Wilms' Tumor

16

Review clinical trials related to Wilms' Tumor. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Trastuzumab Deruxtecan (DS-8201a) for the Treatment of Newly Diagnosed, Recurrent or Refractory Osteosarcoma, Wilms Tumor, and Desmoplastic Small Round Cell Tumor

This phase I/II trial studies the effects of trastuzumab deruxtecan (DS-8201a) in treating patients with osteosarcoma, Wilms tumor (WT) or desmoplastic small round cell tumor (DSRCT) that is newly diagnosed or has come back after a period of improvement (recurrent) or that has not responded to previous treatment (refractory). Trastuzumab deruxtecan is in a class of medications called antibody-drug conjugates. It is composed of a monoclonal antibody, called trastuzumab, linked to a chemotherapy drug, called deruxtecan. Trastuzumab attaches to HER2 positive tumor cells in a targeted way and delivers deruxtecan to kill them.

Participants needed: 55
Trial details
Phase: Phase 1, Phase 2Age: 12-39Biological sex: AllType: InterventionalSponsor: National Cancer Institute (NCI)Updated: Jul 13, 2026Locations: 28
Eligibility criteria

Phase 1 (Part A): Patients must be at least 2 years and less than 12 years of ag... [+46]

Pregnant, planning to become pregnant, or breast-feeding women will not be enter... [+36]

Status: Recruiting

Alpha/Beta T and B Cell Depletion With Zoledronic Acid for Solid Tumors

Hematopoietic stem cell transplantation can cure patients with blood cancer and other underlying diseases. αβ-T cell and B cell depletion has been introduced to decrease GVHD and PTLD and has demonstrated effectiveness for hematologic malignancies and non-malignant diseases additionally increasing the donor pool as to allow for haploidentical transplant to safely occur. While solid tumors can be highly chemotherapy sensitive, many remain resistant and require multimodalities of treatment. Immunotherapy has been developed to harness the immune system in fighting solid tumors, though not all have targeted effects. Some solid tumors are treated with autologous transplants; however, they do not always demonstrate an improved event free survival or overall survival. There has been evidence of the use of allogeneic stem cell transplants to provide a graft versus tumor effect, though studies remain limited. By utilizing αβ-T cell and B cell depletion for stem cell transplants and combining with zoledronic acid, the immune system may potentially be harnessed and enhanced to provide an improved graft versus tumor effect in relapsed/refractory solid tumors and promote an improved event-free survival and overall survival. This study will investigate the safety of treatment with a stem cell graft depleted of αβ-T cell and CD19+ B cells in combination with zoledronic acid in pediatric and young adult patients with select solid tumors, as well as whether this treatment improves survival rates in these patients.

Participants needed: 27
Trial details
Phase: Phase 1, Phase 2Age: 6-25Biological sex: AllType: InterventionalSponsor: University of FloridaUpdated: Jun 30, 2026Locations: 1
Eligibility criteria

Patients 6 months to ≤ 25 years old [+16]

Patients with documented uncontrolled infection at the time of study entry are n... [+10]

Status: Recruiting

Selective Antigen Specific T Cells and CAR T Cells in Subjects With Relapsed/Refractory Embryonal Tumors (SABRE)

This is a phase I dose-escalation study to determine the safety and feasibility of autologous CAR-TA T cells (B7-H3 CAR+ T cells administered with DNR-PRAME Tumor Antigen-specific T cells) following lymphodepleting chemotherapy in participants with relapsed/refractory rhabdomyosarcoma, Ewing sarcoma, neuroblastoma and Wilms tumor. Patients will be enrolled to one of three planned dose levels with B7-H3 CAR T cell dose determined based on the percentage of B7-H3 transduced cells (B7-H3+ population of cells), and dTBRII-transduced PRAME TA-specific T cell dose based on the total cell population. Both doses will be based on the recipient's body weight. The safety of the CAR-TA T cell product will be evaluated and the maximum tolerated dose (MTD) will be determined. The safety endpoint will be assessed by monitoring for dose limiting toxicities for 28 days following CAR-TA T cell administration.

