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.

3478
active trials
219
with Poland location
Last update
Aug 27, 2026, 03:01 AM

Showing all 3478 trialspage 117 of 140

The goal of this clinical trial is to prove that the RECAP test is capable of selecting advanced breast cancer patients sensitive for treatment with the PARP inhibitor talazoparib. Participants will undergo an ultrasound-guided biopsy and a blood withdrawal. Homologous Recombination (HR) deficient patients (approximately 30%) can start talazoparib treatment until progression of the disease or unacceptable side-effects and their response will be evaluated.

RecruitingNot applicableBreast cancerMetastatic / advanced

The goal of this clinical trial is to learn how to successfully introduce a new method for finding the sentinel lymph node during breast cancer surgery into routine hospital care. The method uses a dye called indocyanine green (ICG) and a special camera to see the lymph node. The sentinel lymph node is the first lymph node that cancer is likely to spread to. In the Netherlands, about 1 in 7 women develops breast cancer. Finding out whether cancer has spread to the lymph nodes is important for planning treatment and predicting outcomes. The current standard method for sentinel lymph node biopsy (SLNB) uses a radioactive tracer called radioisotope technetium-labeled (99mTc)-nanocolloid. While accurate, this method has several drawbacks: it exposes patients to radioactivity, requires an extra hospital visit or travel to another hospital due to limited nuclear medicine facilities, and is not sustainable. Surgeries using 99mTc can only take place on certain days due to logistical issues, and the signal from 99mTc can be disturbed by the tumor marker placed in the breast. ICG works as well as 99mTc for SLNB and offers several advantages: it is given during surgery (no extra visit needed), produces no radiation, and reduces costs. However, it is still not widely used in the Netherlands because hospitals may not be familiar with it or unsure how to make the switch. This study will introduce ICG step-by-step in several Dutch hospitals and evaluate how to make the change as smooth and effective as possible. It will take place in three stages: I) SLNB with 99mTc only (current practice); II) SLNB with both 99mTc and ICG (transition phase); III) SLNB with ICG only (full implementation). All study procedures take place during planned surgery, with no extra hospital visits. After surgery, participants will receive a short questionnaire (10-15 minutes) to share their experiences with the procedure. Their feedback, combined with input from healthcare providers, will help researchers develop a uniform medical protocol, an implementation guide, and educational materials for surgeons and surgical trainees. The aim is to make ICG widely available across the Netherlands, ensuring that care is less burdensome, more sustainable, and more cost-effective, while keeping treatment accessible in local hospitals.

RecruitingNot applicableFemale onlyBreast cancer

Research purpose: Lymphedema is a very common complication in breast cancer patients. However, since there is currently no curable treatment, it is important to prevent and reduce the severity of lymphedema. The purpose of this study is to evaluate whether preoperative exercise is effective in preventing lymphedema after surgery. For secondary outcome, the preventive effects of exercise on other upper extremity dysfunctions (eg. pectoralis tightness, Axillary web syndrome, Adhesive capsulitis), which are common in breast cancer patients, were assessed.

Breast cancer is not only the leading cause of cancer in women, but also the leading cause of cancer deaths in women. Estrogen receptor-positive and HER2-negative breast cancer is the most prevalent breast cancer subtype. Endocrine therapy is the mainstay of treatment; however, due to the varied nature of the disease, development of resistance to this therapeutic approach is very common in the metastatic setting. The purpose of this study is to see whether the effectiveness of elacestrant can be enhanced by combining it with a targeted agent such as a CDK4/6 inhibitor to treat patients with ER+/HER2- or metastatic breast cancer with prior exposure to a CDK4/6 inhibitor.

RecruitingUnknown phaseBreast cancerMetastatic / advanced

This study investigates the clinical course of CDK4/6 inhibitor treated patients in the real-world setting among patients with breast cancer. CDK4/6 inhibitors may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Studying samples of blood, tissue, ascites or pleural effusions, and fresh body fluids or fresh biopsy, from patients with breast cancer that has spread to the other places in the body (metastatic) may help doctors learn more about cancer and the development of drug resistance in patients, and predict how well patients will respond to treatment.

