Purpose: to assess efficacy and safety of Dato-DXd + rilvegostomig as adjuvant therapy versus SoC in MIUC participants with high-risk residual disease after radical resection. Study details: Duration: \~78 months (6.5 years) from FSI to last subject visit Treatment length: up to \~12 months, depending on randomized arm Visit frequency: every 3 weeks in Arms 1 and 2; every 2-4 weeks per SoC in Arm 3
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.
Found 109 of 2515 trials— page 1 of 5
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.
The purpose of this study is to test a new medicine, vepugratinib, in comparison with placebo, to see if it is safe and can help people with a bladder cancer that is advanced or has spread. Vepugratinib or placebo will be administered in combination with enfortumab vedotin and pembrolizumab. Study participation could last up to approximately 6 years.
The main purpose of this study is to compare the disease-free survival between participants receiving treatment with TAR-210 versus investigator's choice of intravesical chemotherapy for treatment of intermediate-risk NMIBC.
Researchers are looking for new ways to treat people with high-risk non-muscle invasive bladder cancer (HR NMIBC). NMIBC is cancer in the tissue that lines the inside of the bladder but has not spread to the bladder muscle or outside of the bladder. High-risk means NMIBC may have a high chance of getting worse or coming back after treatment. HR NMIBC can also include carcinoma in situ (CIS). CIS is bladder cancer that appears flat and is only in the inner layer (surface) of the bladder. CIS is not raised and is not growing toward the center of the bladder. The standard treatment for HR NMIBC is a procedure to remove the tumor called transurethral resection of the bladder tumor (TURBT) followed by Bacillus Calmette-Guerin (BCG). Standard treatment is something that is considered the first line of treatment for a condition. BCG is an immunotherapy, which is a treatment that helps the immune system fight cancer. However, BCG may not work to treat HR NMIBC in some people. Researchers want to learn if adding intismeran autogene, the study treatment, to standard treatment can help treat HR NMIBC. Intismeran autogene is designed to help a person's immune system attack their specific cancer. The goal of this study are to learn if people who receive V940 with BCG live longer and without the cancer growing, spreading, or coming back compared to people who receive BCG alone.
A phase 3b, Randomized, Controlled Trial of Nadofaragene Firadenovec vs. Observation in Participants with Intermediate Risk Non-Muscle Invasive Bladder Cancer (IR NMIBC)
This study is designed to assess the efficacy and safety of ifinatamab deruxtecan (I-DXD) in the following tumor types: endometrial cancer (EC); head and neck squamous cell carcinoma (HNSCC); pancreatic ductal adenocarcinoma (PDAC); colorectal cancer (CRC); hepatocellular carcinoma (HCC); adenocarcinoma of esophagus, gastroesophageal junction, and stomach (Ad-Eso/GEJ/gastric); urothelial carcinoma (UC); ovarian cancer (OVC); cervical cancer (CC); biliary tract cancer (BTC); human epidermal growth factor 2 (HER2)-low breast cancer (BC); HER2 immunohistochemistry (IHC) 0 BC; and cutaneous melanoma.
Patients with MIBC will receive 3 cycles (C1-C3) of induction enfortumab vedotin plus pembrolizumab followed by restaging including MRI of the bladder, urine cytology, and cystoscopy with TURBT of any visible tumor and/or resection site plus random biopsies using a recommended template. Patients achieving a stringently defined cCR (clinical complete response) will receive 14 cycles of "maintenance" treatment. Enfortumab vedotin will be administered during the first 6 cycles (C4-C9) of "maintenance" treatment and pembrolizumab will be given all 14 cycles (C4-C14). Patients with any residual disease at clinical restaging (i.e., \>cTa disease) will undergo cystectomy.
This Phase 1 clinical trial will test a new drug called \[18F\]DK222 in people with cancer. The goal is to see if the drug is safe, how it spreads through the body, how long it stays in the body, and how much radiation it gives off. \[18F\]DK222 is designed to attach strongly and specifically to a protein called PD-L1, which helps cancer hide from the immune system. This is a first in human study to collect preliminary safety and toxicity data of \[18F\]DK222.
The purpose of this phase I study is to evaluate the safety, tolerability, dosimetry, and preliminary anti-tumor activity of \[177Lu\]Lu-DWJ155 and the safety and imaging properties of \[68Ga\]Ga-DWJ155 in patients with histologically or cytologically confirmed advanced HER2+, HR+/HER2-negative, or triple negative breast cancer (TNBC), non-small cell lung cancer (NSCLC), HER2-3+ or 2+ (ISH positive or negative) gastric/gastroesophageal junction (GEJ) cancer, and bladder cancer.
