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A promising bioconjugate vaccine against hypervirulent Klebsiella pneumoniae
Mario F Feldman1,2, Anne E Mayer Bridwell1, Nichollas E Scott3
1Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, MO 63110.
Abstract:
Hypervirulent Klebsiella pneumoniae (hvKp) is globally disseminating as a community-acquired pathogen causing life-threatening infections in healthy individuals. The fact that a dose as little as 50 bacteria is lethal to mice illustrates the dramatic increase of virulence associated with hvKp strains compared with classical K. pneumoniae (cKp) strains, which require lethal doses greater than 107 bacteria. Until recently, these virulent strains were mostly antibiotic-susceptible. However, multidrug-resistant (MDR) hvKp strains have been emerging, spawning a new generation of hypervirulent "superbugs." The mechanisms of hypervirulence are not fully defined, but overproduction of capsular polysaccharide significantly impedes host clearance, resulting in increased pathogenicity of hvKp strains. While there are more than 80 serotypes of K. pneumoniae, the K1 and K2 serotypes cause the vast majority of hypervirulent infections. Therefore, a glycoconjugate vaccine targeting these 2 serotypes could significantly reduce hvKp infection. Conventionally, glycoconjugate vaccines are manufactured using intricate chemical methodologies to covalently attach purified polysaccharides to carrier proteins, which is widely considered to be technically challenging. Here we report on the recombinant production and analytical characterization of bioconjugate vaccines, enzymatically produced in glycoengineered Escherichia coli cells, against the 2 predominant hypervirulent K. pneumoniae serotypes, K1 and K2. The K. pneumoniae bioconjugates are immunogenic and efficacious, protecting mice against lethal infection from 2 hvKp strains, NTUH K-2044 and ATCC 43816. This preclinical study constitutes a key step toward preventing further global dissemination of hypervirulent MDR hvKp strains.
Insights
A new bioconjugate vaccine effectively protects against hypervirulent Klebsiella pneumoniae (hvKp) K1 and K2 serotypes. This breakthrough offers a promising strategy to combat these dangerous, drug-resistant superbugs.
Area of Science:
- Microbiology
- Immunology
- Biotechnology
Background:
- Hypervirulent Klebsiella pneumoniae (hvKp) is a rapidly emerging global pathogen causing severe infections in healthy individuals.
- Multidrug-resistant (MDR) hvKp strains, termed 'superbugs,' pose a significant public health threat.
- hvKp's high virulence is linked to capsular polysaccharide overproduction, particularly serotypes K1 and K2.
Purpose of the Study:
- To develop and characterize a novel bioconjugate vaccine against the predominant hvKp K1 and K2 serotypes.
- To evaluate the immunogenicity and efficacy of the developed bioconjugate vaccine in a preclinical mouse model.
Main Methods:
- Enzymatic production of K1 and K2 K. pneumoniae bioconjugates using glycoengineered Escherichia coli.
- Analytical characterization of the produced bioconjugate vaccines.
- Preclinical testing in mice to assess protection against lethal hvKp infection.
Main Results:
- Successfully produced immunogenic K1 and K2 K. pneumoniae bioconjugate vaccines.
- Demonstrated significant protection in mice against lethal challenge with two distinct hvKp strains (NTUH K-2044 and ATCC 43816).
Conclusions:
- Enzymatically produced bioconjugate vaccines are a viable alternative to chemically synthesized glycoconjugates.
- This preclinical study provides a key step towards a vaccine to prevent hvKp infections and curb the spread of MDR hvKp strains.
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