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Active clinical trials for "Prostatic Neoplasms"

Results 1881-1890 of 5298

Cabazitaxel and Radiation For Patients With Prostate Cancer

Prostate Cancer

There is a high relapse rate for patients who have undergone prostatectomy and have pathologic extracapsular prostate extension, positive surgical margins or seminal vesicle involvement (pathologic stage 3 disease). While adjuvant radiation improves progression-free and overall survival, approximately half of these patients will develop recurrence. Similarly, radiation therapy has become the standard salvage therapy for patients with rising PSA >0.1 - < 2.0 ng/mL. In common solid tumors such as NSCLC, head and neck cancer and upper gastrointestinal cancers, the addition of chemotherapy to radiation improves survival. It is hypothesized that the addition of radiosensitizing chemotherapy to standard adjuvant radiation will improve survival in patients with stage 3 prostate cancer after prostatectomy and patients with rising PSA < 2.0 ng.mL without detectable disease. Taxanes are powerful radiation enhancers since they synchronize tumor cells in G2/M the most radiosensitive phase of the cell cycle.17,18 Cabazitaxel is the most active taxane in the treatment of prostate cancer. Therefore, we propose a phase I study establishing the optimal dose of cabazitaxel with adjuvant radiation for stage 3 prostate cancer after prostatectomy (PSA undetectable - < 2.0 ng/mL). and for patients with persistent or rising PSA post prostatectomy (PSA >0.1 - < 2.0 ng/mL).

Terminated34 enrollment criteria

Multi-parametric Magnetic Resonance Imaging for Prostate Cancer Patients

Prostate Cancer

This is a pilot study of implement multi-parametric MR imaging for organ delineation and tumor response assessment of prostate cancer patients being treated with radiation therapy.

Terminated2 enrollment criteria

Miami Membrane for Potency (MMEP) Trial

Prostate Cancer

The use of dehydrated human amnionic membrane allograft improves erectile function recovery (as measured by (Sexual History Inventory for Men (SHIM) score) at 12 months after robotic assisted radical prostatectomy (RARP) compared to a control group with no allograft.

Terminated5 enrollment criteria

Evaluating the Impact of Prostate Only Versus Pelvic Radiation for N+ Prostate Cancer.

Prostate Cancer

At least 40% of the patients with prostate cancer (PC) present with positive lymph nodes (N1). The optimal treatment strategy for these patients remains controversial. Although androgen deprivation therapy (ADT) is still often initiated as only treatment, the results are disappointing. Recent studies support the use of more aggressive therapies including external beam radiotherapy (EBRT) and ADT. The retrospective studies supporting the additional use of EBRT in N1 PC patients are however not conclusive regarding to the extent of radiation field. Even after an EPLND, there might be a role for pelvic EBRT in irradicating microscopic disease. However pelvic irradiation irrevocably results in increased toxicity. Moreover, in node negative (N0) PC patients the addition of pelvic EBRT has not resulted in improved outcome in randomised trials. However in the setting of Tumor Node Metastasis pathological stage (p)N1, proven on pathological examination, PC patients this has never been evaluated so far. This trial aims to answer the question whether or not pelvic EBRT is beneficial in pathological N1 PC patients. It is also important to realise that not all pathological N1 PC patients have similar outcome. There is a significant impact of number of positive lymph nodes on outcome, with two positive nodes being suggested as a significant cut-off value in predicting survival in pathological N1 PC patients. By stratifying the patients according to the number of lymph nodes involved this study will add to the proper selection of those patients who will benefit most of pelvic EBRT and avoid toxicity in patients who have no benefit of pelvic EBRT. Additionally, small RNAs constitute potentially valuable markers for the diagnosis, prognosis, and therapeutic choices in PC patients. Blood samples will be collected to examine the potential role of miRNAs as a biomarker and to develop a prognostic signature for clinical relapse-free survival. The results of this trial will serve as a base for developping new trials in order to optimise the treatment of patients with pathological N1 PC.

