Pulmonary mRNA-LNP Vaccines for Rapid and Durable Protection Against Bacterial Infection

接种疫苗 先天免疫系统 免疫系统 免疫学 获得性免疫系统 免疫 医学 疫苗效力 生物 细菌性肺炎 病毒学 呼吸道感染 微生物学 呼吸系统
作者
Xiaoli Wei,Anqi Wei,Miao Yu,Zhou Yuan,Guanghui Li,Dexuan Lei,Yinyu Ma,Zhiwei Guo,Yuansong Sun,Tianhao Ding,Kaisong Tian,Qiang He,Zui Zhang,Lianfeng Fan,Changyou Zhan
出处
期刊: [Cold Spring Harbor Laboratory]
标识
DOI:10.64898/2025.12.19.695407
摘要

Abstract Pulmonary bacterial infections remain a major clinical challenge. Although vaccination reduces infection rates and mortality, the vulnerable post-vaccination immunity gap can still result in infection and vaccine failure. In addition, effective vaccines are unavailable for many clinically important bacterial pathogens. Here, we report a pulmonary mRNA-lipid nanoparticle (mRNA-LNP) vaccine incorporating a novel ionizable lipid engineered for localized high-level expression, which elicits both rapid and durable protections against bacterial lung infections, effectively bridging this critical window of vulnerability. Intratracheal delivery of mRNA-LNP rapidly primes lung neutrophils and macrophages into a transcriptionally pre-activated state, enhancing their phagocytic activity and enabling rapid, antigen-independent bacterial clearance during the early post-vaccination period (approximately 1-7 days). Subsequently, vaccination induces potent antigen-specific adaptive responses, conferring sustained protection against both laboratory and clinical drug-resistant Pseudomonas aeruginosa strains. Single-cell transcriptomics and immune profiling reveal coordinated activation of innate and adaptive immune programs. This dual-phase immune response exemplifies a paradigm-shifting vaccine design that integrates innate and adaptive immunity to confer both immediate and long-term protection. Our findings establish a mechanistic basis for rapid antibacterial defense and highlight pulmonary mRNA-LNP vaccination as a promising strategy for combating respiratory infections.
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