Clinical Trials Radar

Below you will find currently recruiting clinical trials for cancer patients - one click lets you show only trials conducted in Poland. The list is automatically updated from the ClinicalTrials.gov database, and we translate descriptions into Polish.

This is not medical advice - consult your oncologist

Descriptions are automatically translated with AI assistance. Always verify details in the original on ClinicalTrials.gov and consult your treating physician.

2515
active trials
185
with Poland location
Last update
Jul 29, 2026, 03:01 AM
Filtered by category: Prostate cancerClear

Found 213 of 2515 trialspage 1 of 9

RecruitingPhase III🇵🇱 PolandProstate cancerMetastatic / advanced

This is a phase 3, randomized, open-label study of opevesostat compared to alternative abiraterone acetate or enzalutamide in participants with metastatic castration-resistant prostate cancer (mCRPC) with respect to overall survival (OS) in participants with mCRPC previously treated with next-generation hormonal agent (NHA) and taxane-based chemotherapy. It is hypothesized that opevesostat is superior with respect to OS in androgen receptor ligand binding domain (AR LBD) mutation-negative and -positive participants.

RecruitingPhase II/III🇵🇱 PolandMale onlyProstate cancerMetastatic / advanced

PRO-BOOST-N is a prospective, multicenter, randomized phase II/III clinical trial for patients with prostate cancer and pelvic lymph node involvement (cN1M0) confirmed by PSMA PET/CT, without distant metastatic disease. Patients with PSMA PET-staged node-positive prostate cancer are potentially curable, but remain at substantial risk of distant progression despite contemporary treatment with radiotherapy, long-term androgen deprivation therapy, and, when appropriate, androgen receptor pathway inhibitors. The optimal way to intensify radiotherapy to the prostate and PSMA PET-positive pelvic lymph nodes remains uncertain in the era of modern molecular imaging. All participants receive a standardized ultrahypofractionated whole-pelvis radiotherapy backbone delivered in five fractions, combined with long-term systemic therapy according to contemporary clinical practice. The study uses a 2 x 2 factorial randomized design to evaluate two treatment questions. The primary comparison evaluates whether prostate dose escalation improves metastasis-free survival compared with no additional prostate boost. Patients assigned to prostate boost receive one of three protocol-defined boost techniques: high-dose-rate brachytherapy, low-dose-rate brachytherapy, or single-fraction SBRT. If more than one prostate boost technique is available at the treating center and technically suitable for the patient, the boost technique is assigned by embedded subrandomization. The key secondary, hierarchically tested comparison evaluates nodal dose escalation by comparing two predefined dose levels to PSMA PET-positive pelvic lymph nodes. Organ-at-risk-driven nodal dose de-escalation is permitted within the higher-dose arm when required for patient safety and protocol compliance. The primary endpoint is metastasis-free survival (MFS) . Secondary endpoints include overall survival (OS), radiographic progression-free survival (rPFS), intraprostatic and regional nodal control, time to castration-resistant prostate cancer, time to next systemic therapy, treatment-related adverse events graded according to CTCAE version 6.0, and patient-reported quality of life, including urinary, bowel, sexual, and global health domains. PRO-BOOST-N aims to determine the optimal radiotherapy intensification strategy for patients with PSMA PET-staged node-positive prostate cancer by prospectively evaluating prostate-directed and nodal-directed dose escalation within a modern, standardized radiotherapy platform.

RecruitingPhase III🇵🇱 PolandMale onlyProstate cancer

The purpose of the study is to demonstrate superiority of Saruparib (AZD5305) relative to placebo added to a standard radiation therapy (RT) + androgen deprivation therapy (ADT) regimen by assessment of metastases-free survival in participants with high-risk and very high-risk localised/locally advanced prostate cancer with a breast cancer gene mutation (BRCAm).

