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mRNA-LNP Vaccines Targeting SmpA-PLD and OmpK-Omp22 Induce Protective Immunity Against Acinetobacter baumannii
Cong Liu1,2, Xingyun Wang1, Yueling Zheng1
1Department of Pharmacology, School of Medicine, Southern University of Science and Technology, Shenzhen 518000, China.
Background:
Acinetobacter baumannii (A. baumannii) has emerged as a critical human pathogen, causing high mortality rates among hospitalized patients and frequently triggering nosocomial outbreaks. The increasing prevalence of multidrug-resistant (MDR) A. baumannii poses a pressing threat to public health. To date, no commercially available vaccine against A. baumannii has been developed for clinical use. messenger RNA (mRNA)-lipid nanoparticle (LNP) vaccines have emerged as a promising vaccination strategy.
Methods:
In this work, we developed two mRNA vaccines targeting SmpA-PLD and the fusion protein of outer membrane proteins OmpK and Omp22. The mRNA was encapsulated in LNP and administered to BALB/c mice. We evaluated humoral and cellular immune responses, bacterial burden, inflammation, and protective efficacy against A. baumannii infection in a sepsis model.
Results:
These mRNA vaccines triggered robust humoral and cellular immune responses in BALB/c mice, reduced bacterial burden and inflammation in sepsis models, and provided significant protection against A. baumannii infection. Notably, the OmpK-Omp22 vaccine exhibited superior protective efficacy, reducing bacterial loads in various organs and improving survival rates in the sepsis model compared to the SmpA-PLD vaccine.
Conclusions:
Our findings demonstrate mRNA-LNP vaccine technology as a versatile and promising platform for the development of innovative therapeutics against A. baumannii, with the potential to mitigate acute disease and promote bacterial decolonization. These findings pave the way for the development of urgently needed and effective antibacterial vaccines.
Insights
New messenger RNA (mRNA) vaccines show promise against multidrug-resistant Acinetobacter baumannii. These lipid nanoparticle (LNP) vaccines effectively reduced bacterial infections and improved survival in mice, offering hope for new antibacterial strategies.
Area of Science:
- Infectious Diseases
- Vaccinology
- Microbiology
Background:
- Acinetobacter baumannii is a critical pathogen causing high mortality and nosocomial outbreaks.
- Multidrug-resistant A. baumannii presents a significant public health threat.
- No approved vaccines currently exist for A. baumannii infections.
Purpose of the Study:
- To develop and evaluate novel mRNA-lipid nanoparticle (LNP) vaccines against Acinetobacter baumannii.
- To assess the immunogenicity and protective efficacy of two distinct mRNA vaccine candidates.
Main Methods:
- Two mRNA vaccines were designed targeting SmpA-PLD and a fusion of OmpK-Omp22.
- mRNA was encapsulated in LNPs and administered to BALB/c mice.
- Humoral and cellular immunity, bacterial burden, inflammation, and survival were assessed in a sepsis model.
Main Results:
- Both mRNA vaccines induced robust immune responses and reduced bacterial burden and inflammation.
- Significant protection against A. baumannii infection was observed in vaccinated mice.
- The OmpK-Omp22 vaccine demonstrated superior efficacy, reducing organ bacterial loads and improving survival.
Conclusions:
- mRNA-LNP vaccine technology is a viable platform for developing A. baumannii therapeutics.
- These vaccines show potential for mitigating acute infections and promoting bacterial decolonization.
- The study paves the way for urgently needed antibacterial vaccines against A. baumannii.
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