Participants needed: 18
Trial details
Phase: Phase 1Age: 1-23Biological sex: AllType: InterventionalSponsor: Children's National Research InstituteUpdated: May 22, 2026Locations: 2
Eligibility criteria

Diagnosis of relapsed/refractory rhabdomyosarcoma, Ewing sarcoma, neuroblastoma,... [+47]

Patients with known CNS disease. [+7]

Status: Recruiting

B7-H3-Specific Chimeric Antigen Receptor Autologous T-Cell Therapy for Pediatric Patients With Solid Tumors (3CAR)

3CAR is being done to investigate an immunotherapy for patients with solid tumors. It is a Phase I clinical trial evaluating the use of autologous T cells genetically engineered to express B7-H3-CARs for patients ≤ 21 years old, with relapsed/refractory B7-H3+ solid tumors. This study will evaluate the safety and maximum tolerated dose of B7-H3-CAR T cells.The purpose of this study is to find the maximum (highest) dose of B7-H3-CAR T cells that are safe to give to patients with B7-H3-positive solid tumors. Primary objective To determine the safety of one intravenous infusion of autologous, B7-H3-CAR T cells in patients (≤ 21 years) with recurrent/refractory B7-H3+ solid tumors after lymphodepleting chemotherapy Secondary objective To evaluate the antitumor activity of B7-H3-CAR T cells Exploratory objectives * To evaluate the tumor environment after treatment with B7-H3-CAR T cells * To assess the immunophenotype, clonal structure and endogenous repertoire of B7-H3-CAR T cells and unmodified T cells * To characterize the cytokine profile in the peripheral blood after treatment with B7-H3-CAR T cells

Participants needed: 48
Trial details
Phase: Phase 1Age: Up to 21Biological sex: AllType: InterventionalSponsor: St. Jude Children's Research HospitalUpdated: May 19, 2026Locations: 1
Eligibility criteria

Age ≤21 years old [+6]

Known primary immunodeficiency [+31]

Status: Recruiting

Phase I Study of Becotatug Vedotin for Safety and Efficacy in EGFR-Positive Pediatric Relapsed/Refractory or Metastatic Solid Tumors

There is a significant unmet medical need for effective therapies for pediatric relapsed/refractory solid tumors. EGFR is highly and stably expressed in multiple pediatric solid tumor subtypes, and adult Phase I data of Becotatug Vedotin demonstrated a manageable safety profile and promising antitumor activity in EGFR-positive advanced solid tumors.This is a multicenter, non-randomized, single-arm, open-label Phase I clinical trial sponsored by Sun Yat-sen University Cancer Center (SYSUCC). The trial evaluates the safety, tolerability, pharmacokinetics (PK), immunogenicity, and preliminary efficacy of Becotatug Vedotin-an EGFR-targeted antibody-drug conjugate (ADC)-in pediatric patients with EGFR-positive relapsed/refractory or metastatic solid tumors.

Participants needed: 51
Trial details
Phase: Phase 1Age: 2-18Biological sex: AllType: InterventionalSponsor: Sun Yat-sen UniversityUpdated: May 13, 2026Locations: 1
Eligibility criteria

Not listed

Status: Recruiting

A Study of Selinexor in People With Wilms Tumors and Other Solid Tumors

The purpose of this study is to find out whether selinexor is an effective treatment for people who have a relapsed/refractory Wilms tumor, rhabdoid tumor, MPNST, BCOR-driven sarcoma, or another solid tumor that makes a higher than normal amount of XPO1 or has genetic changes that increase the activity of XP01.

Participants needed: 45
Trial details
Phase: Phase 2Age: 12+Biological sex: AllType: InterventionalSponsor: Memorial Sloan Kettering Cancer CenterUpdated: May 6, 2026Locations: 16
Eligibility criteria

Age ≥ 6 at the time of informed consent [+31]

Prior Therapy: Has received selinexor or another XPO1 inhibitor previously. [+5]

Status: Recruiting

Tegavivint for the Treatment of Recurrent or Refractory Solid Tumors, Including Lymphomas and Desmoid Tumors

This phase I/II trial evaluates the highest safe dose, side effects, and possible benefits of tegavivint in treating patients with solid tumors that has come back (recurrent) or does not respond to treatment (refractory). Tegavivint interferes with the binding of beta-catenin to TBL1, which may help stop the growth of tumor cells by blocking the signals passed from one molecule to another inside a cell that tell a cell to grow.

Participants needed: 147
Trial details
Phase: Phase 1, Phase 2Age: 12-30Biological sex: AllType: InterventionalSponsor: Children's Oncology GroupUpdated: May 5, 2026Locations: 21
Eligibility criteria

PART A: Patients must be >= 12 months and =< 21 years of age at the time of stud... [+39]

Pregnant or breast-feeding women will not be entered on this study because there... [+17]

Status: Recruiting

Treatment of Newly Diagnosed Patient's With Wilm's Tumor Requiring Abdominal Radiation Delivered With Proton Beam Irradiation