RecruitingPhase II/III🇵🇱 PolandMale onlyProstate cancerEarly / localized

PRO-BOOST-LC is a prospective, multicenter, randomized phase II/III clinical trial for men with localized or locally advanced prostate cancer without lymph node or distant metastases, confirmed using prostate-specific membrane antigen positron emission tomography/computed tomography (PSMA PET/CT). Radiotherapy is an established curative treatment option for prostate cancer. Several modern radiotherapy strategies can safely deliver high radiation doses to the prostate while limiting dose to surrounding organs. These include stereotactic body radiotherapy (SBRT), high-dose-rate (HDR) brachytherapy, low-dose-rate (LDR) brachytherapy, and combinations of external beam radiotherapy with a prostate boost. However, the optimal dose-escalation strategy for balancing cancer control, treatment-related toxicity, and long-term quality of life remains uncertain in patients staged with modern PSMA PET imaging. The aim of PRO-BOOST-LC is to compare definitive SBRT monotherapy with whole-gland prostate boost strategies delivered after a short course of external beam radiotherapy. Participants will be randomly assigned, according to center capability and patient-level technical suitability, to one of the protocol-defined treatment options. The control group receives SBRT monotherapy. The experimental groups receive external beam radiotherapy followed by one of three whole-gland boost techniques: HDR brachytherapy, LDR brachytherapy, or single-fraction SBRT boost. The primary objective is to determine whether assignment to a prostate boost strategy improves failure-free survival compared with SBRT monotherapy. Failure-free survival includes biochemical recurrence, local or regional progression, distant metastases, progression-driven salvage treatment, or death from any cause. Key secondary outcomes include metastasis-free survival, overall survival, physician-reported treatment-related toxicity, and patient-reported quality of life, including urinary, bowel, and sexual function. Participants will undergo baseline clinical evaluation, PSA testing, prostate MRI, PSMA PET/CT, and quality-of-life assessments. After treatment, participants will be followed regularly with clinical assessments, PSA testing, toxicity evaluation, patient questionnaires, and imaging when clinically indicated. The study is designed to provide long-term evidence on how best to use modern radiotherapy dose escalation for patients with PSMA-staged localized or locally advanced prostate cancer.

The purpose of this open-label, first-in-human (FIH) trial is to evaluate the safety, tolerability, pharmacokinetics, pharmacodynamics, and preliminary antitumor activity of DZR123 (Tulmimetostat, CPI-0209), both as monotherapy and in combination with enzalutamide, in patients with advanced solid tumors and lymphomas.

RecruitingUnknown phase🇵🇱 PolandMale onlyProstate cancerMetastatic / advanced

PSMA-OLIGO-PRO is a multicenter ambispective observational real-world registry evaluating outcomes after PSMA PET-guided progression-directed radiotherapy for oligoprogressive prostate cancer. The registry includes retrospectively identified patients treated before June 26, 2026 and prospectively enrolled patients from June 26, 2026 onward. Eligible patients have metastatic hormone-sensitive or castration-resistant prostate cancer, are receiving active systemic therapy, and develop a limited number of new or regrowing lesions while the remaining disease sites are controlled. Oligoprogression is primarily defined by PSMA PET/CT or PSMA PET/MR, with MRI used when clinically appropriate, particularly for intraprostatic, local, or prostate-bed progression. Participants are not assigned to treatment by the registry protocol. All imaging, systemic therapy, radiotherapy modality, dose, fractionation, and follow-up decisions are made by treating physicians as part of routine clinical care. Progression-directed radiotherapy may include stereotactic body radiotherapy for nodal, bone, visceral, or local lesions, moderately hypofractionated external beam radiotherapy when clinically selected, and brachytherapy when appropriate for intraprostatic, prostate-bed, or selected metastatic oligoprogressive lesions. The registry evaluates whether treating all identifiable oligoprogressive lesions can delay escalation to a new systemic therapy line, preserve the oligometastatic state, maintain local control, and provide acceptable safety in contemporary PSMA PET-guided practice.

