Casmil Irafasha C, Jin Jongwoo, Won Eun-Jeong, Huang Cynthia, Liao Suiyang, Cha-Molstad Hyunjoo, Blakney Anna K
Michael Smith Laboratories, University of British Columbia, Vancouver, BC V6T1Z4, Canada; School of Biomedical Engineering, University of British Columbia, Vancouver, BC V6T1Z3, Canada.
Nucleic Acid Therapeutics Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Ochang 28116, Republic of Korea; Advanced Bioconvergence Department, KRIBB School, University of Science and Technology, Daejeon 34113, Republic of Korea.
Mol Ther. 2025 Apr 3. doi: 10.1016/j.ymthe.2025.03.060.
Self-amplifying RNA (saRNA) technology is an emerging platform for vaccine development, offering significant advantages over conventional mRNA vaccines. By enabling intracellular amplification of RNA, saRNA facilitates robust antigen expression at lower doses, thereby enhancing both immunogenicity and cost-effectiveness. This review examines the latest advancements in saRNA vaccine development, highlighting its applications in combating infectious diseases. This includes viral pathogens such as SARS-CoV-2, influenza, and emerging zoonotic threats. We discuss the design and optimization of saRNA vectors to maximize antigen expression while minimizing adverse immune responses. Recent studies demonstrating the safety, efficacy, and scalability of saRNA-based vaccines in clinical settings are also discussed. We address challenges related to delivery systems, stability, and manufacturing, along with novel strategies being developed to mitigate these challenges. As the global demand for rapid, flexible, and scalable vaccine platforms grows, saRNA presents a promising solution with enhanced potency and durability. This review emphasizes the transformative potential of saRNA vaccines to shape the future of immunization strategies, particularly in response to pandemics and other global health threats.
自扩增RNA(saRNA)技术是一种新兴的疫苗开发平台,与传统mRNA疫苗相比具有显著优势。通过实现RNA的细胞内扩增,saRNA有助于在较低剂量下实现强大的抗原表达,从而增强免疫原性和成本效益。本综述探讨了saRNA疫苗开发的最新进展,重点介绍了其在对抗传染病中的应用。这包括诸如严重急性呼吸综合征冠状病毒2(SARS-CoV-2)、流感和新出现的人畜共患病威胁等病毒病原体。我们讨论了saRNA载体的设计和优化,以在最大限度减少不良免疫反应的同时最大化抗原表达。还讨论了近期在临床环境中证明基于saRNA的疫苗的安全性、有效性和可扩展性的研究。我们阐述了与递送系统、稳定性和生产相关的挑战,以及为应对这些挑战而正在开发的新策略。随着全球对快速、灵活和可扩展疫苗平台的需求不断增长,saRNA提供了一种具有增强效力和持久性的有前景的解决方案。本综述强调了saRNA疫苗在塑造免疫策略未来方面的变革潜力,特别是在应对大流行和其他全球健康威胁方面。