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Experimental Melanoma Immunotherapy Model Using Tumor Vaccination with a Hematopoietic Cytokine
Published on: February 24, 2023
Targeting lymphotoxin beta receptor with tumor-specific T lymphocytes for tumor regression
Dafeng Yang1, Najam Ud Din, Darren D Browning
1Department of Biochemistry and Molecular Biology, Medical College of Georgia, Augusta, Georgia 30912, USA.
Purpose:
One of the impediments of immunotherapy against cancer is the suppression of tumor-specific CTLs in the tumor microenvironment, partly due to the selective inhibition of the perforin pathway and the emergence of Fas-resistant tumors. Therefore, we sought to identify perforin- and Fas-independent cytotoxic pathways and explored the potential of targeting LTbetaR with tumor-specific CTLs to induce tumor rejection in vivo.
Experimental Design:
Fas-resistant tumors were examined for their susceptibility to perforin-deficient (pfp) CTLs via CTL adoptive transfer in mouse models of experimental lung metastasis. The specificity of LTbetaR, a cell surface death receptor, in causing tumor rejection by CTLs was analyzed by LTbetaR-specific neutralizing monoclonal antibody in vitro. The specificity and efficacy of LTbetaR in the suppression of established tumors was further investigated by silencing LTbetaR in tumor cells in vivo.
Results:
pfp CTLs exhibited significant cytotoxicity against Fas-resistant tumors in vivo. The perforin- and Fas-independent cytotoxicity was directly mediated, at least in part, by the adoptively transferred CTLs. It was observed that LTbetaR was expressed on the tumor cell surface, and LTalpha, LTbeta, and LIGHT, all of which are ligands for LTbetaR, were either constitutively expressed or activated in the tumor-specific CTLs and primary CD8(+) T cells. Blocking LTbetaR with LTbetaR-specific neutralizing monoclonal antibody decreased CTL cytotoxicity in vitro. Silencing LTbetaR using LTbetaR-specific short hairpin RNA reduced the ability of pfp CTLs to induce tumor rejection in vivo.
Conclusion:
LTbetaR directly mediates CTL-directed tumor rejection in vivo. Targeting LTbetaR with tumor-specific CTLs is a potential therapeutic approach.
Insights
This study reveals that targeting the Lymphotoxin beta receptor (LTbetaR) with cytotoxic T lymphocytes (CTLs) can overcome tumor resistance to immunotherapy. This perforin- and Fas-independent pathway offers a new strategy for cancer treatment.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Medicine
Background:
- Cancer immunotherapy faces challenges from tumor microenvironment-mediated suppression of cytotoxic T lymphocytes (CTLs).
- Tumor resistance often involves the inhibition of the perforin pathway and the development of Fas-resistant tumors.
- Identifying alternative CTL-mediated cytotoxic pathways is crucial for enhancing immunotherapy efficacy.
Purpose of the Study:
- To identify perforin- and Fas-independent cytotoxic pathways against cancer.
- To explore the potential of targeting the Lymphotoxin beta receptor (LTbetaR) with tumor-specific CTLs for in vivo tumor rejection.
Main Methods:
- Evaluated susceptibility of Fas-resistant tumors to perforin-deficient (pfp) CTLs in mouse models.
- Assessed LTbetaR's role in CTL-mediated tumor rejection using neutralizing antibodies and LTbetaR gene silencing.
- Analyzed expression of LTbetaR and its ligands in CTLs and tumor cells.
Main Results:
- Perforin-deficient CTLs demonstrated significant cytotoxicity against Fas-resistant tumors.
- LTbetaR is expressed on tumor cells, and its ligands are present on CTLs, mediating perforin- and Fas-independent cytotoxicity.
- Blocking or silencing LTbetaR reduced CTL-mediated tumor rejection in vitro and in vivo.
Conclusions:
- Lymphotoxin beta receptor (LTbetaR) directly mediates CTL-directed tumor rejection.
- Targeting LTbetaR with tumor-specific CTLs represents a promising therapeutic strategy for overcoming immunotherapy resistance in cancer.
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