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Published on: February 22, 2019
Controlled Human Infection With Bordetella pertussis Induces Asymptomatic, Immunizing Colonization
Hans de Graaf1, Muktar Ibrahim2, Alison R Hill2
1Faculty of Medicine and Institute for Life Sciences, University of Southampton, Academic Unit of Clinical Experimental Sciences, National Institute of Health Research (NIHR) Clinical Research Facility and NIHR Southampton Biomedical Research Centre, University Hospital Southampton, Southampton, United Kingdom.
Background:
Bordetella pertussis is among the leading causes of vaccine-preventable deaths and morbidity globally. Human asymptomatic carriage as a reservoir for community transmission of infections might be a target of future vaccine strategies, but has not been demonstrated. Our objective was to demonstrate that asymptomatic nasopharyngeal carriage of Bordetella pertussis is inducible in humans and to define the microbiological and immunological features of presymptomatic infection.
Methods:
Healthy subjects aged 18-45 years with an antipertussis toxin immunoglobin G (IgG) concentration of <20 international units/ml were inoculated intranasally with nonattenuated, wild-type Bordetella pertussis strain B1917. Safety, colonization, and shedding were monitored over 17 days in an inpatient facility. Colonization was assessed by culture and quantitative polymerase chain reaction. Azithromycin was administered from Day 14. The inoculum dose was escalated, aiming to colonize at least 70% of participants. Immunological responses were measured.
Results:
There were 34 participants challenged, in groups of 4 or 5. The dose was gradually escalated from 103 colony-forming units (0% colonized) to 105 colony-forming units (80% colonized). Minor symptoms were reported in a minority of participants. Azithromycin eradicated colonization in 48 hours in 88% of colonized individuals. Antipertussis toxin IgG seroconversion occurred in 9 out of 19 colonized participants and in none of the participants who were not colonized. Nasal wash was a more sensitive method to detect colonization than pernasal swabs. No shedding of Bordetella pertussis was detected in systematically collected environmental samples.
Conclusions:
Bordetella pertussis colonization can be deliberately induced and leads to a systemic immune response without causing pertussis symptoms.
Clinical Trials Registration:
NCT03751514.
Insights
Human challenge studies show Bordetella pertussis can be deliberately induced, leading to asymptomatic nasopharyngeal carriage and a systemic immune response. This finding is crucial for developing future pertussis (whooping cough) vaccine strategies targeting transmission reservoirs.
Area of Science:
- Infectious Diseases
- Immunology
- Vaccinology
Background:
- Bordetella pertussis causes significant global vaccine-preventable deaths and morbidity.
- Asymptomatic carriage is a potential reservoir for pertussis transmission, but has not been previously demonstrated in humans.
- Understanding asymptomatic carriage is key for developing novel vaccine strategies.
Purpose of the Study:
- To demonstrate that asymptomatic nasopharyngeal carriage of Bordetella pertussis is inducible in humans.
- To define the microbiological and immunological features of presymptomatic pertussis infection.
- To evaluate the efficacy of azithromycin in eradicating colonization.
Main Methods:
- Healthy adults with low antipertussis toxin IgG were intranasally inoculated with wild-type Bordetella pertussis.
- Colonization, shedding, and safety were monitored over 17 days.
- Immunological responses were measured, and azithromycin was administered from Day 14.
Main Results:
- Dose escalation successfully induced colonization in 80% of participants at the highest dose (10^5 CFU).
- Minor symptoms were reported in a minority; azithromycin eradicated colonization in 88% of cases.
- Antipertussis toxin IgG seroconversion occurred in colonized individuals, indicating a systemic immune response.
Conclusions:
- Deliberate induction of Bordetella pertussis colonization is feasible in humans.
- Colonization leads to a measurable systemic immune response without overt pertussis symptoms.
- This model provides a platform for studying asymptomatic carriage and evaluating interventions.
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