Participants are being asked to take part in this clinical trial, a type of research study, because the participants have a Wilms Tumor cancer. Primary Objectives To determine whether delivery of proton beam radiation to a conformal reduced target volume in the flank allows normal flank growth compared to the contralateral untreated side and non-irradiated patients. Secondary Objectives To deliver proton beam radiation to a conformal reduced target volume (partial kidney proton beam radiation therapy) in the affected kidney(s) for patients with Stage V (bilateral Wilms tumor) and specific involved surgical margins yielding no reduction in the high control rates seen with more traditional flank / whole kidney fields. Exploratory Objectives * Study the feasibility of sparing the residual kidney, spine and liver in patients requiring whole abdomen radiation therapy using either a proton beam treatment technique or intensity-modulated radiation therapy ( IMRT) photon based technique. * Study the feasibility of delivering whole lung radiation therapy with proton beams with the goals of sparing the developing breast tissue, heart structures, thyroid and liver. * Develop simultaneous xenografts and organoid models from the same starting material to study Wilms tumor biology and compare responses to chemotherapeutic agents. * Define the evolution of organ specific (kidney, liver, pancreas, etc.) abnormalities (laboratory studies) as an early marker of possible late end organ damage and their relationship to radiation. * Study and evaluate impact of proton therapy on the musculoskeletal system and physical performance and compare with photon therapy cases treated with classical treatment fields. * Assess CTC-AE and Pediatric Patient Reported Outcomes during radiation and in follow-up, correlating with disease, treatment and patient variables. * Correlate quantitative MRI values, including apparent diffusion coefficient (ADC) values, with histopathology findings post-surgery in children with (bilateral) Wilms. * Assess daily variations in proton range along each treatment beam using standard pre-treatment cone beam CT or on-treatment MR.

Participants needed: 260
Trial details
Phase: Phase 2Biological sex: AllType: InterventionalSponsor: St. Jude Children's Research HospitalUpdated: Apr 23, 2026Locations: 1
Eligibility criteria

Patients are eligible to be enrolled on this trial at the time of initial (or pr... [+19]

Inability or unwillingness to provide written informed consent [+1]

Status: Recruiting

Pencil Beam Scanning in Patients With Renal Tumors

This is a pilot study to assess acute toxicity in patients receiving flank irradiation using proton therapy for renal tumors.

Participants needed: 28
Trial details
Phase: Early Phase 1Age: 0-30Biological sex: AllType: InterventionalSponsor: Children's Hospital of PhiladelphiaUpdated: Apr 15, 2026Locations: 1
Eligibility criteria

Less than 30 years of age [+5]

Prior radiotherapy to the region of the study cancer [+2]

Status: Recruiting

Vorinostat in Combination With Chemotherapy in Relapsed/Refractory Solid Tumors and CNS Malignancies

Investigators are testing new experimental drug combinations such as the combination of vorinostat, vincristine, irinotecan, and temozolomide in the hopes of finding a drug that may be effective against tumors that have come back or that have not responded to standard therapy. The goals of this study are: * To find the highest safe dose of vorinostat that can be given together with vincristine, irinotecan, and temozolomide without causing severe side effects; * To learn what kind of side effects this four drug combination can cause; * To learn about the effects of vorinostat and the combination of vorinostat, vincristine, irinotecan, and temozolomide on specific molecules in tumor cells; * To determine whether the combination of vorinosat, vincristine, irinotecan, and temozolomide is a beneficial treatment.

Participants needed: 30
Trial details
Phase: Phase 1Age: 1-30Biological sex: AllType: InterventionalSponsor: New York Medical CollegeUpdated: Apr 15, 2026Locations: 1
Eligibility criteria

Age: Patients must be less than or equal to 1 year and less than or equal to 30... [+15]

Pregnancy or breast feeding: Women who are pregnant or breast feeding will not b... [+5]

Status: Recruiting

Interleukin-15 and -21 Armored Glypican-3-specific Chimeric Antigen Receptor Expressed in T Cells for Pediatric Solid Tumors

