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A Vaccine Approach for the Prevention of Infections by Multidrug-resistant Enterococcus faecium
Srinivas Kodali1, Evgeny Vinogradov2, Fiona Lin1
1From Pfizer Vaccine Research and Early Development, Pearl River, New York 10654.
Abstract:
The incidence of multidrug-resistant Enterococcus faecium hospital infections has been steadily increasing. With the goal of discovering new vaccine antigens, we systematically fractionated and purified four distinct surface carbohydrates from E. faecium endocarditis isolate Tx16, shown previously to be resistant to phagocytosis in the presence of human serum. The two most abundant polysaccharides consist of novel branched heteroglycan repeating units that include signature sugars altruronic acid and legionaminic acid, respectively. A minor high molecular weight polysaccharide component was recognized as the fructose homopolymer levan, and a glucosylated lipoteichoic acid (LTA) was identified in a micellar fraction. The polysaccharides were conjugated to the CRM197 carrier protein, and the resulting glycoconjugates were used to immunize rabbits. Rabbit immune sera were evaluated for their ability to kill Tx16 in opsonophagocytic assays and in a mouse passive protection infection model. Although antibodies raised against levan failed to mediate opsonophagocytic killing, the other glycoconjugates induced effective opsonic antibodies, with the altruronic acid-containing polysaccharide antisera showing the greatest opsonophagocytic assay activity. Antibodies directed against either novel heteroglycan or the LTA reduced bacterial load in mouse liver or kidney tissue. To assess antigen prevalence, we screened a diverse collection of blood isolates (n = 101) with antibodies to the polysaccharides. LTA was detected on the surface of 80% of the strains, and antigens recognized by antibodies to the two major heteroglycans were co-expressed on 63% of these clinical isolates. Collectively, these results represent the first steps toward identifying components of a glycoconjugate vaccine to prevent E. faecium infection.
Insights
Researchers identified novel surface carbohydrates on multidrug-resistant Enterococcus faecium. Antibodies against these antigens show promise for developing a glycoconjugate vaccine against hospital infections.
Area of Science:
- Microbiology
- Immunology
- Vaccine Development
Background:
- Rising incidence of multidrug-resistant Enterococcus faecium hospital infections.
- Previous identification of E. faecium isolate Tx16 as resistant to phagocytosis.
Purpose of the Study:
- To discover new vaccine antigens for Enterococcus faecium.
- To characterize surface carbohydrates of E. faecium for vaccine potential.
Main Methods:
- Systematic fractionation and purification of E. faecium surface carbohydrates.
- Conjugation of purified polysaccharides to CRM197 carrier protein.
- Immunization of rabbits and evaluation of immune sera in opsonophagocytic assays and mouse infection models.
Main Results:
- Identification of two novel branched heteroglycans, levan, and glucosylated lipoteichoic acid (LTA).
- Glycoconjugates induced opsonic antibodies, with greatest activity against altruronic acid-containing polysaccharide.
- Antibodies reduced bacterial load in vivo; LTA and heteroglycan antigens were prevalent on clinical isolates.
Conclusions:
- Novel heteroglycans and LTA are promising vaccine candidates against E. faecium.
- These findings represent initial steps toward a glycoconjugate vaccine for E. faecium infections.
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