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Clinical Trials/NCT06251544
NCT06251544Not yet recruitingPhase 1

(TRAILBLASER) TRAIL-R2 and HER2 Bi-Specific Chimeric Antigen Receptor T Cells for the Treatment of Metastatic Breast Cancer

Baylor College of Medicine1 site in 1 country27 target enrollmentStarted: June 1, 2026Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Phase 1
Status
Not yet recruiting
Enrollment
27
Locations
1
Primary Endpoint
Dose-limiting toxicity (DLT) rate

Study Overview

Brief Summary

The purpose of this study is to find the biggest dose of HTR2 T cells that is safe, to see how long these cells last in the body, to learn the side effects, and to see if these cells are able to fight and kill HER2 expressing breast cancer.

Patients eligible for this study have metastatic breast cancer that has HER2 expression and has progressed on at least one line of therapy. This is a gene transfer research study using special immune cells called T cells. T cells are a type of white blood cell that helps the body recognize and fight cancer cells.

The body has different ways of fighting diseases and no single way seems perfect for fighting cancer. This research combines two different ways of fighting cancer: antibodies and T cells. Antibodies are proteins that protect the body from infectious disease and possibly cancer. T cells, or T lymphocytes, are special blood cells that can kill other cells, including tumor cells. Both antibodies and T cells have shown promise treating cancer but have not been strong enough to cure most patients.

Previous research has found that investigators can put genes into T cells that helps them recognize cancer cells and kill them. Investigators now want to see if by putting a new gene in those T cells to help recognize breast cancer cells expressing HER2 can kill the cancer cells. In clinical trials for various cancer types that express HER2, our center engineered a CAR that recognizes HER2 and put this CAR into patients own T cells and gave them back. Investigators saw that the cells did grow and patients did tolerate and respond to the treatment.

Investigators will add a gene to the HER2 recognizing CAR T cells that will improve the T cells function. Investigators know that some immune cells in the body can lower T cells ability to kill cancer cells. Investigators have identified an antibody that will inactivate those immune suppressive cells thereby allowing T cells to survive better to recognize and kill cancer cells. This antibody targets the Trail-R2 receptor and is referred to as TR2.

Also, investigators know that T cells need the support of cytokines to perform their immune functions. There is evidence showing that the addition of interleukin 15 (IL15) enhances CAR T cells ability to kill cancer cells. As a result, investigators also added IL15 to the HER2 and TR2 targeting CAR T cells (HTR2 T cells).

The HTR2 T cells are an investigational product not approved by the Food and Drug Administration.

Detailed Description

To make the T cells, the investigators will take the patient's blood and stimulate it with growth factors to make T cells grow. Investigators use a retrovirus to insert HER CAR, TR2 antibody and IL 15 genes into the T cells.

HTR2 cells are generated from the patient's T cells and are frozen. At the time the patient is scheduled to be treated, the cells will then be thawed and injected into the patient over 5 to 10 minutes. Patients will only get one dose of HTR2 T cells during the infusion. If the patient has a good response and tolerance, we may be able to repeat infusion in the future. The patent may be pretreated with Tylenol and Benadryl to prevent possible allergic reaction to the T cell administration.

If investigators need to stop the HTR2 T cells due to bad side effects, investigators have inserted a gene called iCasp9 into the T cells. This allows investigators to eliminate the HTR2 T cells in the blood when the gene comes into contact with a medication called Rimiducid. The drug Rimiducid is not yet FDA approved and is an experimental drug, but it has been tested in humans without bad side-effects. Investigators will only use this drug to kill the T cells if necessary due to side effects. Since investigators do not know exactly what dose will effectively stop HTR2 T cells in individual patients, investigators will start at a low dose with the ability to increase the dose two more times based on how patients are doing. Blood work will be done to ensure that the HTR2 T cells have been successfully eliminated.

The treatment will be given by the Center for Cell and Gene Therapy at Houston Methodist Hospital.

MEDICAL TESTS BEFORE TREATMENT

Study Design

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

Eligibility Criteria

Ages
18 Years to 80 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Procurement Inclusion Criteria:
  • Any patient between 18-80 years of age regardless of sex, with a diagnosis of metastatic or locally recurrent unresectable HER2 positive breast cancer.
  • HER2 tumor expression1+, 2+ or 3+ by IHC
  • The disease must have progressed after standard first line therapy. Patients are still eligible if they have failed more than one line of therapy.
  • Informed consent explained to, understood by and signed by patient/guardian. Patient/guardian given copy of informed consent.
  • Treatment Inclusion Criteria:
  • Patients between ages 18 and 80 years old with a diagnosis of either stage IV breast cancer or locally recurrent unresectable breast cancer. Disease must have progressed after standard first line therapy. Patients are still eligible if they have failed more than one line of therapy.
  • Measurable or evaluable disease per RECIST 1.1 criteria.
  • HER2 tumor expression 1+, 2+ or 3+ by IHC.
  • Bilirubin ≤ 3x upper limit of normal.
  • AST and ALT ≤ 3x upper limit of normal
  • Hemoglobin ≥ 7 g/dl (may be transfused values)
  • Serum creatinine < 2 x the upper limit of normal.
  • Pulse oximetry of > 90% on room air.
  • Off conventional or investigational therapy for 3 weeks prior to study entry.
  • ECOG Performance Status ≤ 2
  • The patient is able to understand and give informed consent to study related procedures and treatments.
  • Procurement

Exclusion Criteria

  • Known pregnancy or actively breast feeding.
  • Active and uncontrolled bacterial, viral, or fungal infection.
  • Patients with current use of systemic corticosteroids (Prednisone equivalent >0.5mg/kg/day).
  • Patients with abnormal left ventricular function (LVEF <55%)
  • Patients with brain metastases that are progressing.
  • Treatment Exclusion Criteria:
  • Pregnant or breast feeding
  • Active and uncontrolled bacterial, viral or fungal infection
  • Patient with current use of systemic corticosteroids (prednisone equivalent >0.5 mg/kg/day.
  • Patients with abnormal left ventricular function (LVEF <55%).
  • Patients with brain metastases that are progressing

Arms & Interventions

Arm B: HTR2 T Cells (with lymphodepletion)

Experimental

Two dose levels will be evaluated in Arm B (with lymphodepletion)

Intervention: HTR2 T Cells (Genetic)

Arm A: HTR2 T Cells (without lymphodepletion)

Experimental

Two dose levels will be evaluated in Arm A (without lymphodepletion)

Intervention: HTR2 T Cells (Genetic)

Outcomes

Primary Outcomes

Dose-limiting toxicity (DLT) rate

Time Frame: 4 weeks after first infusion

Rate of incidents of dose limiting toxicity by dose levels.

Secondary Outcomes

  • Objective response rate (ORR)(3 months after first infusion)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Natalie Chen

Assistant Professor

Baylor College of Medicine

Study Sites (1)

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