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Histopathology of Bordetella Pertussis in the Baboon Model

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Journal Infect Immun
Date 2018 Aug 22
PMID 30126900
Citations 17
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Abstract

Pertussis is a severe respiratory disease caused by The classic symptoms of pertussis include paroxysmal coughing with an inspiratory whoop, posttussive vomiting, cyanosis, and persistent coryzal symptoms. Infants under 2 months of age experience more severe disease, with most deaths occurring in this age group. Most of what is known about the pathology of pertussis in humans is from the evaluation of fatal human infant cases. The baboon model of pertussis provides the opportunity to evaluate the histopathology of severe but nonfatal pertussis. The baboon model recapitulates the characteristic clinical signs of pertussis observed in humans, including leukocytosis, paroxysmal coughing, mucus production, heavy colonization of the airway, and transmission of the bacteria between hosts. As in humans, baboons demonstrate age-related differences in clinical presentation, with younger animals experiencing more severe disease. We examined the histopathology of 5- to 6-week-old baboons, with the findings being similar to those reported for fatal human infant cases. In juvenile baboons, we found that the disease is highly inflammatory and concentrated to the lungs with signs of disease that would typically be diagnosed as acute respiratory distress syndrome (ARDS) and bronchopneumonia. In contrast, no significant pathology was observed in the trachea. Histopathological changes in the trachea were limited to cellular infiltrates and mucus production. Immunohistostaining revealed that the bacteria were localized to the surface of the ciliated epithelium in the conducting airways. Our observations provide important insights into the pathology of pertussis in typical, severe but nonfatal pertussis cases in a very relevant animal model.

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References
1.
Mascart F, Verscheure V, Malfroot A, Hainaut M, Pierard D, Temerman S . Bordetella pertussis infection in 2-month-old infants promotes type 1 T cell responses. J Immunol. 2003; 170(3):1504-9. DOI: 10.4049/jimmunol.170.3.1504. View

2.
Guevara C, Zhang C, Gaddy J, Iqbal J, Guerra J, Greenberg D . Highly differentiated human airway epithelial cells: a model to study host cell-parasite interactions in pertussis. Infect Dis (Lond). 2015; 48(3):177-88. PMC: 5278880. DOI: 10.3109/23744235.2015.1100323. View

3.
Kapil P, Papin J, Wolf R, Zimmerman L, Wagner L, Merkel T . Maternal Vaccination With a Monocomponent Pertussis Toxoid Vaccine Is Sufficient to Protect Infants in a Baboon Model of Whooping Cough. J Infect Dis. 2018; 217(8):1231-1236. PMC: 6018939. DOI: 10.1093/infdis/jiy022. View

4.
Warfel J, Papin J, Wolf R, Zimmerman L, Merkel T . Maternal and neonatal vaccination protects newborn baboons from pertussis infection. J Infect Dis. 2014; 210(4):604-10. PMC: 4133576. DOI: 10.1093/infdis/jiu090. View

5.
Cherry J, Paddock C . Pathogenesis and histopathology of pertussis: implications for immunization. Expert Rev Vaccines. 2014; 13(9):1115-23. DOI: 10.1586/14760584.2014.935766. View