Strategies for tumor elimination by cytotoxic T lymphocytes
L A Sherman1, M Theobald, D Morgan
1Department of Immunology, Scripps Research Institute, La Jolla, CA, USA.
Abstract:
Despite differences in their tissue of origin, many tumors share high level expression of certain tumor-associated proteins. Our laboratory has focused on the possibility of utilizing antigenic components of these proteins as a focus for T-cell immunotherapy of cancer. The advantage of targeting such commonly expressed proteins is the fact that such therapy could be of value in eliminating many different types of tumors. A potential barrier in the identification of T-cell epitopes derived from these proteins and presented by tumor cells is the fact that these proteins are also expressed at low levels in some normal tissues, and therefore, self-tolerance may eliminate T cells that are capable of recognizing these epitopes with high avidity. We have utilized two different murine model systems to explore the extent to which self-tolerance may limit the immune response to a tumor-specific antigen. The first compared the ability of mice deficient in expression of murine p53 (p53 knock-out mice) and normal mice, to respond against several epitopes of the p53 protein. The second model compares the ability of conventional mice with transgenic mice that express the influenza hemagglutinin in the periphery to respond to a dominant antigenic peptide of this transgene product. In both models we have investigated the effect self-tolerance has on elimination of tumors expressing the toleragen.
Insights
Cancer immunotherapy can target common tumor proteins, but self-tolerance may hinder T-cell responses. Studies in mouse models show self-tolerance impacts the immune system's ability to eliminate tumors expressing specific antigens.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Many tumors express common tumor-associated proteins, presenting a target for cancer immunotherapy.
- Self-tolerance, a mechanism preventing autoimmune responses, can limit T-cell recognition of tumor antigens expressed at low levels in normal tissues.
Purpose of the Study:
- To investigate the impact of self-tolerance on the immune response against tumor-specific antigens.
- To explore the potential of T-cell immunotherapy targeting commonly expressed tumor proteins.
Main Methods:
- Utilized two murine models: p53-deficient mice vs. normal mice responding to p53 epitopes, and conventional mice vs. transgenic mice expressing influenza hemagglutinin responding to its antigenic peptide.
- Assessed the effect of self-tolerance on tumor elimination in models expressing the toleragen.
Main Results:
- Self-tolerance significantly influences the immune response to tumor-associated antigens.
- The ability of the immune system to eliminate tumors expressing self-antigens is modulated by pre-existing tolerance mechanisms.
Conclusions:
- Self-tolerance poses a challenge for T-cell immunotherapy targeting broadly expressed tumor antigens.
- Understanding and potentially overcoming self-tolerance is crucial for developing effective cancer immunotherapies.
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