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Clinical Trials/NCT00902044
NCT00902044Active, not recruitingPhase 1

Administration of Her2 Chimeric Antigen Receptor Expressing T Cells for Subjects With Advanced Sarcoma (HEROS)

Baylor College of Medicine2 sites in 1 country36 target enrollmentStarted: February 11, 2010Last updated:
Conditions
Interventions
Drugs

Trial Snapshot

Phase
Phase 1
Status
Active, not recruiting
Enrollment
36
Locations
2
Primary Endpoint
Number of patients with dose limiting toxicity after one injection of HER2-specific T cells

Study Overview

Brief Summary

Patients have a type of cancer called sarcoma. Because there is no standard treatment for the patients cancer at this time or because the currently used treatments do not work fully in all cases, patients are being asked to volunteer to take part in a gene transfer research study using special immune cells. This research study combines two different ways of fighting disease: antibodies and T cells. Antibodies are proteins that protect the body from diseases caused by germs or toxic substances. They work by binding those germs or substances, which stops them from growing or exerting their toxic effects. T cells, also called T lymphocytes, are special infection-fighting blood cells that can kill other cells, including tumor cells or cells that are infected with germs. Both antibodies and T cells have been used to treat patients with cancers: they both have shown promise, but have not been strong enough to cure most patients. We have found from previous research that we can put a new gene into T cells that will make them recognize cancer cells and kill them. We now want to see if we can put a new gene in these cells that will let the T cells recognize and kill sarcoma cells. The new gene that we will put in makes an antibody specific for HER2 (Human Epidermal Growth Factor Receptor 2) that binds to sarcoma cells. In addition it contains CD28, which stimulated T cells and make them last longer. In other clinical studies using T cells, some investigators found that giving chemotherapy before the T cell infusion can improve the amount of time the T cells stay in the body and therefore the effect the T cells can have. Giving chemotherapy before a T cell infusion is called lymphodepletion since the chemotherapy is specifically chosen to decrease the number of lymphocytes in the body. Decreasing the number of patient's lymphocytes first should allow the T cells we infuse to expand and stay longer in your body, and potentially kill cancer cells more effectively. We will use fludarabine or the combination of cyclophosphamide and fludarabine as the chemotherapy agents for lymphodepletion. Cyclophosphamide and fludarabine are the chemotherapy agents most commonly used for lymphodepletion in immunotherapy clinical trials. The purpose of this study is to find the largest safe dose of chimeric T cells, and to see whether this therapy might help patients with sarcoma. Another purpose is to see if it is safe to give HER2-CD28 T cells after lymphodepleting chemotherapy.

Detailed Description

Because the cells have a new gene in them the patient will be followed for a total of 15 years to see if there are any long term side effects of gene transfer.

When the patient is enrolled on this study, they will be assigned a dose of HER2-CD28 T cells. Depending on which dose level they are assigned, they will receive one of the following:

HER2-CD28 T cells and fludarabine (patient will receive fludarabine for 5 days followed by injection of HER2-CD28 T cells)

OR

HER2-CD28 T cells, fludarabine and cyclophosphamide (patient will receive fludarabine and cyclophosphamide for 2 days, fludarabine alone for an additional 3 days, and 2 days of rest before receiving the HER2-CD28 T cells.).

Study Design

Study Type
Interventional
Allocation
Non Randomized
Intervention Model
Single Group
Primary Purpose
Treatment
Masking
None

Eligibility Criteria

Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Procurement Eligibility:
  • Diagnosis of refractory HER2-positive sarcoma or metastatic HER2-positive osteosarcoma.
  • Karnofsky/Lansky score of 50 or greater
  • Informed consent explained to, understood by and signed by patient/guardian. Patient/guardian given copy of informed consent.
  • Treatment Eligibility:
  • Diagnosis of refractory HER2-positive sarcoma or metastatic HER2-positive sarcoma with disease progression after receiving at least one prior systemic therapy.
  • Recovered from acute toxic effects of all prior cytotoxic chemotherapy at least 4 weeks before entering this study. PD1/PDL1 inhibitors will be allowed to continue during treatment if medically indicated.
  • Normal ECHO (Left ventricular ejection fraction (LVEF) has to be within normal, institutional limits)
  • Life expectancy 6 weeks or greater
  • Karnofsky/Lansky score of 50 or greater
  • Bilirubin 3x or less, AST 3x or less, Serum creatinine 2x upper limit of normal or less, Hgb 7.0 g/dl or greater, WBC greater than 2,000/ul, ANC greater than 1,000/ul, platelets greater than 100,000/ul. Creatinine clearance is needed for patients with creatinine greater than 1.5 times upper limit of normal.
  • Pulse oximetry of 90% or greater on room air
  • Sexually active patients must be willing to utilize one of the more effective birth control methods for 6 months after the CTL infusion. Male partner should use a condom
  • Available autologous transduced T lymphocytes with 15% or more expression of HER2 CAR as determined by flow-cytometry and killing of HER2-positive targets 20 % or greater in cytotoxicity assay.
  • Chest radiograph for baseline evaluation of lungs
  • Informed consent explained to, understood by and signed by patient/guardian. Patient/guardian given copy of informed consent

