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Published on: February 27, 2019
Detoxified O-Specific Polysaccharide (O-SP)-Protein Conjugates: Emerging Approach in the Shigella Vaccine Development
Dani Cohen1, Shiri Meron-Sudai1, Anya Bialik1
1School of Public Health, Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv 69978, Israel.
Insights
Shigella vaccines using detoxified lipopolysaccharide (LPS) conjugates show promise. Early conjugate vaccines demonstrated protective efficacy in adults and older children, confirming LPS antibodies as correlates of protection for future Shigella vaccine development.
Area of Science:
- Vaccinology
- Microbiology
- Immunology
Background:
- Shigella is a leading cause of severe diarrhea and mortality in children globally.
- Despite decades of research, licensed Shigella vaccines remain unavailable.
- Previous vaccine development focused on oral, attenuated strains.
Purpose of the Study:
- To evaluate the efficacy of injectable Shigella glycoconjugate vaccines.
- To investigate the role of anti-lipopolysaccharide (LPS) antibodies in protection against Shigella infection.
Main Methods:
- Development of conjugate vaccines using detoxified Shigella LPS (S. sonnei, S. flexneri 2a) bound to protein carriers.
- Phase I and II clinical trials in healthy volunteers to assess immunogenicity.
- Field trials to evaluate protective efficacy in different age groups.
Main Results:
- Shigella glycoconjugates induced high levels of serum IgG antibodies against homologous LPS.
- A Shigella sonnei LPS-conjugate vaccine showed 74% efficacy in young adults and 71% in children over three years old.
- Efficacy was not demonstrated in younger children.
Conclusions:
- Injectable Shigella LPS-based conjugate vaccines are immunogenic and can confer protection.
- IgG antibodies to Shigella LPS are validated correlates of protection.
- These findings support the development of next-generation injectable Shigella vaccines.
Abstract:
Shigella is the second most common cause of moderate to severe diarrhea among children worldwide and of diarrheal disease-associated mortality in young children in low-and middle-income countries. In spite of many years of attempts to develop Shigella vaccines, no licensed vaccines are yet available. Injectable conjugate vaccines made of the detoxified lipopolysaccharide (LPS) of S. flexneri 2a, S. sonnei, and S. dysenteriae type 1 covalently bound to protein carriers were developed in the early 1990s by John B. Robbins and Rachel Schneerson at the US National Institutes of Health. This approach was novel for a disease of the gut mucosa, at a time when live, rationally attenuated oral vaccine strains that intended to mimic Shigella infection and induce a protective local immune response were extensively investigated. Of keystone support to Shigella glycoconjugates development were the findings of a strong association between pre-existent serum IgG antibodies to S. sonnei or S. flexneri 2a LPS and a lower risk of infection with the homologous Shigella serotypes among Israeli soldiers serving in field units. In view of these findings and of the successful development of the pioneering Haemophilus influenzae type b conjugate vaccines, it was hypothesized that protective immunity may be conferred by serum IgG antibodies to the O-Specific Polysaccharide (O-SP) following parenteral delivery of the conjugates. S. sonnei and S. flexneri 2a glycoconjugates induced high levels of serum IgG against the homologous LPS in phase I and II studies in healthy volunteers. The protective efficacy of a S. sonnei detoxified LPS-conjugate was further demonstrated in field trials in young adults (74%) and in children older than three years of age (71%), but not in younger ones. The evaluation of the Shigella conjugates confirmed that IgG antibodies to Shigella LPS are correlates of protection and provided solid basis for the development of a new generation of glycoconjugates and other injectable LPS-based vaccines that are currently in advanced stages of clinical evaluation.
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