RecruitingPhase II🇵🇱 PolandMale onlyProstate cancerMetastatic / advanced

Hormone therapy, or androgen deprivation therapy (ADT) is a standard way to treat prostate cancer. It works by reducing the amount of the main male sex hormone, testosterone in the body. Androgen receptor pathway inhibitors (ARPIs) are another type of hormone therapy. They either slow down how much testosterone is made or block testosterone from reaching the prostate cancer cells. Abiraterone acetate (AA) is an ARPI that is used to treat advanced prostate cancer. This type of treatment is usually given as a tablet with a steroid called prednisone/prednisolone to manage any medical problems from the hormone therapy. ASP5541 is a different form of abiraterone acetate. It is given as an injection into the muscle. In this study, ASP5541 will be given to men with advanced prostate cancer, both with and without prednisone/prednisolone. This study will check the safety of ASP5541 and compare how well ASP5541 works in men with advanced prostate cancer compared to abiraterone acetate. The main aims of the study are: * To check how well ASP5541 with prednisone/prednisolone works compared to AA with prednisone/prednisolone in men with advanced prostate cancer who haven't previously been treated with an ARPI. * To check the safety of ASP5541 given by itself in men with advanced prostate cancer that haven't previously been treated with an ARPI. * To check how well ASP5541 given by itself works compared to AA with prednisone/prednisolone in men with advanced prostate cancer that haven't previously been treated with an ARPI. * To check the safety of ASP5541 with prednisone/prednisolone in Japanese men with advanced prostate cancer. Adult men with a certain type of advanced prostate cancer can take part. Their cancer has spread to other parts of the body (metastatic). The different types are: * Metastatic hormone-sensitive prostate cancer (mHSPC). Prostate cancer that needs testosterone to grow. * Metastatic castration-resistant prostate cancer (mCRPC). Prostate cancer that continues to grow even when testosterone levels are low. In this study there will be 3 treatment groups: * In Group 1, men with mCRPC who haven't previously been treated with an androgen receptor pathway inhibitor will either be given ASP5541 and prednisone/prednisolone or be given abiraterone acetate and prednisone/prednisolone. * In Group 2, men with mHSPC who haven't previously been treated with an androgen receptor pathway inhibitor will either be given ASP5541 by itself or be given abiraterone acetate with prednisone/prednisolone. * In Group 3, Japanese men with mCRPC or mHSPC who may or may not have previously been treated with an androgen receptor pathway inhibitor will be given ASP5541 with prednisone/prednisolone. ASP5541 will be given as an injection into a muscle every 12 weeks. Men with mCRPC will take prednisone/prednisolone twice daily and men with mHSPC will take prednisone/prednisolone once daily. Abiraterone acetate will be given as tablets to be taken once daily. All groups will also receive the standard of care treatment, such as androgen deprivation therapy. The men in the study will visit their clinic regularly during and after treatment for health checks, including checking for any medical problems. Some men (Group 2) will check their blood pressure weekly at home. On some visits they will also have scans to check for any changes in their cancer. The number of visits and type of safety checks done at each visit will depend on the health of each person and when they completed their treatment.

RecruitingPhase III🇵🇱 PolandMale onlyProstate cancerMetastatic / advanced

The purpose of this study is to evaluate the overall survival (length of time from the start of study to date of death from any cause) for pasritamig (JNJ-78278343) in combination with best supportive care (BSC) as compared to placebo with BSC in participants with metastatic castration-resistant prostate cancer (mCRPC; a stage of cancer that has spread beyond the prostate gland and is no longer responding to hormone therapies).

RecruitingUnknown phase🇵🇱 PolandMale onlyProstate cancerMetastatic / advanced

This is an ambispective, multicenter, observational real-world registry of patients with synchronous de novo oligometastatic prostate cancer, defined as prostate cancer with up to 10 extraregional metastatic lesions diagnosed at initial presentation or within 6 months of the primary diagnosis. The study will evaluate outcomes after comprehensive local and metastasis-directed treatment. Eligible patients receive definitive prostate-directed radiotherapy, which may include external-beam radiotherapy, external-beam radiotherapy with brachytherapy boost, or definitive prostate brachytherapy monotherapy in selected patients, together with stereotactic body radiotherapy to all identified extraregional metastatic lesions. Systemic therapy is given according to routine clinical practice and local multidisciplinary decisions. The registry is non-interventional. Participants are not assigned to treatment by the study protocol, and no experimental treatment, randomization, or protocol-mandated imaging schedule is used. The study collects de-identified data from routine medical records, including baseline disease characteristics, imaging, radiotherapy details, systemic therapy, radiographic progression, patterns of failure, subsequent treatments, adverse events, and survival. The study includes historical retrospective data, prospective follow-up of previously treated eligible patients, and prospective enrollment of newly eligible patients from the registry activation date. The main goal is to describe where and when prostate cancer progresses after comprehensive treatment of the prostate and all visible metastatic lesions, and to identify clinical and treatment-related factors associated with disease control and adverse events.