This is a multicenter, randomized, double-blind, parallel-controlled phase I clinical study to evaluate the similarity in PK profile, efficacy, safety and immunogenicity of HLX18 and OPDIVO® in patients with resected esophageal or gastroesophageal junction cancer (EC/GEJC), melanoma (MEL), or urothelial carcinoma (UC).
This study investigates the feasibility of the Labcorp Plasma Detect, which is an assay (test) that looks for circulating tumor DNA (ctDNA) in patients who have muscle-invasive (MI) urothelial carcinoma (also known as MI bladder cancer, MIBC). During this study, tissue, blood and urine samples will also be analyzed to help the study team better understand this type of cancer and a patient's response to treatment.
The purpose of this study is to find out if the navigation program helps participants manage immunotherapy treatment better than usual care. Investigators will also look at how the navigation program impacts participants' quality of life. Investigators will measure quality of life by having participants complete questionnaires.
Urological diseases such as urinary stones, prostate cancer, and bladder cancer are very common and often require highly specialized diagnosis and treatment. Today, the quality of care can vary between doctors, and there are not enough urology specialists to meet patient demand. Artificial intelligence (AI) may help doctors make faster and more consistent decisions. This study aims to develop and test an AI-powered assistant called "UroAgent" that supports doctors in diagnosing and treating urological diseases. UroAgent is built on a large language model trained specifically for urology and is connected to tools that help it retrieve medical knowledge and analyze images. To build and test UroAgent, the research team will use 1,500 past patient records from 2010-2025 and collect 500 new patient cases for validation, for a total of 2,000 cases. This is an observational study: no patient's medical treatment will be changed because of it. The goal is to create a reliable AI tool that helps improve urological care for patients.
ASP1002 is being studied in people with tumors that have spread to nearby tissue (locally advanced) that cannot be removed by surgery (unresectable) or tumors that have spread to other parts of the body (metastatic). Claudin 4 protein, or CLDN4, is a protein found on tumors in different parts of the body. ASP1002 is thought to work by attaching to the CLDN4 protein in the tumor. This switches on the body's immune system to attack the tumor. Before ASP1002 can be used, researchers need to collect information about the safety of ASP1002 and how people with tumors tolerate it. In this study, ASP1002 will be given to humans for the first time. It will either be given by itself or together with other cancer treatments. These include standard chemotherapies (mFOLFOX6, FOLFIRI, TAS-102, pemetrexed, carboplatin, and docetaxel) and immunotherapies (bevacizumab, pembrolizumab, and ramucirumab). Immunotherapy is a treatment that works with the body's immune system to treat tumors. This is an early development study. These studies are mostly about safety, but also to find the most suitable dose. Other aims are to learn if ASP1002 shows signs of slowing down tumor growth, to learn how the body processes ASP1002, and to check if there are changes in the CLDN4 protein or the immune system after treatment. The main aims of the study are to check the safety of ASP1002 by itself and given with standard chemotherapies and immunotherapies in people with solid tumors and how well they tolerate the study treatments, and to find a suitable dose of ASP1002 by itself and in combination with standard chemotherapies and immunotherapies. People in this study will be adults with tumors that have spread to nearby tissue (locally advanced) that cannot be removed by surgery (unresectable) or tumors that have spread to other parts of the body (metastatic). They will have been previously treated with available standard therapies, or they will have refused to receive those treatments. The key reasons people cannot take part are if they have symptoms of cancer in the brain or nervous system, have recently had other cancers that required treatment, or have diseases that affect the immune system or the heart. This study will be in 2 parts. In Part 1, different small groups of people will receive lower to higher doses of ASP1002 by itself and given with chemotherapies and immunotherapies. Any medical problems will be recorded at each dose. This is done to find suitable doses of ASP1002 to use in Part 2 of the study. In Part 2, other different small groups of people will receive doses of ASP1002, the chemotherapies and immunotherapies that worked the best in Part 1. In both parts of the study, ASP1002 will be given by itself and with standard chemotherapies and immunotherapies to people slowly through a tube into a vein. This is called an infusion. This will happen every 2 to 4 weeks, in treatment cycles. Treatment cycles may be 21 or 28 days long. People will continue to receive study treatment for up to 2 years or until their cancer gets worse, they can't tolerate the study treatment, they start other cancer treatments, or the doctor decides the person should stop receiving study treatment, or sadly, they pass away. They can also choose to stop taking the study treatment at any time without giving a reason. During the study, people will visit the clinic several times for a health check. This includes standard safety checks and reporting any medical problems. Every 2 months, the study doctors will check if each person's cancer has stayed the same, shrunk or disappeared over time. This will be done by scans (CT or MRI scans). Tumor samples will be taken during the study, and people will have the option of giving a tumor sample after study treatment has finished. People will have follow-up health checks for up to 1 year after their last dose of study treatment or until they start a different study treatment on a new study, whichever happens first.
