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Published on: July 12, 2018
Persistent Polyfunctional Chimeric Antigen Receptor T Cells That Target Glypican 3 Eliminate Orthotopic
Dan Li1, Nan Li2, Yi-Fan Zhang2
1Laboratory of Molecular Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland; School of Life Sciences, East China Normal University, Shanghai, China.
Background And Aims:
Glypican 3 (GPC3) is an oncofetal antigen involved in Wnt-dependent cell proliferation that is highly expressed in hepatocellular carcinoma (HCC). We investigated whether the functions of chimeric antigen receptors (CARs) that target GPC3 are affected by their antibody-binding properties.
Methods:
We collected peripheral blood mononuclear cells from healthy donors and patients with HCC and used them to create CAR T cells, based on the humanized YP7 (hYP7) and HN3 antibodies, which have high affinities for the C-lobe and N-lobe of GPC3, respectively. NOD/SCID/IL-2Rgcnull (NSG) mice were given intraperitoneal injections of luciferase-expressing (Luc) Hep3B or HepG2 cells and after xenograft tumors formed, mice were given injections of saline or untransduced T cells (mock control), or CAR (HN3) T cells or CAR (hYP7) T cells. In other NOD/SCID/IL-2Rgcnull (NSG) mice, HepG2-Luc or Hep3B-Luc cells were injected into liver, and after orthotopic tumors formed, mice were given 1 injection of CAR (hYP7) T cells or CD19 CAR T cells (control). We developed droplet digital polymerase chain reaction and genome sequencing methods to analyze persistent CAR T cells in mice.
Results:
Injections of CAR (hYP7) T cells eliminated tumors in 66% of mice by week 3, whereas CAR (HN3) T cells did not reduce tumor burden. Mice given CAR (hYP7) T cells remained tumor free after re-challenge with additional Hep3B cells. The CAR T cells induced perforin- and granzyme-mediated apoptosis and reduced levels of active β-catenin in HCC cells. Mice injected with CAR (hYP7) T cells had persistent expansion of T cells and subsets of polyfunctional CAR T cells via antigen-induced selection. These T cells were observed in the tumor microenvironment and spleen for up to 7 weeks after CAR T-cell administration. Integration sites in pre-infusion CAR (HN3) and CAR (hYP7) T cells were randomly distributed, whereas integration into NUPL1 was detected in 3.9% of CAR (hYP7) T cells 5 weeks after injection into tumor-bearing mice and 18.1% of CAR (hYP7) T cells at week 7. There was no common site of integration in CAR (HN3) or CD19 CAR T cells from tumor-bearing mice.
Conclusions:
In mice with xenograft or orthoptic liver tumors, CAR (hYP7) T cells eliminate GPC3-positive HCC cells, possibly by inducing perforin- and granzyme-mediated apoptosis or reducing Wnt signaling in tumor cells. GPC3-targeted CAR T cells might be developed for treatment of patients with HCC.
Insights
Chimeric antigen receptor (CAR) T cells targeting Glypican 3 (GPC3) showed efficacy in treating hepatocellular carcinoma (HCC) in mice. The hYP7 CAR T-cell therapy eliminated tumors and prevented recurrence, highlighting its potential for HCC treatment.
Area of Science:
- Immunotherapy
- Oncology
- Molecular Biology
Background:
- Glypican 3 (GPC3) is an oncofetal antigen highly expressed in hepatocellular carcinoma (HCC).
- GPC3 plays a role in Wnt-dependent cell proliferation, a key pathway in HCC.
- Investigating the impact of antibody-binding properties on GPC3-targeted chimeric antigen receptor (CAR) T-cell function is crucial.
Purpose of the Study:
- To evaluate the efficacy of GPC3-targeted CAR T cells in treating HCC.
- To determine if antibody-binding properties influence CAR T-cell function against GPC3.
- To assess the therapeutic potential of CAR T cells for HCC treatment.
Main Methods:
- Developed CAR T cells using humanized YP7 (hYP7) and HN3 antibodies targeting GPC3.
- Administered CAR T cells to NSG mice with established HCC xenograft or orthotopic liver tumors.
- Utilized droplet digital PCR and genome sequencing to analyze CAR T-cell persistence and integration sites.
Main Results:
- CAR (hYP7) T cells eliminated tumors in 66% of mice and prevented recurrence after re-challenge.
- CAR (hYP7) T cells induced apoptosis and reduced Wnt signaling in HCC cells.
- Persistent, polyfunctional CAR T cells were observed in tumor microenvironments and spleens for up to 7 weeks.
Conclusions:
- CAR (hYP7) T cells effectively eliminate GPC3-positive HCC cells in mouse models.
- The mechanism involves inducing apoptosis and reducing Wnt signaling in tumor cells.
- GPC3-targeted CAR T cells represent a promising therapeutic strategy for HCC patients.
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