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A Nonviral Approach to Generate Transient Chimeric Antigen Receptor T Cells Using mRNA for Cancer Immunotherapy
Published on: February 21, 2025
Advances and prospects of mRNA vaccines in cancer immunotherapy
Yixuan Liu1, Qijia Yan2, Zhaoyang Zeng1
1NHC Key Laboratory of Carcinogenesis and Hunan Key Laboratory of Cancer Metabolism, Hunan Cancer Hospital and the Affiliated Cancer Hospital of Xiangya School of Medicine, Central South University, Changsha, China; Key Laboratory of Carcinogenesis and Cancer Invasion of the Chinese Ministry of Education, Cancer Research Institute, Central South University, Changsha, Hunan, China.
Abstract:
Cancer vaccines, designed to activate the body's own immune system to fight against tumors, are a current trend in cancer treatment and receiving increasing attention. Cancer vaccines mainly include oncolytic virus vaccine, cell vaccine, peptide vaccine and nucleic acid vaccine. Over the course of decades of research, oncolytic virus vaccine T-VEC, cellular vaccine sipuleucel-T, various peptide vaccines, and DNA vaccine against HPV positive cervical cancer have brought encouraging results for cancer therapy, but are losing momentum in development due to their respective shortcomings. In contrast, the advantages of mRNA vaccines such as high safety, ease of production, and unmatched efficacy are on full display. In addition, advances in technology such as pseudouridine modification have cracked down the bottleneck for developing mRNA vaccines including instability, innate immunogenicity, and low efficiency of in vivo delivery. Several cancer mRNA vaccines have achieved promising results in clinical trials, and their usage in conjunction with other immune checkpoint inhibitors (ICIs) has further boosted the efficiency of anti-tumor immune response. We expect a rapid development of mRNA vaccines for cancer immunotherapy in the near future. This review provides a brief overview of the current status of mRNA vaccines, highlights the action mechanism of cancer mRNA vaccines, their recent advances in clinical trials, and prospects for their clinical applications.
Insights
Messenger RNA (mRNA) vaccines represent a promising frontier in cancer immunotherapy, offering high safety and efficacy. Advances in technology are overcoming previous limitations, paving the way for rapid development in cancer treatment.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Cancer vaccines aim to harness the immune system against tumors.
- Traditional vaccines (oncolytic virus, cell, peptide, nucleic acid) show promise but face limitations.
- Messenger RNA (mRNA) vaccines are emerging as a powerful tool in cancer immunotherapy.
Purpose of the Study:
- To provide an overview of mRNA vaccine technology for cancer.
- To highlight the mechanisms, clinical advances, and future prospects of cancer mRNA vaccines.
- To discuss the synergistic potential of mRNA vaccines with immune checkpoint inhibitors.
Main Methods:
- Review of current literature on cancer mRNA vaccines.
- Analysis of technological advancements enabling mRNA vaccine development (e.g., pseudouridine modification).
- Examination of clinical trial data and combination therapies.
Main Results:
- mRNA vaccines demonstrate high safety, ease of production, and efficacy.
- Technological improvements have addressed challenges like instability and delivery.
- Clinical trials show promising results, especially when combined with immune checkpoint inhibitors (ICIs).
Conclusions:
- mRNA vaccines are rapidly advancing in cancer immunotherapy.
- Further development and clinical application are expected in the near future.
- Combination strategies with ICIs enhance anti-tumor immune responses.
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