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Age-dependent Natural Killer Cell and Interferon γ Deficits Contribute to Severe Pertussis in Infant Mice

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Journal J Leukoc Biol
Date 2024 Jan 29
PMID 38285898
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Abstract

Many respiratory infections are selectively injurious to infants, yet the etiology of age-associated susceptibility is unknown. One such bacterial pathogen is Bordetella pertussis. In adult mice, innate interferon γ (IFN-γ) is produced by natural killer (NK) cells and restricts infection to the respiratory tract. In contrast, infant pertussis resembles disease in NK cell- and IFN-γ-deficient adult mice that experience disseminated lethal infection. We hypothesized that infants exhibit age-associated deficits in NK cell frequency, maturation, and responsiveness to B. pertussis, associated with low IFN-γ levels. To delineate mechanisms behind age-dependent susceptibility, we compared infant and adult mouse models of infection. Infection in infant mice resulted in impaired upregulation of IFN-γ and substantial bacterial dissemination. B. pertussis-infected infant mice displayed fewer pulmonary NK cells than adult mice. Furthermore, the NK cells in the infant mouse lungs had an immature phenotype, and the infant lung showed no upregulation of the IFN-γ-inducing cytokine IL-12p70. Adoptive transfer of adult NK cells into infants, or treatment with exogenous IFN-γ, significantly reduced bacterial dissemination. These data indicate that the lack of NK cell-produced IFN-γ significantly contributes to infant fulminant pertussis and could be the basis for other pathogen-induced, age-dependent respiratory diseases.

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References
1.
Belderbos M, van Bleek G, Levy O, Blanken M, Houben M, Schuijff L . Skewed pattern of Toll-like receptor 4-mediated cytokine production in human neonatal blood: low LPS-induced IL-12p70 and high IL-10 persist throughout the first month of life. Clin Immunol. 2009; 133(2):228-37. PMC: 2892115. DOI: 10.1016/j.clim.2009.07.003. View

2.
Ross P, Sutton C, Higgins S, Allen A, Walsh K, Misiak A . Relative contribution of Th1 and Th17 cells in adaptive immunity to Bordetella pertussis: towards the rational design of an improved acellular pertussis vaccine. PLoS Pathog. 2013; 9(4):e1003264. PMC: 3617212. DOI: 10.1371/journal.ppat.1003264. View

3.
Andreasen C, Carbonetti N . Pertussis toxin inhibits early chemokine production to delay neutrophil recruitment in response to Bordetella pertussis respiratory tract infection in mice. Infect Immun. 2008; 76(11):5139-48. PMC: 2573337. DOI: 10.1128/IAI.00895-08. View

4.
Takeda K, Oshima H, Hayakawa Y, Akiba H, Atsuta M, Kobata T . CD27-mediated activation of murine NK cells. J Immunol. 2000; 164(4):1741-5. DOI: 10.4049/jimmunol.164.4.1741. View

5.
Yu J, Khodadadi H, Malik A, Davidson B, da Silva Lopes Salles E, Bhatia J . Innate Immunity of Neonates and Infants. Front Immunol. 2018; 9:1759. PMC: 6077196. DOI: 10.3389/fimmu.2018.01759. View