Administering Peripheral Blood Lymphocytes Transduced With a Murine T-Cell Receptor Recognizing the G12D Variant of Mutated RAS in HLA-A*11:01 Patients
Summary
Background: A new cancer therapy takes white blood cells from a person, grows them in a lab, genetically changes them, then gives them back to the person. Researchers think this may help attack tumors in people with certain cancers. It is called gene transfer using anti-Kirsten rat sarcoma virus (KRAS) Glycine(G) to Aspartic Acid(D) substitution at codon 12(G12D) murine T-cell receptor (mTCR) cells. Objective: To see if anti-KRAS G12D mTCR cells are safe and cause tumors to shrink. Eligibility: Adults ages 18-72 who have cancer with a molecule on the tumors that can be recognized by the study cells Design: Participants will be screened with medical history, physical exam, scans, photography, and heart, lung, and lab tests. An intravenous (IV) catheter will be placed in a large vein in the chest. Participants will have leukapheresis. Blood will be removed through a needle in an arm. A machine will divide the blood and collect white blood cells. The rest of the blood will be returned to the participant through a needle in the other arm. A few weeks later, participants will have a hospital stay. They will: * Get 2 chemotherapy medicines by IV over 5 days. * Get the changed cells through the catheter. Get up to 9 doses of medicine to help the cells. They may get a shot to stimulate blood cells. * Recover in the hospital for up to 3 weeks. They will provide blood samples. Participants will take an antibiotic for at least 6 months. Participants will have several follow-up visits over 2 years. They will repeat most of the screening tests and may have leukapheresis. Participants blood will be collected for several years.
Timeline
- Start
- 2019-05-16
- Primary completion
- 2022-08-23
- Completion
- 2022-08-23
Publications
- Background Abrams SI, Khleif SN, Bergmann-Leitner ES, Kantor JA, Chung Y, Hamilton JM, Schlom J. Generation of stable CD4+ and CD8+ T cell lines from patients immunized with ras oncogene-derived peptides reflecting codon 12 mutations. Cell Immunol. 1997 Dec 15;182(2):137-51. doi: 10.1006/cimm.1997.1224.
- Background Davis JL, Theoret MR, Zheng Z, Lamers CH, Rosenberg SA, Morgan RA. Development of human anti-murine T-cell receptor antibodies in both responding and nonresponding patients enrolled in TCR gene therapy trials. Clin Cancer Res. 2010 Dec 1;16(23):5852-61. doi: 10.1158/1078-0432.CCR-10-1280.
- Background Wang QJ, Yu Z, Griffith K, Hanada K, Restifo NP, Yang JC. Identification of T-cell Receptors Targeting KRAS-Mutated Human Tumors. Cancer Immunol Res. 2016 Mar;4(3):204-14. doi: 10.1158/2326-6066.CIR-15-0188. Epub 2015 Dec 23.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | anti-KRAS G12D mTCR-transduced PBL | Unknown | — | Intravenous |
| Background | Cyclophosphamide | Other / unclassified | 60 mg/kg | Intravenous |
| Background | Fludarabine | Small molecule | 25 mg/m2 | Intravenous |
| Background | aldesleukin | Protein / enzyme biologic | 720000 iu/kg | Intravenous |