Exclusion Criteria

  • At time of Procurement:
  • Known HIV positivity
  • Severe previous toxicity from cyclophosphamide or fludarabine
  • At time of Treatment:
  • Severe intercurrent infection
  • Known HIV positivity
  • Pregnant or lactating
  • History of hypersensitivity reactions to murine protein-containing products
  • Severe previous toxicity from cyclophosphamide or fludarabine

Arms & Interventions

Autologous HER2-specific T cells

Experimental

THIS ARM IS CLOSED

Dose Level 1: 1x10^4 cells/m2

Dose Level 2: 3x10^4 cells/m2

Dose Level 3: 1x10^5 cells/m2 (NOT BEING USED)

Dose Level 4: 3x10^5 cells/m2 (NOT BEING USED)

Dose Level 5: 1x10^6 cells/m2

Dose Level 6: 3x10^6 cells/m2

Dose Level 7: 1x10^7 cells/m2

Dose Level 8: 3x10^7 cells/m2

Dose Level 9: 1x10^8 cells/m2

Intervention: Autologous HER2-specific T cells (Genetic)

HER2-specific T cells+fludarabine

Experimental

Autologous HER2-specific T cells+fludarabine:

Dose Level 9A: fludarabine followed by 1x10^8 cells/m^2

Intervention: Autologous HER2-specific T cells (Genetic)

HER2-specific T cells+fludarabine

Experimental

Autologous HER2-specific T cells+fludarabine:

Dose Level 9A: fludarabine followed by 1x10^8 cells/m^2

Intervention: Fludarabine (Drug)

HER2-specific T cells+fludarab.+cycloph.

Experimental

Autologous HER2-specific T cells+fludarabine+cyclophosphamide:

Dose Level 9B: fludarabine + cyclophosphamide followed by 1x10^8 cells/m^2

Intervention: Autologous HER2-specific T cells (Genetic)

HER2-specific T cells+fludarab.+cycloph.

Experimental

Autologous HER2-specific T cells+fludarabine+cyclophosphamide:

Dose Level 9B: fludarabine + cyclophosphamide followed by 1x10^8 cells/m^2

Intervention: Fludarabine (Drug)

HER2-specific T cells+fludarab.+cycloph.

Experimental

Autologous HER2-specific T cells+fludarabine+cyclophosphamide:

Dose Level 9B: fludarabine + cyclophosphamide followed by 1x10^8 cells/m^2

Intervention: Cyclophosphamide (Drug)

CAR Positive cells

Experimental

Dose Level 9C: fludarabine + cyclophosphamide followed by 1x10^8 cells/m^2 CAR positive cells/m^2

Intervention: Autologous HER2-specific T cells (Genetic)

CAR Positive cells

Experimental

Dose Level 9C: fludarabine + cyclophosphamide followed by 1x10^8 cells/m^2 CAR positive cells/m^2

Intervention: Fludarabine (Drug)

CAR Positive cells

Experimental

Dose Level 9C: fludarabine + cyclophosphamide followed by 1x10^8 cells/m^2 CAR positive cells/m^2

Intervention: Cyclophosphamide (Drug)

CAR Positive cells

Experimental

Dose Level 9C: fludarabine + cyclophosphamide followed by 1x10^8 cells/m^2 CAR positive cells/m^2

Intervention: Autologous CAR Positive T cells (Genetic)

Outcomes

Primary Outcomes

Number of patients with dose limiting toxicity after one injection of HER2-specific T cells

Time Frame: 6 weeks

To determine the safety of one intravenous injection of autologous T cells expressing HER2-specific chimeric antigen receptor (CAR) in patients with advanced HER2-positive sarcoma. To determine the safety of one intravenous injection of 1x10\^8/m\^2 autologous T cells after lymphodepleting chemotherapy.

Secondary Outcomes

  • Frequency of HER2-specific T cells pre and post injection(15 years)
  • Change in tumor size from pre to post injection(6 weeks)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Nabil Ahmed

Associate Professor, Pediatric Hematology Oncology, Center for Cell and Gene Therapy

Baylor College of Medicine

Study Sites (2)

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