy designed to lower the number of T-regulatory cells which have been shown to lower or stop some immune system responses. Hypothesis 1: Dendritic cell injection into cryotreated prostate cancer is non-toxic; Hypothesis 2: Dendritic cell injection into cryotreated prostate cancer is medically beneficial to the subject.

Terminated64 enrollment criteria

Extension Study Investigating the Long-Term Safety and Tolerability of Repeat Doses of FE200486...

Prostate Cancer

An Open-Label, Multi-Center, Extension Study Investigating the Long-Term Safety and Tolerability of Repeat Doses of FE200486 in Prostate Cancer Patients

Terminated4 enrollment criteria

Randomized Trial of Adjuvant Hormonal Therapy in Surgically Treated Prostate Cancer Patients at...

Prostate Cancer

RATIONALE: Testosterone can stimulate the growth of prostate cancer cells. Hormone therapy using leuprolide and flutamide may fight prostate cancer by reducing the production of testosterone. It is not yet known whether receiving leuprolide and flutamide is more effective than receiving no further therapy. PURPOSE: Randomized phase III trial to determine the effectiveness of hormone therapy in treating patients who have stage I or stage II prostate cancer that is at high risk of recurrence and who have already undergone surgery.

Terminated14 enrollment criteria

Vaccine Therapy in Treating Patients With Metastatic Prostate Cancer

Prostate Cancer

RATIONALE: Vaccines made from a person's cancer cells may make the body build an immune response to kill prostate tumor cells. PURPOSE: Phase I trial to study the effectiveness of vaccine therapy in treating patients who have metastatic prostate cancer.

Terminated66 enrollment criteria

MR Fingerprinting for Diagnostic of Prostate Cancer

Prostate CancerMagnetic Resonance Imaging

The diagnostic pathway for suspected prostate cancer relies greatly on radiological imaging. Establishment of magnetic resonance fingerprinting (MRF) has the potential to significantly improve patient experience and outcomes. MRF is a novel and innovative approach to a long-standing challenge of recording and reconstructing MR image The aim is to conduct a clinical pilot study in which patients will be scanned using the newly refined MRF sequence in addition to the conventional scanning protocols.

Active2 enrollment criteria

Feasibility of OmnEcoil System for Integrated Endorectal MRI and Transrectal MRI-Targeted Biopsy...

Prostate Carcinoma

This clinical trial tests whether it is feasible to use the OmnEcoil system for transrectal magnetic resonance imaging (MRI) to visualize and biopsy suspicious lesions in the prostate. The OmnEcoil device combines an endorectal coil (a type of wire placed within the rectum during diagnostic endorectal MRI to take better images of the prostate) with an endorectal probe. The OmnEcoil system is designed to allow for MRI to be used at the same time to image the prostate and aid in the biopsy of the suspected prostate cancer. Usually, these are performed as two separate events at two separate times.

Suspended18 enrollment criteria

Acute Toxicity After Moderate Hypo-fractionated Intensity Modulated Radiotherapy IMRT or Prostate...

Radiation Toxicity

External radiation techniques (EBRT) is considered one of the primary therapies for patients of all risk classifications of prostate cacer . EBRT aims to control tumor growth while keeping acute and late adverse events to a minimum and ensuring biochemical progression-free outcome

Active2 enrollment criteria
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