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Prostate Cancer clinical trials

View clinical trials related to Prostate Cancer.

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NCT ID: NCT03292874 Completed - Prostate Cancer Clinical Trials

High Resolution MRI Study for Prostate Cancer

Start date: September 13, 2017
Phase: N/A
Study type: Interventional

This high resolution MRI (hrMRI), along with stand MRI (sMRI) will be obtained at baseline and again in approximately 1 year in patients on prostate cancer active surveillance. Changes in lesion size and ADC values will be assessed on the serial studies. This study evaluates the hypothesis that hrMRI will detect changes that sMRI cannot detect and that these changes will correlate with prostate cancer progression as determined on prostate biopsy.

NCT ID: NCT03290417 Completed - Prostate Cancer Clinical Trials

Correlative Analysis of the Genomics of Vitamin D and Omega-3 Fatty Acid Intake in Prostate Cancer

Start date: September 7, 2017
Phase: N/A
Study type: Interventional

The purpose of this study is to see if eating vitamin D, omega 3 and turmeric (curcumin) slows the growth of prostate cancer in men on active surveillance.

NCT ID: NCT03284684 Completed - Breast Cancer Clinical Trials

Kinetics of Perioperative Circulating DNA in Cancer Surgery

Periop ctDNA
Start date: January 22, 2018
Phase:
Study type: Observational

The aim of this study was to determine the kinetics of perioperative circulating DNA in three types of cancer. This first step will enable further studies comparing the potential impact of certain techniques or anesthetic products on cancer surgery.

NCT ID: NCT03278197 Completed - Prostate Cancer Clinical Trials

Evaluation of a Web-based Decision Aid Tool for Prostate Cancer Patients

ProDecA
Start date: January 2015
Phase: N/A
Study type: Interventional

Patients diagnosed with localized prostate cancer may be eligible for different treatment options. MAASTRO Clinic (MAAStricht Radiation Oncology) developed a web-based decision aid tool for these patients. The goal of the tool is to help patients to understand the treatments, and empower the patients to participate in the decision making process. The aim of this study is threefold: (A) user-testing and validation of the tool, by using a systematically development process compliant with the IPDAS (International Patients Decision Aids Standards) criteria (B) establish the impact of the tool on the decision making process; (C) identify barriers and facilitators for the implementation of shared decision making and the tool in clinical practice. The study covers 3 phases: 1. Development phase 1.1 Assess decisional needs of patients and clinicians. 1.2 Test patients' and clinicians' comprehensibility, acceptability and usability on the alpha-version of the tool. 1.3 Value clarification: Delphi study with former prostate cancer patients to determine the most important patient preferences and value clarification aspects the decision aid should include. 2. Implementation phase: Develop an implementation and dissemination plan for shared decision-making which is based on the evaluation of barriers and facilitators for the use of patient decision aid tools in clinical practice. 3. Evaluation phase: Establish the impact of on knowledge, decisional conflict and the shared decision-making process, as well as the extent to which clinicians involve patients in decision-making. A mixed method will be used. It comprises structured interviews combined with think aloud and questionnaires with stakeholders involved in the whole process of development, implementation and evaluation (patients, urologists, radiotherapists, nurses, general practitioners, patient organizations, and insurance companies).

NCT ID: NCT03276572 Completed - Prostate Cancer Clinical Trials

Phase I Trial of 225Ac-J591 in Patients With mCRPC

Start date: October 10, 2017
Phase: Phase 1
Study type: Interventional

This is an open-label, single-center Phase I dose escalation study designed to determine the dose-limiting toxicity (DLT) and the maximum tolerated dose (MTD) of 225Ac-J591 in a single dose regimen.

NCT ID: NCT03275857 Completed - Prostate Cancer Clinical Trials

Cisplatin in Castration Resistant Prostate Cancer

Start date: September 21, 2018
Phase: Early Phase 1
Study type: Interventional

It is hypothesized that treatment with cisplatin will reverse emerging refractoriness to enzalutimide in patients with CRPC by affecting AR function.

NCT ID: NCT03271502 Completed - Prostate Cancer Clinical Trials

Effect of Anesthesia on Optic Nerve Sheath Diameter in Patients Undergoing Robot-assisted Laparoscopic Prostatectomy

Start date: September 4, 2017
Phase: N/A
Study type: Interventional

The purpose of this study was to evaluate the difference between the optic nerve sheath diameter measured during total intravenous anesthesia and the optic nerve sheath diameter measured during inhalation anesthesia in patients undergoing robot-assisted laparoscopic prostatectomy.

NCT ID: NCT03264456 Completed - Prostate Cancer Clinical Trials

Pretreatment Staging of High-Risk Prostate Cancer With 18F-Fluciclovine PET/MRI

Start date: November 8, 2017
Phase: Phase 1/Phase 2
Study type: Interventional

There is great need for improved preoperative imaging in men with high-risk prostate cancer. Investigators propose to develop and validate an optimized simultaneous PET/MRI protocol for local, regional and whole body preoperative staging in a single imaging session using the amino acid PET tracer, F-18 fluciclovine. Despite advances in the diagnosis and treatment of prostate cancer, the preoperative staging of men with prostate carcinoma (PCa) is currently problematic. Conventional imaging is falsely negative for regional lymph node metastases in a substantial fraction of men. In particular, approximately 35% of men with high-risk prostate cancer will have biochemical recurrence even after optimal surgical resection. A major benefit of simultaneous acquisition of a multiparametric prostate MRI (mpMRI) and F-18 fluciclovine PET includes having the patient undergo a single imaging study which provides both anatomic and molecular characterization of the tumor, including metastases which would potentially be missed by conventional anatomic imaging and size criteria. Additionally, simultaneous acquisition will improve co-registration of the PET and MR data which is valuable for small lesions and in anatomically complex regions. Although the use of fluciclovine in the characterization of the primary PCa remains to be established, the anatomic detail provided by conventional mpMRI will complement the detection of small volume metastatic disease by fluciclovine PET. Additionally, the use of hybrid PET/MRI technology allows for the assessment of dynamic tracer uptake and washout during the whole body and regional PET/MRI scan, which may demonstrate the ability to increase detection of the primary PCa on fluciclovine PET. If F-18 fluciclovine PET/MRI can reliably and accurately detect nodal metastases in high-risk prostate cancer patients, surgeons may use this new technology to develop new treatment algorithms for the optimal management of these patients.

NCT ID: NCT03263780 Completed - Prostate Cancer Clinical Trials

High Resolution PET-MRI Before Prostate Cancer HIFU

Start date: December 7, 2017
Phase: Phase 2
Study type: Interventional

This prospective trial aims to determine if enhanced prostate imaging using two novel imaging technologies (high resolution DWI and 18F-fluciclovine PET-MRI) will detect prostate cancers not seen on standard multiparametric prostate MRI in patients considered candidates for focal HIFU.

NCT ID: NCT03262103 Completed - Prostate Cancer Clinical Trials

Neoadjuvant Hiltonol® (PolyICLC) for Prostate Cancer

Start date: June 16, 2017
Phase: Phase 1
Study type: Interventional

The purpose of this study is to test an approach of stimulating the body's immune system to attack prostate cancer. This study will test injection of a substance polylysine and carboxymethylcellulose (Poly-ICLC, Hiltonol®)through a needle guided by MRI (magnetic resonance imaging) ultrasound fusion technology into the prostate gland. Poly ICLC has been used to help the body in its fight against cancer. The first aim of the study is to determine the highest dose of a substance Poly-ICLC (Hiltonol®) that can be safely tolerated by the study participants. The second aim of the study is to find out the toxicity or side effects of poly-ICLC.