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Development of a Broadly Protective, Self-Adjuvanting Subunit Vaccine to Prevent Infections by Pseudomonas aeruginosa
Sayan Das1, Debaki R Howlader1, Qi Zheng1
1Department of Pharmaceutical Chemistry, School of Pharmacy, University of Kansas, Lawrence, KS, United States.
Abstract:
Infections caused by the opportunistic pathogen Pseudomonas aeruginosa can be difficult to treat due to innate and acquired antibiotic resistance and this is exacerbated by the emergence of multi-drug resistant strains. Unfortunately, no licensed vaccine yet exists to prevent Pseudomonas infections. Here we describe a novel subunit vaccine that targets the P. aeruginosa type III secretion system (T3SS). This vaccine is based on the novel antigen PaF (Pa Fusion), a fusion of the T3SS needle tip protein, PcrV, and the first of two translocator proteins, PopB. Additionally, PaF is made self-adjuvanting by the N-terminal fusion of the A1 subunit of the mucosal adjuvant double-mutant heat-labile enterotoxin (dmLT). Here we show that this triple fusion, designated L-PaF, can activate dendritic cells in vitro and elicits strong IgG and IgA titers in mice when administered intranasally. This self-adjuvanting vaccine expedites the clearance of P. aeruginosa from the lungs of challenged mice while stimulating host expression of IL-17A, which may be important for generating a protective immune response in humans. L-PaF's protective capacity was recapitulated in a rat pneumonia model, further supporting the efficacy of this novel fusion vaccine.
Insights
A new self-adjuvanting vaccine, L-PaF, targets the Pseudomonas aeruginosa type III secretion system. This novel fusion vaccine shows efficacy in preclinical models, accelerating pathogen clearance and stimulating protective immune responses.
Area of Science:
- Immunology
- Microbiology
- Vaccinology
Background:
- * *Pseudomonas aeruginosa* infections are challenging due to antibiotic resistance.
- * No licensed vaccine is currently available to prevent *P. aeruginosa* infections.
Purpose of the Study:
- * To develop and evaluate a novel subunit vaccine targeting the *P. aeruginosa* type III secretion system (T3SS).
Main Methods:
- * Construction of a triple fusion antigen, L-PaF, combining PcrV, PopB, and a mucosal adjuvant (dmLT).
- * *In vitro* assessment of dendritic cell activation.
- * *In vivo* evaluation in mouse and rat models of *P. aeruginosa* infection following intranasal administration.
Main Results:
- * L-PaF activated dendritic cells *in vitro*.
- * Intranasal L-PaF vaccination elicited strong IgG and IgA antibody responses in mice.
- * L-PaF vaccination expedited *P. aeruginosa* clearance from lungs and stimulated IL-17A production in mice, with efficacy confirmed in a rat pneumonia model.
Conclusions:
- * The self-adjuvanting fusion vaccine L-PaF demonstrates preclinical efficacy against *P. aeruginosa* infections.
- * L-PaF represents a promising candidate for a novel vaccine against *P. aeruginosa*.
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