Patients may be considered if the cancer has come back, has not gone away after standard treatment or the patient cannot receive standard treatment. This research study uses special immune system cells called CARE T cells, a new experimental treatment. The body has different ways of fighting infection and disease. No single way seems perfect for fighting cancers. This research study combines two different ways of fighting cancer: antibodies and T cells. Antibodies are types of proteins that protect the body from infectious diseases and possibly cancer. T cells, also called T lymphocytes, are special infection-fighting blood cells that can kill other cells, including cells infected with viruses and tumor cells. Both antibodies and T cells have been used to treat patients with cancers. They have shown promise, but have not been strong enough to cure most patients. Investigators have found from previous research that they can put a new gene (a tiny part of what makes-up DNA and carries a person's traits) into T cells that will make them recognize cancer cells and kill them. In the lab, investigators made several genes called a chimeric antigen receptor (CAR), from an antibody called GPC3. The antibody GPC3 recognizes a protein found solid tumors including pediatric liver cancers. This CAR is called GPC3-CAR. To make this CAR more effective, investigators also added two genes that includes IL15 and IL21, which are protein that helps CAR T cells grow better and stay in the blood longer so that they may kill tumors better. The mixture of GPC3-CAR and IL15 plus IL21 killed tumor cells better in the laboratory when compared with CAR T cells that did not have IL15 plus IL21 .This study will test T cells that investigators made (called genetic engineering) with GPC3-CAR and the IL15 plus IL21 (CARE T cells) in patients with GPC3-positive solid tumors. T cells made to carry a gene called iCasp9 can be killed when they encounter a specific drug called AP1903. The investigators will insert the iCasp9 and IL15 plus IL21 together into the T cells using a virus that has been made for this study. The drug (AP1903) is an experimental drug that has been tested in humans with no bad side-effects. The investigators will use this drug to kill the T cells if necessary due to side effects. This study will test T cells genetically engineered with a GPC3-CAR and IL15 plus IL21 (CARE T cells) in patients with GPC3-positive solid tumors. The CARE T cells are an investigational product not approved by the Food and Drug Administration. The purpose of this study is to find the biggest dose of CARE T cells that is safe, to see how long they last in the body, to learn what the side effects are and to see if the CARE T cells will help people with GPC3-positive solid tumors.

Participants needed: 24
Trial details
Phase: Phase 1Age: 1-21Biological sex: AllType: InterventionalSponsor: Baylor College of MedicineUpdated: Apr 6, 2026Locations: 1
Eligibility criteria

Diagnosis of GPC3-positive* solid tumors (as determined by immunohistochemistry... [+6]

History of hypersensitivity reactions to murine protein-containing products OR p... [+28]

Status: Recruiting

Metronomic Chemotherapy in Wilms Tumor (MetroWilms-1906)

This is a multicenter, interventional, non-randomized study among patients with a relapsed or refractory Wilms tumor. The study will aim to assess efficacy of metronomic chemotherapy, in terms of disease control after two cycles of metronomic chemotherapy.

Participants needed: 28
Trial details
Phase: Phase 1, Phase 2Age: 18-17Biological sex: AllType: InterventionalSponsor: Centre Oscar LambretUpdated: Mar 18, 2026Locations: 18
Eligibility criteria

Patient ≥18 months old and ≤ 17 years old [+12]

Prior history of other cancer within 5 years [+15]

Status: Recruiting

Immunotherapy for Solid Tumor Malignancies in Pediatrics Using Interleukin-15 and -21 Armored Glypican-3-specific Chimeric Antigen Receptor T Cells

This Phase 1, open-label, non-randomized study will enroll pediatric and young adult subjects with relapsed or refractory non-central nervous system (CNS) malignant solid tumors expressing glypican-3 (GPC3) to examine the safety, feasibility, and efficacy of administering T cell products derived from peripheral blood mononuclear cells (PBMC) that have been genetically modified to co-express a GPC3-specific chimeric antigen receptor (CAR), interleukin (IL)-15 and IL-21 as well as the inducible caspase 9 (iC9) suicide gene (SC-CAR.GPC3xIL15.21 T cells). A child or young adult meeting all eligibility criteria and meeting none of the exclusion criteria will have a blood sample collected, which will be used to bioengineer the CAR T cells targeting their tumor.

Participants needed: 21
Trial details
Phase: Phase 1Age: 1-26Biological sex: AllType: InterventionalSponsor: Seattle Children's HospitalUpdated: Feb 17, 2026Locations: 1
Eligibility criteria

Procurement Eligibility [+6]

History of hypersensitivity reactions to murine protein-containing products OR p... [+24]

Status: Recruiting

Immunotherapy For Adults With GPC3-Positive Solid Tumors Using IL-15 and IL-21 Armored GPC3-CAR T Cells