RecruitingPhase I/II🇵🇱 PolandProstate cancerMetastatic / advanced

The purpose of this substudy is to assess the efficacy and safety of ifinatamab deruxtecan (I-DXd), given alone or with other treatments in participants with metastatic castration-resistant prostate cancer (mCRPC). The goals of this study are to learn about: * The safety of the study treatment and if people tolerate it. * A safe dose level of I-DXd that can be used with other treatments. * Participant levels of prostate specific antigen (PSA) during treatment.

RecruitingPhase III🇵🇱 PolandMale onlyProstate cancerMetastatic / advanced

Researchers are looking for new ways to treat metastatic castration-resistant prostate cancer (mCRPC). Researchers have designed a study medicine called ifinatamab deruxtecan (also called I-DXd or MK-2400) to treat mCRPC. The goal of this study is to learn if people who receive I-DXd live longer overall and live longer without the cancer growing or spreading than people who receive chemotherapy.

RecruitingPhase III🇵🇱 PolandMale onlyProstate cancerMetastatic / advanced

This study will explore whether a combination of the investigational drug mevrometostat (PF-06821497) and enzalutamide will work better than taking enzalutamide alone in participants with mCSPC who are ARPI naïve and have not yet received chemotherapy in the mCSPC setting.

The purpose of this study is to learn about the safety and effects of the study medicine (called Mevrometostat) for the possible treatment of Relapsed/ Refractory Small Cell Lung Cancer (SCLC), Castration Resistant Prostate Cancer (CRPC) and Follicular Lymphoma (FL). The study consists of 3 parts; Part 1 and 2 enrolled participants with SCLC, metastatic CRPC, and FL are closed for enrollment. Part 3, which is open for enrollment is seeking men who: * have Castration Resistant Prostate Cancer (CRPC) and * have previously received treatment for CRPC and have progressed from the last treatment All participants in Part 3 of this study will receive mevrometostat and/ or enzalutamide. Part 3 consists of 2 sub studies each has an assessment phase and a maintenance phase. The Part 3 DDI substudy consist of 2 cohorts, Cohort 1 (monotherapy cohort) and Cohort 2 (Combination cohort). In the assessment phase: * participants in the BE substudy will take 3 single doses of mevrometostat by mouth over 3 periods. * participants in the DDI substudy Cohort 1 (monotherapy cohort) will take mevrometostat 2 times a day and/or itraconazole 1 time a day based on a present schedule. * participants in the DDI substudy Cohort 2 (combination cohort) will take mevrometostat 2 times a day, enzalutamide 1 time a day, and/or itraconazole 1 time a day based on a present schedule. After completion of the assessment phase, participants will enter the maintenance phase where they will receive mevrometostat 2 times a day and enzalutamide 1 time a day by mouth until their cancer is no longer responding. The study will look at the experiences of participanrs receiving the study medicine. This will help see if the study medicine is safe and effective.

RecruitingUnknown phaseMale onlyProstate cancer

In prostate cancer radiotherapy, it is important to accurately identify and protect healthy organs near the prostate. One of these structures is the urethra, the tube that carries urine from the bladder out of the body. If the urethra receives too much radiation, patients may experience urinary side effects. Current CT scans used for treatment planning do not clearly show the urethra unless a urinary catheter is inserted. While a catheter can improve visibility, it may cause discomfort, increase the risk of infection, and slightly change the natural position of the urethra. MRI scans can also help visualize the urethra, but they are not always available and may not fit easily into all treatment workflows. Photon-counting CT (PCCT) is a new type of CT scanner that produces higher-quality images with better detail. This technology may allow doctors to see the urethra without using a catheter. The purpose of this pilot study is to investigate whether PCCT can reliably visualize the urethra in prostate cancer patients without the need for catheter insertion. If successful, this approach could make treatment planning more comfortable and less invasive while helping doctors better protect healthy tissues during radiotherapy.

