iC9.GD2.CAR.IL-15 T-cells
BiologicalThree dose levels are being evaluated: 0.5 x 10^6, 1.0 x 10^6, 1.5 x 10^6
NCT Number: NCT03721068
The body has different ways of fighting infections and disease. No single way seems perfect for fighting cancer. This research study combines two different ways of fighting disease: antibodies and T cells. Antibodies are molecules that fight infections and protect your body from diseases caused by bacteria and toxic substances. Antibodies work by sticking to those bacteria or substances, which stops them from growing and causing bad effects. T cells are special infection-fighting blood cells that can kill other cells, including tumor cells or cells that are infected. Both antibodies and T cells have been used to treat patients with cancers. They both have shown promise, but neither alone has been enough to cure most patients.
This multicenter study is designed to combine both T cells and antibodies in order to create a more effective treatment. The treatment that is being researched is called autologous T lymphocyte chimeric antigen receptor cells (CAR) cells targeted against the disialoganglioside (GD2) antigen that express Interleukin (IL)-15, and the inducible caspase 9 safety switch (iC9), also known as iC9.GD2.CAR.IL-15 T cells.
Interested in participating?
Request Info18 month and older
All sexes
Interventional
Phase 1
Emory - Winship Cancer Institute, Atlanta, Georgia, United States
In previous studies, it has been shown that when T cells have part of an antibody attached to them, they are better at recognizing and killing cancer cells. The antibody that will be used in this study is called anti-GD2. This antibody floats around in the blood and can detect and stick to cancer cells called neuroblastoma cells because they have a substance on the outside of the cells called GD2. For this study, the anti-GD2 antibody has been changed so that instead of floating freely in the blood, it is now joined to the T cells. However, it is unknown how long the iC9.GD2.CAR.IL-15 T cells last in the body, so their chances of fighting cancer cells are not well known.
To improve the tumor-fighting power of GD2-CAR-T cells, two additional components were added to these cells. The IL-15 gene was added so that the GD2-CAR-T cells can attack tumor cells more effectively. Interleukin-15 (IL-15) is a chemical that cells use to communicate with one another. Other research using IL-15 in combination with CAR-T cells has shown there is an increase in the body's ability to allow the CAR-T cells to survive and grow in the body. The iC9 gene was added as an "off switch" so it can stop the activity of the GD2-CAR-T cells if there are any serious bad side effects. Bad side effects seen previously in patients receiving the GD2 antibody alone include pain. In this study, the "stop switch" can be used to turn off the GD2-CAR-T cells if you experience intense pain that does not respond to normal pain treatments.
The study will enroll a minimum of 10 adult subjects and 10 pediatric subjects; all subjects will undergo lymphodepletion chemotherapy prior to the cell infusion as outlined in the protocol.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
All clinical and laboratory data required for determining eligibility must be available in the subject's medical/research record which will serve as the source document.
Because of the nature of iC9.GD2.CAR.IL-15 T cell product preparation, subjects will be assessed for initial study enrollment eligibility (prior to cell procurement) and then will have to meet criteria prior to starting lymphodepletion and prior to T cell infusion.
Inclusion criteria
for the Study:
Exclusion criteria
for the Study Subjects meeting any of the following exclusion criteria will not be able to participate in this study (procurement, lymphodepletion, and cell infusion).
Three dose levels are being evaluated: 0.5 x 10^6, 1.0 x 10^6, 1.5 x 10^6
500 mg/m^2 IV dose on days 1-2 for lymphodepletion prior to cell infusion
30 mg/m^2 IV dose on days 1-4 for lymphodepletion prior to cell infusion
Time frame: 4 weeks
Toxicity will be classified and graded according to the National Cancer Institute's Common Terminology Criteria for Adverse Events (AEs) (CTCAE, version 5.0), a descriptive terminology which can be utilized for AE reporting. A grading (severity) scale is provided for each AE term/symptom: Grade 1 (Mild; asymptomatic); Grade 2 (Moderate; minimal, local or noninvasive intervention indicated); Grade 3 (Severe or medically significant but not immediately life-threatening; hospitalization indicated; disabling); Grade 4 (Life-threatening consequences; urgent intervention indicated); Grade 5 (Death related to AE). Immune effector cell-associated neurotoxicity syndrome (ICANS) symptoms will be graded according to the criteria outlined in the protocol on a scale from 1 (mild) to 4 (critical). Cytokine release syndrome (CRS) will be graded according to criteria outlined in the protocol on a scale from 1 (mild) to grade 5 (death).
Time frame: 4 weeks
Tolerability of iC9.GD2.CAR.IL-15 T cells will be assessed by NCI-CTCAE criteria and the CRS grading criteria outlined in Section 12.4 and neurotoxicity/ICANS will be graded according to criteria outlined in Section 12.5
Time frame: 15 years
Persistence of iC9.GD2.CAR.IL-15 T cells in vivo will be determined by quantitative Polymerase chain reaction (PCR) and flow cytometry in peripheral blood samples
Time frame: 6 weeks
The overall response rate (ORR = complete (CR) + partial (PR) + minor (MR) responses) to iC9.GD2.CAR.IL-15 T cell infusion will be determined using the revised International Neuroblastoma Response Criteria (INRC) for subjects with neuroblastoma. The overall response rate (ORR = complete (CR) + partial (PR) responses) for subjects with osteosarcoma will be measured using Response evaluation criteria in solid tumors (RECIST) version 1.1
Time frame: 15 years
OS will be measured from the date of administration of iC9.GD2.CAR.IL-15 T cells to the date of death
Time frame: 15 years
PFS is defined from the date of administration of iC9.GD2.CAR.IL-15 T cells to the date of signs and symptoms of treatment failure or relapse from CR or PR, or death from any cause.
UNC Lineberger Comprehensive Cancer Center
Other
A Phase I Study of Autologous Activated T-Cells Expressing a 2nd Generation GD2 Chimeric Antigen Receptor, IL-15, and iCaspase9 Safety Switch Administered To Patients With Relapsed/Refractory Neuroblastoma or Relapsed/Refractory Osteosarcoma
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
Published trials that share one or more normalized conditions with this study.
NCT06541262
Ewing Sarcoma, Liposarcoma
Birmingham, Alabama, United States
View Trial DetailsNCT06465199
Atypical Teratoid/Rhabdoid Tumor, Brain Diseases
Birmingham, Alabama, United States
View Trial DetailsNCT06625190
Alveolar Soft Part Sarcoma, Chordoma
Gainesville, Florida, United States
View Trial DetailsNCT04897321
Adrenal Cortex Diseases, Adrenal Cortex Neoplasms
Memphis, Tennessee, United States
View Trial Details