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Synthesis and Characterization of mRNA-Loaded Poly(Beta Aminoesters) Nanoparticles for Vaccination Purposes
Published on: August 13, 2021
Advances and Challenges in Nanodelivery Systems for RNA Vaccines
Hang Li1, Yubo Zhao2, Jiajun Yang1
1State Key Laboratory of Biotherapy and Cancer Center, Research Unit of Gene and Immunotherapy, Chinese Academy of Medical Sciences, Collaborative Innovation Center of Biotherapy, West China Hospital, Sichuan University, Chengdu, Sichuan610041, China.
Abstract:
RNA vaccines have become a transformative technology in infectious disease prevention and cancer treatment, thanks to their rapid development, high immunogenicity, and scalability in production. However, the clinical application of RNA vaccines faces significant challenges, including the inherent instability and susceptibility to degradation of naked RNA, its poor permeability across cell membranes, and the potential for nonspecific immune responses following systemic administration. Nanodelivery systems are key to addressing these challenges; by providing physical protection, enabling targeted delivery, promoting cellular uptake, and facilitating escape from endosomes, they significantly enhance the efficacy and safety of RNA vaccines. This review provides a comprehensive overview of the latest advances in nanodelivery systems for RNA vaccines, focusing on the characteristics of three distinct types of RNA vaccines─linear mRNA, self-amplifying RNA, and circular RNA─as well as the applications of lipid nanoparticles, polymeric nanoparticles, virus-like particles, and other emerging nanocarriers in enhancing RNA stability, boosting immunogenicity, and enabling precise targeting. Furthermore, this study will examine the key challenges in this field, including vector biosafety, large-scale production, cost-effectiveness, and storage and transportation, and will also outline future research directions and prospects for clinical translation.
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