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mRNA and DNA-Based Vaccines in Genitourinary Cancers: A New Frontier in Personalized Immunotherapy
Jasmine Vohra1,2, Gabriela Rodrigues Barbosa2,3, Leonardo O Reis2,3,4
1Department of Biomedical Engineering, Vidyalankar Institute of Technology, Mumbai 400037, India.
Abstract:
Genitourinary (GU) cancers, including prostate, bladder, and renal cancers, represent a significant burden on global health. Conventional treatments, while effective in certain contexts, face limitations due to tumor heterogeneity, therapeutic resistance, and relapse. Recent advances in cancer immunotherapy, particularly in the development of personalized mRNA and DNA-based vaccines, have opened new avenues for precise and durable antitumor responses. These vaccines are being developed to leverage neoantigen identification and next-generation sequencing technologies, with the goal of tailoring immunotherapeutic interventions to individual tumor profiles. mRNA vaccines offer rapid, non-integrative, and scalable, with encouraging results reported in infectious diseases and early-phase cancer trials. DNA vaccines, known for their stability and ease of modification, show promise in generating robust cytotoxic T-cell responses. This review discusses the current landscape, preclinical findings, and ongoing clinical trials of mRNA and DNA-based vaccines in GU cancers, highlighting delivery technologies, combination strategies with immune checkpoint inhibitors, and future challenges, including tumor immune evasion and regulatory hurdles. Integrating immunogenomics and artificial intelligence into vaccine design is poised to further enhance precision in cancer vaccine development. As GU malignancies remain a leading cause of cancer-related morbidity and mortality, mRNA and DNA vaccine strategies represent a promising and rapidly evolving area of investigation in oncology.
Insights
Personalized mRNA and DNA vaccines show promise for treating genitourinary (GU) cancers. These advanced immunotherapies aim to create durable antitumor responses by targeting individual tumor profiles.
Area of Science:
- Oncology
- Immunotherapy
- Vaccine Development
Background:
- Genitourinary (GU) cancers pose a significant global health challenge.
- Conventional treatments for GU cancers have limitations including resistance and relapse.
- Cancer immunotherapy, especially personalized vaccines, offers new treatment avenues.
Purpose of the Study:
- To review the current status of mRNA and DNA-based vaccines for GU cancers.
- To discuss preclinical findings and ongoing clinical trials.
- To highlight challenges and future directions in vaccine development for GU malignancies.
Main Methods:
- Review of current literature on mRNA and DNA vaccines in GU cancers.
- Analysis of preclinical data and ongoing clinical trial outcomes.
- Discussion of delivery technologies and combination strategies.
Main Results:
- mRNA vaccines are rapid, scalable, and show early promise in cancer trials.
- DNA vaccines are stable and can induce strong cytotoxic T-cell responses.
- Personalized vaccines leverage neoantigen identification and next-generation sequencing.
Conclusions:
- mRNA and DNA vaccines represent a promising, rapidly evolving strategy for GU cancer treatment.
- Integration of immunogenomics and AI can enhance precision in vaccine design.
- Further research is needed to overcome challenges like tumor immune evasion and regulatory hurdles.
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