The purpose of this study is to evaluate the efficacy and safety of inavolisib in combination with fulvestrant compared with inavolisib in combination with fulvestrant in participants with PIK3CA-mutated, HR-positive, HER2-negative locally advanced or metastatic breast cancer (LA/mBC) in the post-cyclin-dependent kinase inhibitor (CDKi) setting.

RecruitingUnknown phaseBreast cancerMetastatic / advanced

I this qualitative study, Investigators will conduct semi-structured interviews with clinicians that are involved in the care of patients with breast cancer to evaluate the acceptability, appropriateness, and feasibility/usability of a metastatic breast cancer-specific prognostic tool. These interviews will be conducted by the UNC CHAI Core and will continue until thematic saturation (estimated 10 participants). The investigators will code the qualitative data using emerging themes, guided by a well-established implementation science theory, the Consolidated Framework for Implementation Research (CFIR). The information gained from these studies will inform an implementation approach to increase the usability and acceptability of a novel prognostic tool to assist oncologists in the prognosis of patients with metastatic breast cancer.

RecruitingUnknown phaseFemale onlyBreast cancerHER2 positiveMetastatic / advanced

This is a prospective, multi-center, open-label, exploratory diagnostic phase II imaging trial for patients with metastatic breast cancer with at least one line of systemic therapy. The overarching aim of the HER2-Ex PET trial is to study the role of precision imaging utilizing positron emission tomography (PET) with the HER2-specific tracer \[68Ga\]Ga-ABY-025 (hereafter referred to as HER2-PET) in enhancing treatment planning for patients with metastatic HER2-expressing breast cancer Patients will be allocated based on HER2-status on PET and biopsy. Patients with HER2-expressing lesions in a fresh or archived tumour biopsy will be treated with T-DXd. The study hypothesis is that PET/CT precision imaging with a contemporary HER2-radiotracer (\[68Ga\]Ga-ABY-025) can be used and can lead to a potentially better identification of patients who benefit from T-DXd treatment, thereby achieving improved treatment responses as well as fewer side effects. This study's diagnostic approach provides a more individualized treatment strategy. Additionally, this study can potentially give us a better biological understanding of HER2-expressing mBC.

RecruitingUnknown phaseBreast cancerMetastatic / advanced

Prospective multicenter observational study to assess molecular drivers of metastatic breast cancer and disease evolution upon therapeutic pressure. The main aim is to develop and validate prognostic, predictive and pathogenic markers in clinically well-characterized population-based material of breast cancer tumors and the corresponding normal tissue.These data will be used to characterize recurrent breast cancer on a molecular level, study tumor evolution, develop biomarkers of response/resistance to targeted therapy in the metastatic setting, enroll patients on targeted treatment clinical studies and to elucidate mechanisms of resistance to therapy.

RecruitingUnknown phaseFemale onlyBreast cancerHER2 positive

This study gathers information from the blood cells and tumor tissue during treatment with anti-HER2 therapies, such as trastuzumab, pertuzumab, lapatinib, or neratinib, in patients with HER2 positive stage I-IV breast cancer who are scheduled to start anti-HER2 therapy. The information gained from this study may help researchers better understand the relation between cell response and anti-HER2 therapies.

ISIdE is an European, multicentric study that aims to assess the efficacy of Sacituzumab Govitecan (SG) in locally advanced or metastatic triple-negative breast cancer where the disease has progressed despite chemotherapy or within 6 months after the end of curative treatments in order to: 1. evaluate the treatment efficacy in less pretreated patients. 2. identify biomarkers that could predict response or resistance to the drug.

The purpose of the study is to assess the efficacy and safety of the addition of Tersolisib (LY4064809/STX-478) to other anti-cancer drugs as first treatment for advanced hormone receptor-positive (HR+)/human epidermal growth factor receptor 2-negative (HER2-) breast cancer. Participants can remain in the study as long as the drug is helping the cancer without unbearable side effects.

Eclectic is a strategy trial; once the class of treatment (endocrine therapy or chemotherapy) has been allocated according to 16α-18F-fluoro-17β-oestradiol (18F-FES) Positron Emission Tomography/Computed Tomography (PET/CT) results and circulating tumor biomarkers, clinicians will decide which treatment to use.

