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In Vitro Tumor Cell Rechallenge For Predictive Evaluation of Chimeric Antigen Receptor T Cell Antitumor Function
Published on: February 27, 2019
Tumor cells endowed with professional antigen-presenting cell functions prime PBLs to generate antitumor CTLs
Chiara Chiozzini1, Eleonora Olivetta1, Massimo Sanchez2
1National Center for Global Health, Istituto Superiore di Sanità (ISS), Viale Regina Elena 299, 00161, Rome, Italy.
Abstract:
Intrinsic genetic instability of tumor cells leads to continuous production of mutated proteins referred to as tumor-specific neoantigens. Generally, they are recognized as nonself products by the host immune system. However, an effective adaptive response clearing neoantigen-expressing cells is lost in tumor diseases. Most advanced therapeutic strategies aim at inducing neoantigen-specific immune activation through personalized approaches. They include tumor cell exome sequencing, human leukocyte antigen (HLA) typing, synthesis, and injection of peptides/RNA with adjuvants. Here, we propose an innovative method to induce a CD8+ T cytotoxic lymphocyte (CTL) immune response against tumor neoantigens bypassing the steps needed in current therapeutic strategies of personalized vaccination. We assumed that tumor cells can be the most efficient and precise factory of major histocompatibility complex (MHC) class I-associated, tumor neoantigen-derived peptides. Hence, endowing tumor cells with professional antigen-presenting functions would prime CD8+ T lymphocytes towards a response against nonself tumor antigens. To explore this possibility, both adenocarcinoma and melanoma human cells were engineered to express both CD80 and CD86 costimulatory molecules. HLA-matched lymphocytes were then primed through cocultivation with the engineered tumor cells. The generation of tumor-specific CD8+ T lymphocytes was tested through the combined analysis of cell activation markers, formation of immunologic synapses, generation of tumor antigen-specific CD8+ T lymphocytes, and cytotoxic activity. Our data consistently indicate that tumor cells endowed with professional antigen-presenting functions can generate an effective tumor-specific CTL immune response. This finding may open avenues towards the development of innovative antitumor immunotherapies. KEY MESSAGES: We established a novel method to induce antitumor CTLs without a need to identify TAAs and/or tumor neoantigens. This strategy relies on transducing tumor cells with a retroviral vector expressing both CD80 and CD86. In this way, tumor cells prime naïve CD8+ T lymphocytes in a way that CTLs killing the same tumor cells are generated. These findings open the way towards preclinical assays in the perspective to introduce this antitumor immunotherapy strategy in clinic.
Insights
This study introduces a new immunotherapy approach that engineers tumor cells to activate CD8+ T cells, generating a potent anti-tumor response without needing to identify specific tumor antigens. This method bypasses complex personalized vaccine steps for effective cancer treatment.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Tumor cells possess intrinsic genetic instability, producing tumor-specific neoantigens that are usually recognized by the immune system.
- Effective adaptive immune responses against neoantigen-expressing tumor cells are often lost in cancer patients.
- Current personalized immunotherapies involve complex steps like exome sequencing and HLA typing to induce neoantigen-specific immunity.
Purpose of the Study:
- To develop an innovative method for inducing a CD8+ T cytotoxic lymphocyte (CTL) immune response against tumor neoantigens.
- To bypass the intricate steps of current personalized neoantigen vaccination strategies.
- To explore engineering tumor cells to act as antigen-presenting cells to prime T lymphocytes.
Main Methods:
- Engineered human adenocarcinoma and melanoma cells to express CD80 and CD86 costimulatory molecules.
- Primed HLA-matched lymphocytes via co-cultivation with engineered tumor cells.
- Assessed the generation of tumor-specific CD8+ T lymphocytes by analyzing cell activation markers, immunologic synapse formation, and cytotoxic activity.
Main Results:
- Engineered tumor cells expressing CD80 and CD86 successfully primed naive CD8+ T lymphocytes.
- Demonstrated the generation of tumor-specific CTLs capable of recognizing and killing tumor cells.
- Confirmed effective tumor-specific CTL immune response induction by engineered tumor cells.
Conclusions:
- Tumor cells engineered with professional antigen-presenting functions can effectively induce a tumor-specific CTL immune response.
- This novel strategy bypasses the need for identifying tumor-specific antigens or neoantigens for immunotherapy.
- The findings pave the way for developing innovative antitumor immunotherapies and preclinical trials for clinical application.
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