American Association for Cancer Research
Browse

Data from Mesothelin CAR T Cells Secreting Anti-FAP/Anti-CD3 Molecules Efficiently Target Pancreatic Adenocarcinoma and its Stroma

Posted on 2024-05-01 - 07:22
AbstractPurpose:

Targeting solid tumors with chimeric antigen receptor (CAR) T cells remains challenging due to heterogenous target antigen expression, antigen escape, and the immunosuppressive tumor microenvironment (TME). Pancreatic cancer is characterized by a thick stroma generated by cancer-associated fibroblasts (CAF), which may contribute to the limited efficacy of mesothelin-directed CAR T cells in early-phase clinical trials. To provide a more favorable TME for CAR T cells to target pancreatic ductal adenocarcinoma (PDAC), we generated T cells with an antimesothelin CAR and a secreted T-cell–engaging molecule (TEAM) that targets CAF through fibroblast activation protein (FAP) and engages T cells through CD3 (termed mesoFAP CAR-TEAM cells).

Experimental Design:

Using a suite of in vitro, in vivo, and ex vivo patient-derived models containing cancer cells and CAF, we examined the ability of mesoFAP CAR-TEAM cells to target PDAC cells and CAF within the TME. We developed and used patient-derived ex vivo models, including patient-derived organoids with patient-matched CAF and patient-derived organotypic tumor spheroids.

Results:

We demonstrated specific and significant binding of the TEAM to its respective antigens (CD3 and FAP) when released from mesothelin-targeting CAR T cells, leading to T-cell activation and cytotoxicity of the target cell. MesoFAP CAR-TEAM cells were superior in eliminating PDAC and CAF compared with T cells engineered to target either antigen alone in our ex vivo patient-derived models and in mouse models of PDAC with primary or metastatic liver tumors.

Conclusions:

CAR-TEAM cells enable modification of tumor stroma, leading to increased elimination of PDAC tumors. This approach represents a promising treatment option for pancreatic cancer.

CITE THIS COLLECTION

DataCite
3 Biotech
3D Printing in Medicine
3D Research
3D-Printed Materials and Systems
4OR
AAPG Bulletin
AAPS Open
AAPS PharmSciTech
Abhandlungen aus dem Mathematischen Seminar der Universität Hamburg
ABI Technik (German)
Academic Medicine
Academic Pediatrics
Academic Psychiatry
Academic Questions
Academy of Management Discoveries
Academy of Management Journal
Academy of Management Learning and Education
Academy of Management Perspectives
Academy of Management Proceedings
Academy of Management Review
or
Select your citation style and then place your mouse over the citation text to select it.

FUNDING

Swiss National Science Foundation

National Cancer Institute (NCI)

United States Department of Health and Human Services

American-Italian Cancer Foundation (AICF)

Italian Foundation for Cancer Research (AIRC)

National Institutes of Health (NIH)

Sociedad Española de Oncología Médica (SEOM)

CRIS Cancer Foundation (CRIS Foundation)

DKMS Foundation (DKMS)

Deutsche Forschungsgemeinschaft (DFG)

Hopper-Belmont Foundation (HBF)

SHARE

email

Usage metrics

Clinical Cancer Research

AUTHORS (39)

Marc Wehrli
Samantha Guinn
Filippo Birocchi
Adam Kuo
Yi Sun
Rebecca C. Larson
Antonio J. Almazan
Irene Scarfò
Amanda A. Bouffard
Stefanie R. Bailey
Praju Vikas Anekal
Paula Montero Llopis
Linda T. Nieman
Yuhui Song
Katherine H. Xu
Trisha R. Berger
Michael C. Kann
Mark B. Leick
Harrison Silva
Diego Salas-Benito
need help?