The body has different ways of fighting infection and disease. No single way seems perfect for fighting cancers. This research study combines two different ways of fighting cancer: antibodies and T cells. Antibodies are types of proteins that protect the body from infectious diseases and possibly cancer. T cells, also called T lymphocytes, are special infection-fighting blood cells that can kill other cells, including cells infected with viruses and tumor cells. Both antibodies and T cells have been used to treat patients with cancers. They have shown promise but have not been strong enough to cure most patients. In order to get them to kill cancers more effectively, in the laboratory, the study team inserted a new gene called a chimeric antigen receptor (CAR) into T cells that makes them recognize cancer cells and kill them. When inserted, this new CAR T cell can specifically recognize a protein found on solid tumors, called glypican-3 (GPC3). To make this GPC3-CAR more effective, the study team also added two genes called IL15 and IL21 that help CAR T cells grow better and stay in the blood longer so that they may kill tumors better. When the study team did this in the laboratory, they found that this mixture of GPC3-CAR,IL15 and IL21 killed tumor cells better when compared with CAR T cells that did not have IL15 plus IL21 in the laboratory. This study will use those cells, which are called 21.15.GPC3-CAR T cells, to treat patients with solid tumors that have GPC3 on their surface. The study team also wanted to make sure that they could stop the 21.15.GPC3-CAR T cells from growing in the blood should there be any bad side effects. In order to do so, they inserted a gene called iCasp9 into the CO-EXIST T cells. This allows us the elimination of 21.15.GPC3-CAR T cells in the blood when the gene comes into contact with a medication called AP1903. The drug (AP1903) is an experimental drug that has been tested in humans with no bad side-effects. This drug will only be used to kill the T cells if necessary due to side effects . The study team has treated patients with T cells that include GPC3. Patients have also been treated with IL-21 and with IL-15. Patients have not been treated with a combination of T cells that contain GPC3, IL-21 and IL-15. To summarize, this study will test the effect of 21.15.GPC3-CAR T cells in patients with solid tumors that express GPC3 on their surface. The 21.15.GPC3-CAR T cells are an investigational product not yet approved by the Food and Drug Administration.

Participants needed: 21
Trial details
Phase: Phase 1Age: Up to 21Biological sex: AllType: InterventionalSponsor: Baylor College of MedicineUpdated: Nov 3, 2025Locations: 1
Eligibility criteria

Diagnosis of GPC3-positive* solid tumors (as determined by immunohistochemistry... [+5]

History of hypersensitivity reactions to murine protein-containing products OR p... [+27]

Status: Not yet recruiting

Accurate Diagnosis and Grading of Pediatric Solid Tumors Based on Pathological Large Models

Pediatric malignancies are the second leading cause of death in the pediatric population, with solid tumors accounting for approximately 60% of all pediatric malignancies. The pathological diagnosis of pediatric solid tumors is highly complex and specialized, because of its diverse tissue morphology, rare tumor subtypes and lack of labeling data, the traditional pathological diagnosis relies on the experience of senior pathologists, but in actual clinical practice, due to the lack of expert resources and inconsistent diagnostic standards, more efficient and accurate auxiliary diagnostic tools are urgently needed. In this study, we aim to construct a multimodal dataset by collecting high-quality pathological images and pathological diagnosis results of pediatric solid tumors (neuroblastoma, medulloblastoma, Wilms tumor, hepatoblastoma, rhabdomyosarcoma, etc.), and introduce medical knowledge enhancement strategies on this basis, and improve the medical reasoning ability and adaptability to fine-grained pathological tasks by injecting domain knowledge (such as molecular characteristics of tumors, pathological grading standards, diagnostic rules, etc.) into the model. Through the model, the representation space of images and texts is unified, and diversified diagnostic tasks of pediatric solid tumors such as tumor region segmentation, cancer detection, and tumor subtype identification are realized, providing intelligent support for the accurate diagnosis and personalized treatment of pediatric solid tumors.

Participants needed: 2,000
Trial details
Age: 0-18Biological sex: AllType: ObservationalSponsor: Xinhua Hospital, Shanghai Jiao Tong University School of MedicineUpdated: Feb 12, 2025
Eligibility criteria

Neuroblastoma (NB): For newly diagnosed patients with NB aged 0-18 years, the di... [+4]

The patient's medical record and treatment follow-up information are incomplete;... [+3]

Status: Recruiting

International PPB/DICER1 Registry

Pleuropulmonary blastoma (PPB) is a rare malignant neoplasm of the lung presenting in early childhood. Type I PPB is a purely cystic lesion, Type II is a partially cystic, partially solid tumor, Type III is a completely solid tumor. Treatment of children with PPB is at the discretion of the treating institution. This study builds off of the 2009 study and will also seek to enroll individuals with DICER1-associated conditions, some of whom may present only with the DICER1 gene mutation, which will help the Registry understand how these tumors and conditions develop, their clinical course and the most effective treatments.

Participants needed: 3,400
Trial details
Age: 0-100Biological sex: AllType: ObservationalSponsor: Children's Hospitals and Clinics of MinnesotaUpdated: Jan 30, 2025Locations: 1Duration: 10 Years
Eligibility criteria

Known or suspected PPB or related thoracic tumor [+4]