The purpose of this study is to learn how a new medicine called PF-08052667 works when used by itself or together with another medicine called Bacillus Calmette Guerin (BCG), and/or a medicine called sasanlimab. This study is for adults who have a type of bladder cancer that hasn't spread into the muscle layer of the bladder but is more likely to come back or grow. It includes people whose cancer has come back or hasn't gone away after receiving standard treatments like BCG. It may also include people who, based on their doctor's opinion, cannot receive standard treatments or those treatments are not available to them. The study has three parts: * Part 1 (monotherapy dose escalation) will test PF-08052667 as a single-agent at increasing dose levels in participants with certain bladder cancer whose disease has worsened on or after standard treatments. * Part 2 (combination dose escalation) will test PF-08052667 in combination with BCG and/or sasanlimab (fixed dose) in participants with certain bladder cancer whose disease has worsened on or after standard treatments. * Part 3 (dose optimization and expansion) will further test PF-08052667 as a single agent or in combination with BCG and/or sasanlimab, at the dose(s) based on findings from Part 1 and Part 2 in participants with certain bladder cancer including those who has never received standard treatments. All participants will receive the study drug PF-08052667. Only participants in Part 2 and Part 3 of the study will also receive BCG and/or sasanlimab. PF-08052667 will be given as an intravesical infusion, which means it will be injected directly into the bladder. Sasanlimab will be given as a subcutaneous injection, which means it will be injected under the skin. For all parts, treatment with study medicines will continue until either a participant has decided to stop taking part in the study or is asked to leave the study for various reasons or up to about 2 years, whichever occurs first. Duration of trial participation for each participant will vary as long-term follow-up will continue after treatment discontinuation until loss to-follow-up or death, or until the study is stopped by the sponsor.
This study is being done to see if a drug called disitamab vedotin, alone or with pembrolizumab, works to treat HER2 expressing urothelial cancer. It will also test how safe the drug is for participants. Participants will have cancer that has spread in the body near where it started (locally advanced) and cannot be removed (unresectable) or has spread through the body (metastatic). It will also study what side effects happen when participants get the drug. A side effect is anything a drug does to your body besides treating the disease.
The purpose of the study is to explore the safety and effects of the study drug (PF-08046876) in people diagnosed with advanced cancer of the bladder, lung, head and neck, esophagus, or pancreas. PF-08046876 is an investigational anticancer therapy called an 'antibody drug conjugate' or 'ADC'. ADCs are anticancer drugs designed to stick to cancer cells and kill them. The study drug will be given to participants through a needle in a vein (intravenous infusion). This study includes multiple parts. In the first part of the study, there will be different groups of people receiving different doses of the study drug. The study may also test different schedules.
The purpose of this study is to learn about the safety and effects of the study medicine (Disitamab Vedotin) in people with non-muscle invasive bladder cancer. This study is seeking participants whose bladder cancer is still in early stages, has not spread outside of the bladder, has been removed with surgery, and is high risk. Each participant was assigned to one of two study treatment groups: One group is given Disitamab Vedotin and BCG.The second group is given BCG only and will not receive Disitamab Vedotin.
This is a single-center, prospective, open-label, non-randomized clinical study initiated and conducted by the Department of Urology, Shanghai Changhai Hospital. The Principal Investigators are Professor Zhang Zhensheng and Professor Chen Guanghua. The projected study period is from December 2025 to December 2028. This study aims to evaluate the efficacy and safety of toripalimab (a PD-1 inhibitor) combined with Bacillus Calmette-Guérin (BCG) intravesical instillation as adjuvant therapy following transurethral resection of bladder tumor (TURBT) in patients with high-risk/very high-risk non-muscle-invasive bladder cancer (NMIBC). Bladder cancer is a common malignancy of the urinary system, with NMIBC accounting for approximately 75% of initial diagnoses. For high-risk patients who are unresponsive to or experience recurrence after BCG therapy, radical cystectomy remains the standard treatment. However, this procedure is associated with high rates of complications, mortality risk, and significantly negative impacts on quality of life. Therefore, exploring novel combination strategies that effectively reduce recurrence while preserving the bladder is of great clinical importance. This study is based on the successful application of immune checkpoint inhibitors in advanced urothelial carcinoma and recent Phase III trials (e.g., the CREST study) demonstrating the efficacy and safety of combining PD-1/PD-L1 inhibitors with BCG in treatment-naïve high-risk NMIBC. It seeks to investigate the potential of the domestic PD-1 inhibitor toripalimab in combination with standard BCG instillation. The study plans to enroll 31 patients with histologically confirmed high-risk/very high-risk NMIBC who have not previously received immune checkpoint inhibitors or BCG therapy. All enrolled patients will first receive a single instillation of gemcitabine (2000mg), followed by the combination therapy phase: toripalimab (240mg, intravenous infusion, every 3 weeks for 8 cycles) combined with BCG intravesical instillation (induction phase for 6 weeks, maintenance phases at months 3 and 6). The primary efficacy endpoint is the pathological complete response (CR) rate at approximately 6 months after treatment initiation. Secondary efficacy endpoints include duration of CR, 6-month and 2-year event-free survival (EFS) rates, 1-year and 2-year cancer-specific survival (CSS) rates, time to radical cystectomy, and overall survival (OS). Safety endpoints encompass the incidence and severity of adverse events (AEs) and serious adverse events (SAEs). Statistical analyses will be based on the Full Analysis Set (FAS) and Per-Protocol Set (PPS). The sample size calculation for the primary endpoint (6-month CR rate) is based on historical data assumptions, employing a one-sided test. Safety analyses will include all patients who received at least one dose of study treatment. This study will strictly adhere to the principles of the Declaration of Helsinki, Chinese Good Clinical Practice (GCP) guidelines, and relevant regulations. The study protocol has been submitted for review and approval by the Institutional Review Board (IRB)/Ethics Committee. Written informed consent will be obtained from all patients prior to participation. This study aims to provide a new and potentially more effective bladder-preserving treatment option for patients with high-risk/very high-risk NMIBC and to evaluate the safety profile of this combination regimen.
