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Neoantigen vaccine and neoantigen-specific cell adoptive transfer therapy in solid tumors: Challenges and future
Yanwei Shen1, Lu Yu1, Xiaoli Xu1
1Shanghai Jianshan Medical Tech Co Ltd Shanghai China.
Abstract:
The phenomenon of tumor hierarchy and genetic instability can be explained by the "two-hits theory" and results in the occurrence of many somatic mutations. The expression of nonsynonymous mutations results in the production of mutant proteins from tumor cells, namely tumor-specific antigens called neoantigens. Because neoantigens do not exist in healthy cells, they have the potential to stimulate antitumor immune responses by CD4+ and CD8+ T-cell activation without jeopardizing normal tissues. Immunotherapy has reshaped the cancer treatment paradigm in recent decades with the introduction of immune-checkpoint blockade therapy and transgenic T-cell receptor/chimeric antigen receptor T cells. However, these strategies performed poorly in solid tumors because of the obstacles of the immunosuppressive microenvironment caused by regulatory T cells and other suppressor cells. Therefore, other immunotherapeutic strategies are under development, such as personalized vaccines, to trigger de novo T-cell responses against neoantigens and lead to the amplification of tumor-specific T-cell subclones. Neoantigen epitope prediction algorithms have enabled the detection of neoantigens and the creation of tailored neoantigen vaccines as a result of the fast development of next-generation sequencing and cancer bioinformatics. Here we provide an overview of the current neoantigen cancer vaccines and adoptive T-cell transfer therapy with neoantigen-specific lymphocytes. We also discuss the challenges in developing neoantigen-targeted immunotherapeutic strategies for cancer.
Insights
Neoantigens, unique tumor targets, offer promise for cancer immunotherapy. Personalized vaccines and T-cell therapies aim to harness these antigens for effective antitumor responses, overcoming current treatment limitations.
Area of Science:
- Oncology
- Immunology
- Cancer Genomics
Background:
- Tumorigenesis involves genetic instability and somatic mutations, leading to neoantigen expression.
- Neoantigens are tumor-specific antigens that can elicit T-cell responses without harming healthy tissues.
- Current immunotherapies like immune-checkpoint blockade face challenges in solid tumors due to immunosuppressive microenvironments.
Purpose of the Study:
- To provide an overview of neoantigen cancer vaccines and adoptive T-cell transfer therapy.
- To discuss the potential of neoantigen-targeted immunotherapies.
- To highlight challenges in developing these novel cancer treatments.
Main Methods:
- Leveraging next-generation sequencing and cancer bioinformatics for neoantigen discovery.
- Utilizing neoantigen epitope prediction algorithms.
- Developing personalized neoantigen vaccines and adoptive T-cell therapies.
Main Results:
- Neoantigens can be identified and targeted for therapeutic intervention.
- Personalized vaccines and T-cell therapies show potential for amplifying tumor-specific T-cell responses.
- These strategies aim to overcome limitations of current immunotherapies in solid tumors.
Conclusions:
- Neoantigen-targeted immunotherapies represent a promising frontier in cancer treatment.
- Personalized vaccines and adoptive T-cell therapies are key strategies.
- Addressing challenges in development is crucial for clinical success.
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