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.

3445
active trials
217
with Poland location
Last update
Aug 27, 2026, 03:01 AM
Filtered by category: LeukemiaClear

Found 375 of 3445 trialspage 5 of 15

RecruitingPhase I/IILeukemia

This is a phase 1/2 trial of pacritinib in combination with azacitidine in patients with Chronic Myelomonocytic Leukemia (CMML). Patients will be newly diagnosed or previously treated but could not have received a prior JAK inhibitor. Patients who have previously been treated with a hypomethylating agent (HMA) must have received ≤ 1 cycle. Pacritinib will be initially tested at a dose of 200mg twice daily (dose level 0) in combination with azacitidine 75mg/m2, which can be administered subcutaneously or intravenously, for 7 days in a 28-day cycle. If there are 2 DLTs in the first 6 patients, there will be a dose escalation to pacritinib 100mg twice daily (dose level -1) and an additional 6 patients will be enrolled. Based on the phase 1, 3+3 dose de-escalation design, 6-12 patients will be enrolled in the phase 1 portion. After the completion of phase 1 and identification of the recommended phase 2 dose (RP2D), the trial will then proceed to phase 2 which will employ a Simon two stage design. This portion will include the 6 patients enrolled during the phase 1 portion at the MTD. An interim analysis for futility will occur. If 3 or fewer patients have had a clinical benefit (CB) or better, as defined by 2015 MDS/MPN IWG criteria, the PI and DSMC will meet to discuss the totality of the evidence and determine if the trial shall proceed. In the second stage, an additional 12 patients will be enrolled.

RecruitingPhase II/IIILeukemia

This phase II trial studies the effect of venetoclax together with busulfan, cladribine, and fludarabine in treating patients with high-risk acute myeloid leukemia or myelodysplastic syndrome who are undergoing stem cell transplant. Chemotherapy drugs, such as venetoclax, busulfan, cladribine, and fludarabine, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Adding venetoclax to the current standard of care stem cell transplant regimen of busulfan, fludarabine, and cladribine may help to control high-risk acute myeloid leukemia or myelodysplastic syndrome.

RecruitingPhase ILymphomaLeukemia

Patients eligible for this study have a type of blood cancer called T-cell leukemia or lymphoma (lymph gland cancer). The body has different ways of fighting infection and disease. No one way seems perfect for fighting cancers. This research combines two different ways of fighting disease, antibodies and T cells. Antibodies are proteins that protect the body from bacterial and other diseases. T cells, or T lymphocytes, are special infection-fighting blood cells that can kill other cells including tumor cells. Both antibodies and T cells have shown promise treating patients with cancers, but have not been strong enough to cure most patients. T lymphocytes can kill tumor cells but there normally are not enough of them. Some researchers have taken T cells from a person's blood, grown more in the lab then given them back to the person. In some patients who've had recent bone marrow or stem cell transplant, the number of T cells in their blood may not be enough to grow in the lab. In this case, T cells may be collected from their previous transplant donor, who has a similar tissue type. The antibody used in this study, called anti-CD5, first came from mice that have developed immunity to human leukemia. This antibody sticks to T-cell leukemia or lymphoma cells because of a substance on the outside of these cells called CD5. CD5 antibodies have been used to treat people with T-cell leukemia and lymphoma. For this study, anti-CD5 has been changed so that instead of floating free in the blood it is now joined to the T cells. When an antibody is joined to a T cell in this way it is called a chimeric receptor. In the lab, investigators have also found that T cells work better if stimulating proteins, such as one called CD28, are also added. Adding the CD28 makes the cells grow better and last longer in the body, giving them a better chance of killing the leukemia or lymphoma cells. In this study investigators will attach the CD5 chimeric receptor with CD28 added to it to the patient's T cells or the previous bone marrow transplant donor's T cells. The investigators will then test how long the cells last. The decision to use the bone marrow transplant donor's T cells instead of the patient's will be based on 1) whether there is an available and willing donor and 2) the likelihood of the patient's T cells being able to grow in the lab. These CD5 chimeric receptor T cells with CD28 are investigational products not approved by the FDA. UPDATE: Please note that the Autologous Arm of this study is now closed.

RecruitingNot applicableLeukemia

This clinical trial is a platform-type clinical study intended to investigate the efficacy and safety of MRD-positive acute myeloid leukemia patients after comprehensive treatment, which includes but is not limited to the following drugs and protocols: Chemotherapy, small molecule targeted drugs, demethylation drugs, liposome drugs and the combination of these drugs to form a combination of treatment regimen, the specific treatment regimen will be updated according to the results of this trial and the latest research progress at home and abroad.

