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Review of the Neutrophil Response to Bordetella Pertussis Infection

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Journal Pathog Dis
Date 2015 Oct 4
PMID 26432818
Citations 16
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Abstract

The nature and timing of the neutrophil response to infection with Bordetella pertussis is influenced by multiple virulence factors expressed by the bacterium. After inoculation of the host airway, the recruitment of neutrophils signaled by B. pertussis lipooligosaccharide (LOS) is suppressed by pertussis toxin (PTX). Over the next week, the combined activities of PTX, LOS and adenylate cyclase toxin (ACT) result in production of cytokines that generate an IL-17 response, promoting neutrophil recruitment which peaks at 10-14 days after inoculation in mice. Arriving at the site of infection, neutrophils encounter the powerful local inhibitory activity of ACT, in conjunction with filamentous hemagglutinin. With the help of antibodies, neutrophils contribute to clearance of B. pertussis, but only after 28-35 days in a naïve mouse. Studies of the lasting, antigen-specific IL-17 response to infection in mice and baboons has led to progress in vaccine development and understanding of pathogenesis. Questions remain about the mediators that coordinate neutrophil recruitment and the mechanisms by which neutrophils overcome B. pertussis virulence factors.

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References
1.
Relman D, Tuomanen E, Falkow S, Golenbock D, Saukkonen K, Wright S . Recognition of a bacterial adhesion by an integrin: macrophage CR3 (alpha M beta 2, CD11b/CD18) binds filamentous hemagglutinin of Bordetella pertussis. Cell. 1990; 61(7):1375-82. DOI: 10.1016/0092-8674(90)90701-f. View

2.
Saukkonen K, Cabellos C, Burroughs M, Prasad S, Tuomanen E . Integrin-mediated localization of Bordetella pertussis within macrophages: role in pulmonary colonization. J Exp Med. 1991; 173(5):1143-9. PMC: 2118842. DOI: 10.1084/jem.173.5.1143. View

3.
Mills K, Barnard A, Watkins J, Redhead K . Cell-mediated immunity to Bordetella pertussis: role of Th1 cells in bacterial clearance in a murine respiratory infection model. Infect Immun. 1993; 61(2):399-410. PMC: 302743. DOI: 10.1128/iai.61.2.399-410.1993. View

4.
Zhang X, Morrison D . Pertussis toxin-sensitive factor differentially regulates lipopolysaccharide-induced tumor necrosis factor-alpha and nitric oxide production in mouse peritoneal macrophages. J Immunol. 1993; 150(3):1011-8. View

5.
Zhou M, Todd 3rd R, van de Winkel J, Petty H . Cocapping of the leukoadhesin molecules complement receptor type 3 and lymphocyte function-associated antigen-1 with Fc gamma receptor III on human neutrophils. Possible role of lectin-like interactions. J Immunol. 1993; 150(7):3030-41. View