Background: \- Some genes may be associated with a greater chance of side effects during cancer treatment. These genes may also make certain treatments less effective. Researchers want to collect blood or cheek swab samples from people having cancer treatment to study these genes. Objectives: \- To obtain a blood or cheek swab sample to study genetic differences that may affect cancer treatment. Eligibility: \- Individuals with cancer who are being treated at the National Cancer Institute. Design: * Participants will provide a blood sample for study. * Participants who have blood-based cancer, such as leukemia, will provide a cheek swab sample. * If the blood or cheek swab sample does not have enough genetic material for analysis, an additional sample may be collected.

RecruitingPhase IIMale onlyProstate cancerMetastatic / advanced

The goal of this clinical trial is to learn if fezolinetant can treat hot flashes (vasomotor symptoms) in men with prostate cancer undergoing androgen deprivation therapy. The main questions it aims to answer are: * Does fezolinetant improve the frequency and severity of hot flashes? * Does fezolinetant cause any harm to the liver? * Does fezolinetant improve quality of life, sleep quality, fatigue, mood, sexual function, and metabolic parameters? Researchers will compare how people respond to fezolinetant versus a placebo, which does not contain any active medicine. Participants will: * Take fezolinetant or a placebo every day for 4 weeks * Visit the clinic once every 2 weeks for checkups and tests * Keep a diary of the number of times and intensity that they experience hot flashes

RecruitingNot applicableMale onlyProstate cancerEarly / localized

The study titled " The effectiveness of telemedicine monitoring prehabilitation in prostate cancer patients undergoing radical prostatectomy " investigates the impact of a structured telemedicine-supported prehabilitation and rehabilitation program on reducing postoperative urinary incontinence in patients with localized prostate cancer. Radical prostatectomy, a common treatment for localized prostate cancer, is often associated with complications such as urinary incontinence, which significantly affects quality of life. This study aims to address this issue by enhancing patients' physical conditioning and adherence to pre- and postoperative rehabilitation through the use of wearable devices and remote physiotherapy consultations.

RecruitingPhase IIMale onlyProstate cancerMetastatic / advanced

This is a multi-centre, investigator-initiated, three-arm, randomized trial to investigate the addition on androgen receptor pathway inhibitor and atorvastatin to standard of care radiation and hormone therapy improve quality of life. Participants will either receive standard of care radiation and hormone (ADT) therapy (Arm 1), standard of care radiation and hormone (ADT) therapy plus oral abiraterone for 8-9 months (Arm 3) or standard of care radiation and hormone (ADT) therapy plus oral abiraterone for 8-9 months plus atorvastatin for 2 years (Arm 4). Participants will be routinely follow-up in clinic or remotely for up to 5 years.

RecruitingPhase IIIMale onlyProstate cancerMetastatic / advanced

The purpose of this study is to determine whether \[225Ac\]Ac-PSMA-617 (AAA817), given for up to 6 cycles at a dose of 10 Megabecquerel (MBq) +/- 10%, plus androgen receptor pathway inhibitor (ARPI), improves the radiographic progression free survival (rPFS) compared to investigator's choice of standard of care (SOC) (ARPI change or taxane-based chemotherapy or \[177Lu\]Lu-PSMA-617 (AAA617)) in adult participants with PSMA-positive metastatic castration resistant prostate cancer (mCRPC) treated with another ARPI as last treatment and who have not been exposed to a taxane-containing chemotherapy in the mCRPC setting nor have received any prior PSMA-targeting radioligand therapy.

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What is a clinical trial?

It is a study of a new therapy or drug involving patients, conducted according to a strict protocol and under medical supervision. For many cancer patients, it provides access to therapies that are not yet standardly available. Read also: Clinical trial phases - what they mean →

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Data from ClinicalTrials.gov (NIH, USA). AI translations may contain errors - always check the original. The foundation is not responsible for medical decisions made based on this information.

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