RecruitingPhase ILeukemia

This is a prospective, single-arm clinical study evaluating the efficacy and safety of metformin in inhibiting DNMT3A R882-driven clonal hematopoiesis (CH) in patients with acute leukemia (AL) who are in remission and under follow-up. Patients with DNMT3A R882 mutation (VAF ≥5%) will receive oral metformin for 6 months, with dosage gradually increased to 2000 mg/day. The primary endpoint is the proportion of patients with effective decline in DNMT3A R882 mutation VAF at 6 months. Secondary endpoints include VAF decline at 3 months, relapse-free survival (RFS) at 6 and 12 months, overall survival (OS), cumulative incidence of relapse (CIR), cumulative remission-phase mortality, and adverse event rates. Planned enrollment: 32 participants.

RecruitingPhase IILeukemia

This phase II trial compares standard consolidation with daratumumab, carfilzomib, lenalidomide, and dexamethasone to consolidation with teclistamab following standard induction therapy and autologous hematopoietic stem cell transplant for improving overall survival of patients with plasma cell leukemia. Consolidation therapy is treatment given after initial therapy to kill any cancer cells that may remain in the body. Daratumumab is in a class of medications called monoclonal antibodies. It binds to a protein called CD38, which is found on some types of immune cells and cancer cells, including myeloma cells. Daratumumab may block CD38 and help the immune system kill cancer cells. Carfilzomib inhibits protein complexes called proteasomes, which inhibits cancer cell growth and leads to cancer cell death. Lenalidomide may help kill cancer cells and prevents the growth of blood vessels that cancer cells need to survive. Dexamethasone is in a class of medications called corticosteroids. It is used to reduce inflammation and lower the body's immune response to help lessen the side effects of chemotherapy drugs. Teclistamab is a monoclonal antibody that may interfere with the ability of cancer cells to grow and spread. A monoclonal antibody is a type of protein that can bind to certain targets in the body, such as molecules that cause the body to make an immune response (antigens). Giving teclistamab as consolidation therapy after induction and autologous hematopoietic stem cell transplant may improve survival outcomes in patients with plasma cell leukemia, compared to standard consolidation with daratumumab, carfilzomib, lenalidomide, and dexamethasone.

RecruitingUnknown phaseLeukemiaOther cancers

This study entails enrolling participants that have been diagnosed with cancer to Olivia, a commercially available AI-enabled personal health platform developed by Tempus. Olivia will serve as the primary interface for eConsent and enrollment into the registry. The platform will also help create a retrospective and prospective registry by working with over 1,000 healthcare systems to combine electronic health records (EHR) and Patient Reported Outcomes (PROs) in a single spot. There may be sub-studies as an add-on to this parent protocol. The sub-studies will address specific goals of the targeted research activities and will usually include additional information specific to each research study.

RecruitingPhase ILymphomaLeukemia

The study is designed to examine the feasibility and safety of collecting autologous hematopoietic stem cells (HSCs) to be combined with CAR T-cell therapy for patients with relapsed/refractory (r/r) hematological disease. The study will evaluate feasibility of collecting the target dose of HSCs from at least 50% of enrolled patients. The study will assess safety based on incidence and severity of cytokine release syndrome (CRS) and immune effector cell-associated neurotoxicity syndrome (ICANS) in the first 60 days post CAR T dosing, and also through the collection of adverse events (AEs) and serious adverse events (SAEs) as well as the durability of response after treatment with HSCs with CAR T. The study follows an open-label, single-center and single non-randomized cohort design. 20 subjects with r/r hematological malignancies will be enrolled and treated to evaluate the feasibility and preliminary safety of collecting autologous HSCs and combining them with CAR T-cell therapy.

RecruitingNot applicableLeukemia

AML is highly heterogeneous in pathogenesis, and CEBPA double-mutated (CEBPAdm) AML is a common type of leukemia in China. Currently, no targeted therapies for CEBPAdm, and chemotherapy and transplantation are still the treatment options for CEBPA double-mutated AML. At present, the "3+7" treatment induction regimen of cytarabine combined with anthracyclines is still the first-line recommended regimen. In our retrospective study, the intermediate dose HAD regimen produced a 3-year RFS of 84.7% and a 3-year OS of 92.8% in CEBPAdm AML. Therefore, this project intends to confirm the efficacy of intermediate-dose HAD in the treatment of CEBPA double-mutated AML is superior to the conventional treatment regimen through the multi-center RCT study.

