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Published on: May 19, 2020
WHO consultation on group B Streptococcus vaccine development: Report from a meeting held on 27-28 April 2016
Miwako Kobayashi1, Stephanie J Schrag2, Mark R Alderson3
1National Center for Immunization and Respiratory Diseases, Division of Bacterial Diseases, Centers for Disease Control and Prevention, Atlanta, GA 30329-4027, USA; Epidemic Intelligence Service, Centers for Disease Control and Prevention, Atlanta, GA 30333, USA.
Insights
Group B Streptococcus (GBS) causes infant sepsis and meningitis. A GBS vaccine for maternal immunization offers a promising strategy to protect newborns, especially in low-resource countries where antibiotic prophylaxis is limited.
Area of Science:
- Obstetrics and Gynecology
- Pediatrics
- Infectious Diseases
Background:
- Group B Streptococcus (GBS) is a primary cause of neonatal sepsis and meningitis globally.
- Intrapartum antibiotic prophylaxis (IAP) reduces GBS disease in high-income countries but is underutilized in low- and middle-income countries (LMICs).
- Maternal immunization with a GBS vaccine is a potential alternative to protect infants via transplacental antibody transfer.
Purpose of the Study:
- To review the public health importance of GBS vaccines for maternal immunization.
- To discuss development pathways for GBS vaccines, focusing on reducing newborn mortality in LMICs.
- To identify critical knowledge gaps and research priorities for GBS vaccine development and deployment.
Main Methods:
- Review of GBS pathophysiology and global disease burden.
- Assessment of current GBS vaccine candidates and clinical trial designs.
- Discussion of regulatory pathways, policy recommendations, and implementation strategies.
Main Results:
- GBS poses a significant public health threat, particularly in LMICs.
- Several GBS vaccine candidates have progressed through early-stage clinical trials.
- Key challenges include understanding the full global disease burden, especially stillbirths, and establishing reliable antibody correlates of protection.
Conclusions:
- Maternal immunization with a GBS vaccine is a high-priority strategy for reducing infant mortality.
- Further research is needed to address knowledge gaps in disease burden, serotype distribution, and vaccine efficacy.
- Development of standardized assays is crucial for evaluating vaccine effectiveness and guiding licensure and policy.
Abstract:
Globally, group B Streptococcus (GBS) remains a leading cause of sepsis and meningitis in infants in the first 90days of life. Intrapartum antibiotic prophylaxis (IAP) for women at increased risk of transmitting GBS to their newborns has been effective in reducing part, but not all, of the GBS disease burden in many high income countries (HICs). In low- and middle-income countries (LMICs), IAP use is low. Immunization of pregnant women with a GBS vaccine represents an alternative strategy to protecting newborns and young infants, through transplacental antibody transfer and potentially by reducing new vaginal colonization. This vaccination strategy was first suggested in the 1970s and several potential GBS vaccines have completed phase I/II clinical trials. During the 2015 WHO Product Development for Vaccines Advisory Committee meeting, GBS was identified as a high priority for the development of a vaccine for maternal immunization because of the major public health burden posed by GBS in LMICs, and the high technical feasibility for successful development. Following this meeting, the first WHO technical consultation on GBS vaccines was held on the 27th and 28th of April 2016, to consider development pathways for such vaccines, focused on their potential role in reducing newborn and young infant deaths and possibly stillbirths in LMICs. Discussion topics included: (1) pathophysiology of disease; (2) current gaps in the knowledge of global disease burden and serotype distribution; (3) vaccine candidates under development; (4) design considerations for phase III trials; and (5) pathways to licensure, policy recommendations and use. Efforts to address gaps identified in each of these areas are needed to establish the public health need for, the development and deployment of, efficacious GBS vaccines. In particular, more work is required to understand the global disease burden of GBS-associated stillbirths, and to develop quality-assured standardized antibody assays to identify correlates of protection.
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