This is a multicenter, prospective, open-label, Phase II, four-arm parallel study evaluating the efficacy and safety of different sensitization strategies combined with disitamab vedotin and toripalimab in patients with HER2-positive muscle-invasive urothelial carcinoma of the bladder (MIBC). Eligible patients with cT2-4aN0M0 HER2-positive urothelial carcinoma of the bladder will receive neoadjuvant disitamab vedotin plus toripalimab in combination with one of four sensitizing agents: sitagliptin, tazemetostat, tafolecimab, or ursodeoxycholic acid. After six cycles of neoadjuvant treatment, patients will undergo comprehensive response assessment, including imaging, cystoscopy, urine cytology, and complete transurethral resection of bladder tumor (cTURBT). Patients who achieve a clinical complete response (cCR) may enter a bladder-preservation treatment pathway, including additional disitamab vedotin plus toripalimab and subsequent toripalimab maintenance therapy. Patients who do not achieve cCR will be considered for salvage radical cystectomy. The primary objective is to evaluate the cCR rate of each treatment strategy. Secondary objectives include bladder-intact disease-free survival, overall survival, bladder preservation rate, safety, quality of life, treatment costs, and exploratory biomarker analyses.
This is a multicenter, randomized, open-label phase III study to determine the efficacy and safety of intravesical SHR-1501 combined with Bacillus Calmette Guerin (BCG) versus investigator-selected chemotherapy in patients with BCG-unresponsive papillary-only non-muscle-invasive bladder cancer (NMIBC).
The purpose of this study is to examine the safety and tolerability of treatment with concurrent Sacituzumab Govitecan (SG) and adaptive radiation therapy. The main objective is to establish the safety, tolerability, and feasibility of bladder preservation therapy treatment with concurrent SG and adaptive image-guided radiation therapy for participants with localized MIBC. Participants will receive the study drug, SG, through an IV once weekly on days 1 and 8 of each 21-day treatment cycle. The first cycle of SG will begin 21 days prior to the scheduled start of radiation therapy. The second and third cycles of SG will be given while the participant is receiving radiation therapy. Participants will be asked to undergo computed tomography (CT) and magnetic resonance imaging (MRI) pre-and post-treatment. Participation in the research will last up to 5 years, depending on treatment outcomes, with a treatment period of 8 weeks and a study follow-up period of up to 2-5 years thereafter, and a survival follow-up, with only phone call communication from years 3-5.
The objective of this study is to evaluate the safety, tolerability, and efficacy of BL-M07D1 in patients with HER2 expressing advanced tumors.
Phase I study to examine safety of the addition of concurrent tarlatamab with standard palliative and consolidative RT regimens , with a main cohort of N=20-24 patients with extracranial anatomic radiation sites. I) After lead in of 10 patients demonstrating safety of treatment, allow for expansion to cranial sites of disease (N=6-10) with continued enrollment in main cohort II) If toxicity criteria is not met in concurrent RT tarlatamab cohort, we will continue with sequential RT, either A) delivered within 7 days prior to cycle 1 day 1, or B) delivered during cycle 1 -2 but with pre- and post-RT washout of 7 days with no drug during RT, to examine safety in a temporally spaced setting. III) If sequential tarlatamab and radiation is not deemed safe, we would allow for continued enrollment to assess efficacy of drug sans radiation treatment, enriching for tumors not of small cell lung cancer histology and allowing for patients without sites amenable to RT. A nested phase II study will attempt to assess for ORR and safety of study intervention amongst tumors not of small cell lung cancer histology.
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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