RecruitingNot applicableLymphomaLeukemiaOther cancers

Return to work (RTW) of patients after cancer treatment has been a topic of growing interest for the past two decades. Advances in cancer care have led to better patient survival, with some cancers considered as chronic or even cured diseases. The return of patients to their "pre-cancer life" can thus become an objective. Indeed, RTW after cancer is associated with improved quality of life for patients in several studies (improved financial status, improved social contacts, return of functional abilities and improved self-esteem). However, many difficulties can interfere with RTW. Many factors have been identified: disease, treatment, patient and occupational factors. The feeling of "return-to-work self-efficacy" is one of the main psychological determinants and its interest has been recently demonstrated in oncology. It corresponds to a cognitive mechanism based on expectations and/or beliefs of an individual about being able to carry out the actions required to achieve a goal, in this case RTW. The majority of studies on RTW concerns solid cancer and are retrospective. Very few studies have focused on hematological malignancies, whose prognosis was, until recently, worse. Moreover, very few interventional studies exist. There is therefore a significant need for prospective studies with appropriate methodological tools to reliably assess the benefit of interventional measures on RTW. The investigators propose to conduct a prospective, comparative, randomized, multicenter study evaluating the impact of an early RTW-consultation in patients who have been treated for a hematological malignancy. The investigators hypothesize that this consultation will improve patients' RTW rates and RTW quality.

RecruitingPhase I/IILeukemia

To learn about the safety of giving the drug brexucabtagene autoleucel to participants with relapsed/refractory B-cell ALL after treatment with inotuzumab ozogamicin, blinatumomab, and either hyper-CVAD or mini-hyper-CVD. Also, to learn if giving brexucabtagene autoleucel to patients with relapsed/refractory or high-risk, newly diagnosed B-cell ALL after treatment with inotuzumab ozogamicin, blinatumomab, and either hyper-CVAD or mini-hyper-CVD can help to control the disease.

RecruitingPhase I/IILeukemia

This is a Phase I/II interventional, open-label treatment study designed to evaluate the safety and efficacy of concomitant therapy with anti-CD19 CAR T-cells and Lenalidomide in adult patients with relapsed/refractory chronic lymphocytic leukemia (CLL) who have been pretreated with Ibrutinib for 3 months prior to leukapheresis.

RecruitingPhase IILymphomaLeukemia

This phase II trial studies the side effects and how well combination chemotherapy works in treating patients with acute lymphoblastic leukemia, lymphoblastic lymphoma, Burkitt lymphoma/leukemia, or double-hit lymphoma/leukemia that has come back or does not respond to treatment. Drugs used in chemotherapy, such as clofarabine, etoposide, cyclophosphamide, vincristine sulfate liposome, dexamethasone and bortezomib, work in different ways to stop the growth of tumor cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading.

RecruitingNot applicableLeukemia

This is a prospective, open-label, non-randomized cohort study evaluating the efficacy and safety of a pediatric-inspired chemotherapy regimen (IH-2014 based) combined with venetoclax and immunotherapy in adult patients with newly diagnosed Ph-negative Acute Lymphoblastic Leukemia (ALL). Patients aged ≥14years,≤60 years will be enrolled. Treatment includes induction, consolidation, early intensification, delayed intensification, and maintenance phases. The use and number of cycles of immunotherapy will be based on patient preference. The primary endpoint is Event-Free Survival (EFS) and MRD-negative CR rates after induction therapy(by flow cytometry and NGS). Secondary endpoints include Complete Remission (CR) rate, MRD-negative CR rates at 12 weeks (by flow cytometry and NGS), Overall Survival (OS), Relapse-Free Survival (RFS), and cumulative relapse rate.

RecruitingPhase IIILeukemia

Leukemia is one of the common malignant tumors that threaten human health. Although the efficacy of AML treatment has improved significantly in recent years, it remains one of the major diseases threatening human health. Current research on AML treatment mainly has two directions. One is the addition of new targeted therapy drugs, and the other research direction is to enhance the intensity of AML chemotherapy, including the use of large doses of anthracycline drugs or the use of high-dose cytarabine treatment. Since the 1990s, induction remission has been achieved by using anthracyclines in combination with high-dose cytarabine. The ECOG (Eastern Cooperative Oncology Group) contends that high-dose induction chemotherapy fails to enhance the bone marrow remission rate but elevates the chemotherapy-related mortality rate. Bradstock and the Australian Group also noted that although it does not increase the bone marrow remission rate, it can result in longer survival time and disease-free survival time. The clinical study from EORTC-GIMEMA AML-12 discovered that AML patients under the age of 45 could benefit from induction therapy incorporating high-dose cytarabine. In our previous randomized controlled clinical trials, it was found that the HAD and DA regimens containing intermediate-dose cytarabine could enhance the complete remission rate and improve the overall survival of adult AML. However, the degree of benefit varies among different AML subgroups. The abnormalities of RUNX1-RUNX1T1 and CBFβ-MYH11 respectively involve a subunit of CBF (core binding factor), thus the two are collectively called CBF leukemia. Previous retrospective studies show that this type of leukemia benefits from intensified treatment regimens such as FLAG. However, at present, there is a lack of prospective randomized controlled clinical studies to confirm this. Therefore, in this study, we intend to further verify through a prospective randomized controlled clinical trial whether the induction treatment regimen containing intermediate-dose cytarabine can improve the long-term efficacy of adult RUNX1-RUNX1T1 acute myeloid leukemia.

