T-cell Acute Lymphoblastic Lymphoma

5

Review clinical trials related to T-cell Acute Lymphoblastic Lymphoma. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Universal 4SCAR7U Targeting CD7-positive Malignancies

The purpose of this clinical trial is to assess the feasibility, safety and efficacy of universal CAR T cells based on 4SCAR7U design against CD7-positive hematological malignancies using CD7 specific universal CAR T cells. The study also aims to learn more about the function of CD7 targeting CAR T cells and their persistence in patients of hematological malignancies.

Participants needed: 30
Trial details
Phase: Phase 1Age: 6-75Biological sex: AllType: InterventionalSponsor: Shenzhen Geno-Immune Medical InstituteUpdated: Jun 23, 2026Locations: 1
Eligibility criteria

Age older than 6 months. [+6]

Sever illness or medical condition, which would not permit the patient to be man... [+6]

Status: Recruiting

Multi-CAR T Cell Therapy Targeting CD7-positive Malignancies

The purpose of this clinical trial is to assess the feasibility, safety and efficacy of CAR T cell therapy against CD7-positive hematological malignancies using CD7 specific CAR T cells. The study also aims to learn more about the function of CD7 CAR T cells and their persistence in patients of hematological malignancies.

Participants needed: 30
Trial details
Phase: Phase 1, Phase 2Age: 6-75Biological sex: AllType: InterventionalSponsor: Shenzhen Geno-Immune Medical InstituteUpdated: Jun 23, 2026Locations: 1
Eligibility criteria

Age older than 6 months. [+6]

Sever illness or medical condition, which would not permit the patient to be man... [+6]

Status: Recruiting

Novel Unedited Allo Cell Therapy For High Risk T-Cell Malignancies Using CD7-Specific Car T Cells

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. This study combines two different ways of fighting disease with antibodies and T cells. Antibodies are types of 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 been used to treat cancer; they have shown promise, but have not been strong enough to cure most patients. T cells can kill tumor cells but there normally are not enough of them to kill all the tumor cells. Some researchers have taken T cells from a person's blood, grown more of them in the laboratory and then given them back to the person. The antibody used in this study is called anti-CD7. This antibody sticks to T-cell leukemia or lymphoma cells because of a substance on the outside of these cells called CD7. CD7 antibodies have been used to treat people with T-cell leukemia and lymphoma. For this study, anti-CD7 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 laboratory, investigators have also found that T cells work better if they also add proteins that stimulate T cells, such as one called CD28. Adding the CD28 makes the cells grow better and last longer in the body, thus giving the cells a better chance of killing the leukemia or lymphoma cells. In this study, investigators attach the CD7 chimeric receptor with CD28 added to it to T cells. Investigators will then test how long the cells last. These CD7 chimeric receptor T cells with CD28 are investigational products not approved by the Food and Drug Administration.

Participants needed: 27
Trial details
Phase: Phase 1Age: Up to 75Biological sex: AllType: InterventionalSponsor: Baylor College of MedicineUpdated: May 18, 2026Locations: 2
Eligibility criteria

suitable for allogeneic hematopoietic stem cell transplant (HSCT) [+8]

Active infection requiring antibiotics [+28]

Status: Recruiting

Targeted Immunotherapy After Myeloablative TBI-Based Conditioning & AlloHCT in CAYA With High Risk T-Cell ALL & Lymphoma

A Phase I trial to determine the safety of targeted immunotherapy with daratumumab (DARA) IV after total body irradiation (TBI)-based myeloablative conditioning and allogeneic hematopoietic cell transplantation (HCT) for children, adolescents, and young adults (CAYA) with high risk T-cell acute lymphoblastic leukemia (T-ALL) or T-cell lymphoblastic lymphoma (T-LLy). Pre- and post-HCT NGS-MRD studies will be correlated with outcomes in children, adolescents, and young adults with T-ALL undergoing allogeneic HCT and post-HCT DARA treatment. The study will also evaluate T-cell repertoire and immune reconstitution prior to and following DARA post-HCT treatment and correlate with patient outcomes.

Participants needed: 30
Trial details
Phase: Phase 1Age: Up to 39Biological sex: AllType: InterventionalSponsor: New York Medical CollegeUpdated: Apr 15, 2026Locations: 16
Eligibility criteria

0-39yrs [+6]

May not have had a prior autologous or allogenic stem cell transplant [+7]

Status: Recruiting

Autologous T-Cells Expressing a Second Generation CAR for Treatment of T-Cell Malignancies Expressing CD5 Antigen

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.

Participants needed: 54
Trial details
Phase: Phase 1Age: Up to 75Biological sex: AllType: InterventionalSponsor: Baylor College of MedicineUpdated: Sep 4, 2025Locations: 2
Eligibility criteria

Diagnosis of recurrent T-cell acute lymphoblastic leukemia (T-ALL), T-cell acute... [+12]

Active infection requiring antibiotics. [+32]