Terminated12 enrollment criteria

Genetic Information to Inform Treatment and Screening for Prostate Cancer, GIFTS Study

Prostate Carcinoma

This trial studies the role of inherited (present at birth) mutations in cancer risk genes such as BRCA2, BRCA1, ATM, CHEK2, and others in relation to prostate cancer. This study may help researchers understand the frequency and importance of inherited mutations in cancer risk genes in patients with prostate cancer and potentially help identify better ways to treat cancer in patients who have a mutation in one of these genes.

Enrolling by invitation20 enrollment criteria

PSMA-Targeted 18F-DCFPyL PET/MRI for the Detection of Prostate Cancer

Prostate Carcinoma

This phase II trial studies how well 18F-DCFPyL positron emission tomography (PET)/magnetic resonance imaging (MRI) works for the diagnosis of prostate cancer in men with a PSA greater than or equal to 2 ng/mL. 18F-DCFPyl is a radioactive injectable imaging agent made of a prostate specific membrane antigen (PSMA) that attaches to tumor cells, which makes it useful for the diagnosis of prostate cancer. A PET scan is an imaging tool that may help find the location of cancer, by using a radioactive drug and a computer to create images of how organs and tissues in the body are functioning. A mp-MRI is used to help determine the extent of a patient's cancer. A MRI scan uses strong magnets and computers to create detailed images of the soft tissue in the body. This trial aims to compare PET scans to prostate specific mp-MRI to evaluate prostate cancer severity in men with a positive screen for prostate cancer.

Not yet recruiting12 enrollment criteria

Vaccine Study of MVA-MUC1-IL2 in Patients With Prostate Cancer

Prostatic Neoplasms

This study involves the use of an experimental product, TG4010. The purpose of the study is to determine if TG4010 can stimulate the body's immune system to help it fight the cancer.

Terminated3 enrollment criteria

Pilot Study for Detection of PSMA-Low CRPC-NE Tumors With Fluciclovine PET/CT

Advanced Prostate CancerMetastatic Prostate Cancer1 more

This research study is studying a positron emission tomography (PET) agent called 18F-fluciclovine to evaluate how well 18F-fluciclovine-PET scans determine the extent of advanced prostate cancer that either has low prostate-specific membrane antigen (PSMA) expression or has neuroendocrine features. The name of the study interventions are: 18F-fluciclovine-PET/CT scan Two research blood collections

Not yet recruiting13 enrollment criteria

Lidocaine Combined With Sufentanil for Preventing Catheter-related Bladder Discomfort

Prostate Cancer

The goal of this clinical trial is to evaluate the incidence and severity of postoperative catheter-related bladder discomfort after robot-assisted radical prostatectomy. The main question it aims to answer is to evaluate incidence of CRBD immediately after extubation in resuscitation. A total of 20ml of 2% lidocaine and 1μg/ml sufentanil or 20ml normal saline was injected into the bladder of the participants through the catheter. After drug injection, the catheter was clamped for 20 minutes, and then 100ml normal saline was injected into the bladder through the catheter to flush out. Then, the incidence of CRBD was compared between the two groups.

Not yet recruiting8 enrollment criteria

The Prostate Cancer, Genetic Risk, and Equitable Screening Study (ProGRESS)

Prostate Cancer

Prostate cancer is the most common non-skin cancer among Veterans and the second leading cause of male cancer death. Current methods of screening men for prostate cancer are inaccurate and cannot identify which men do not have prostate cancer or have low-grade cases that will not cause harm and which men have significant prostate cancer needing treatment. False-positive screening tests can result in unnecessary prostate biopsies for men who do not need them. However, new genetic testing might help identify which men are at highest risk for prostate cancer. This study will examine whether a genetic test helps identify men at risk for significant prostate cancer while helping men who are at low risk for prostate cancer avoid unnecessary biopsies. If this genetic test proves beneficial, it will improve the way that healthcare providers screen male Veterans for prostate cancer.

Not yet recruiting6 enrollment criteria
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