The iCaRe2 is a multi-institutional resource created and maintained by the Fred \& Pamela Buffett Cancer Center to collect and manage standardized, multi-dimensional, longitudinal data and biospecimens on consented adult cancer patients, high-risk individuals, and normal controls. The distinct characteristic of the iCaRe2 is its geographical coverage, with a significant percentage of small and rural hospitals and cancer centers. The iCaRe2 advances comprehensive studies of risk factors of cancer development and progression and enables the design of novel strategies for prevention, screening, early detection and personalized treatment of cancer. Centers with expertise in cancer epidemiology, genetics, biology, early detection, and patient care can collaborate by using the iCaRe2 as a platform for cohort and population studies.

This study is an open, multicenter, dose-escalation and cohort-expansion non-randomized phase I clinical trial to evaluate the safety, tolerability, pharmacokinetic characteristics and preliminary efficacy of Lutetium \[177Lu\] BL-ARC001 in patients with locally advanced or metastatic solid tumors.

This study is an open, multicenter, increasing dose and dose extension nonrandomized phase I clinical study to evaluate the safety, tolerability, pharmacokinetics characteristics and preliminary efficacy of BL-B16D1 in patients with unresectable locally advanced or metastatic breast cancer and other solid tumor.

This phase III trial compares the effectiveness of fractionated stereotactic radiosurgery (FSRS) to usual care stereotactic radiosurgery (SRS) in treating patients with cancer that has spread from where it first started to the brain. Radiation therapy uses high energy x-rays to kill tumor cells and shrink tumors. FSRS delivers a high dose of radiation to the tumor over 3 treatments. SRS is a type of external radiation therapy that uses special equipment to position the patient and precisely give a single large dose of radiation to a tumor. FSRS may be more effective compared to SRS in treating patients with cancer that has spread to the brain.

This phase II trial studies if talazoparib works in patients with cancer that may have spread from where it first started to nearby tissue, lymph nodes, or distant parts of the body (advanced) and has mutation(s) in deoxyribonucleic acid (DNA) damage response genes who have or have not already been treated with another PARP inhibitor. Talazoparib is an inhibitor of PARP, a protein that helps repair damaged DNA. Blocking PARP may help keep cancer cells from repairing their damaged DNA, causing them to die. PARP inhibitors are a type of targeted therapy. All patients who take part on this study must have a gene aberration that changes how their tumors are able to repair DNA. This trial may help scientists learn whether some patients might benefit from taking different PARP inhibitors "one after the other" and learn how talazoparib works in treating patients with advanced cancer who have aberration in DNA repair genes.

This is an open-label Phase 1/2a study. Once the safety of the BC1 cell line alone has been demonstrated in Phase 1, in Phase 2, patients will be treated with the Bria-OTS regimen (see below) and a clinically available check point inhibitor (CPI). During the monotherapy phase of Phase 1, one patient will be treated intradermally every 2 weeks for 6 weeks (4 doses) with an initial dose of the BC1 cell line. If this dose is tolerated, the next patient will receive an increased dose of BC1. If once again tolerated, the third patient will receive a further dose increase of the BC1. Once at least 3 patients have been safely treated with the BC1 cell line, with no dose-limiting toxicity (DLT), the combinational phase of the study will commence. Following the monotherapy phase, patients will be treated with BC1 and the Bria-OTS regimen (see below) every 3 weeks, plus a CPI at the FDA approved labelled dose and schedule. There will be at least a 2-week spacing between enrollment of each of the first three subjects in the study in order to assess for any early unanticipated risk(s). During the Phase 1 combination and Phase 2 expansion phases, all patients will be treated with BC1 cells as part of the Bria-OTS regimen, which includes cyclophosphamide 300 mg/m2 2-3 days prior to BC1 cell inoculation, and peginterferon alpha-2a administered on the same day, following BC1 cell inoculation.

Frequently asked questions

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 →

Is participation in a clinical trial paid?

Participation is free for the patient - the costs of the tested treatment are covered by the trial sponsor. Some trials also reimburse travel and accommodation costs.

How to apply for a clinical trial abroad?

Start with the trial card in our Radar - you will find eligibility criteria and contact details of the center from ClinicalTrials.gov there. Contact is usually in English; if you need support, write to us.

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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