RecruitingNot applicableLeukemia

This is a single-arm, open-label clinical trial evaluating the safety and preliminary efficacy of a novel induction regimen combining Venetoclax, Azacitidine, and Liposomal Mitoxantrone (VAM) in patients with newly diagnosed Acute Myeloid Leukemia (AML) who are eligible for intensive chemotherapy. The study plans to enroll 27 participants. Patients will receive VAM induction therapy, followed by three cycles of intermediate-dose cytarabine consolidation. Allogeneic hematopoietic stem cell transplantation is recommended for high-risk or MRD-positive patients in remission.

RecruitingUnknown phaseMale onlyLeukemia

Chronic myeloid leukemia (CML) is a myeloproliferative neoplasm characterized by the presence of the Philadelphia chromosome, resulting in the constitutive activation of the BCR-ABL1 tyrosine kinase. The advent of tyrosine kinase inhibitors (TKIs) has revolutionized the management of CML, trasforming it from a fatal disease to a chronic condition with excellent long-term outcomes for the majority of patients. The introduction of tyrosine kinase inhibitor (TKI) based treatment for CML has revolutionized the management of this previously fatal disease, achieving sustained disease-control in more than 90% of patients. However, as patients with CML are often required to undergo lifelong TKI therapy to maintain disease control, concerns regarding the long-term safety and tolerability of these agents have emerged. The efficacy of second and third-generation TKIs exceeds the efficacy of imatinib, owing to their potent impact on wild-type BCR-ABL1 and various BCR-ABL1 mutants, along with additional drug targets. Furthermore, TKIs exhibit activity on non-kinase targets (es. oxidoreductase NQO2 for nilotinib and imatinib). The prolonged treatment duration and expanded TKIs repertoire have led the emergence of various unexpected non-hematologic adverse events (AE), notably vascular adverse events (VAEs). Recent evidence indicates a relatively high incidence of severe arterial changes in TKI-treated patients, with VAEs frequency correlating with TKI dosage and treatment duration. However, data elucidating the clinical features of vascular events are lacking. Hormonal alterations have been reported in patients treated with imatinib. The tyrosine-kinase receptors cKIT and PDGF receptors, along with their respective ligands, are expressed in the testis, where they play a role in stimulating testosterone secretion by Leydig cells. Prolonged imatinib use has been associated with reduced testosterone production due to PDGFR and cKit blockade in the testis, potentially leading to gynaecomastia in men. Cardiovascular disease (CVD) remains the leading cause of mortality in the United States, accounting for nearly 40% of all deaths. CVD and ED share a variety of common risk factors, including hypertension, diabetes, dyslipidemia, smoking, obesity, physical inactivity, and metabolic syndrome. Screening and diagnosing ED hold significant potential for secondary prevention of CVD. Despite the estabilished association between ED and CVD, the precise mechanisms driving ED's predictive value for CVD are yet to be fully identified. Early deection and treatment of CVD during the critical time frame in which risk factors can be modified will effectively reduce the occurrence of fatal CV events in male patients with ED. This is a multicentre national, retrospective, prospective, non-interventional study that focuses on male CML patients starting first-line treatment with TKIs between 1 January 2015 and 31 January 2022. All enrolled patients will be involved in both retrospective and prospective evaluations. The retrospective component of the study allows the collection of data on the onset of ED, documented in medical records, that occurred before enrolment. It also includes information from physical examinations and laboratory tests, such as complete blood count, serum biochemistry (including renal and liver function tests, lipid profile and glycosylated haemoglobin), molecular biology for BCR-ABL transcript levels and electrocardiography (ECG), collected retrospectively every six months from enrolment until the documented onset of ED. The prospective evaluation assesses the occurrence of ED in the six months prior to enrolment and during the two-year follow-up period. The primary objective of the study is to assess the incidence of erectile dysfunction (ED) among male patients with chronic myeloid leukaemia (CML) undergoing treatment with tyrosine kinase inhibitors (TKIs), imatinib, dasatinib, nilotinib, bosutinib or ponatinib, focusing in particular on those individuals who report the appearance of associated symptoms after treatment.

RecruitingNot applicableLeukemia

To study the optimal therapeutic strategies for salvage treatment of refractory/relapsed AML, and to clarify the effectiveness and safety of various salvage treatment options. A prospective, multicenter, platform-type study was conducted to explore the overall response rate, tolerability, and survival of patients with R/R AML with different treatment regimens.

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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