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Recruitment and training of alveolar macrophages after pneumococcal pneumonia
Emad I. Arafa, Anukul T. Shenoy, Kimberly A. Barker, Neelou S. Etesami, Ian M.C. Martin, Carolina Lyon De Ana, Elim Na, Christine V. Odom, Wesley N. Goltry, Filiz T. Korkmaz, Alicia K. Wooten, Anna C. Belkina, Antoine Guillon, E. Camilla Forsberg, Matthew R. Jones, Lee J. Quinton, Joseph P. Mizgerd
Emad I. Arafa, Anukul T. Shenoy, Kimberly A. Barker, Neelou S. Etesami, Ian M.C. Martin, Carolina Lyon De Ana, Elim Na, Christine V. Odom, Wesley N. Goltry, Filiz T. Korkmaz, Alicia K. Wooten, Anna C. Belkina, Antoine Guillon, E. Camilla Forsberg, Matthew R. Jones, Lee J. Quinton, Joseph P. Mizgerd
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Research Article Immunology Pulmonology

Recruitment and training of alveolar macrophages after pneumococcal pneumonia

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Abstract

Recovery from pneumococcal pneumonia remodels the pool of alveolar macrophages so that they exhibit new surface marker profiles, transcriptomes, metabolomes, and responses to infection. Mechanisms mediating alveolar macrophage phenotypes after pneumococcal pneumonia have not been delineated. IFN-γ and its receptor on alveolar macrophages were essential for certain, but not all, aspects of the remodeled alveolar macrophage phenotype. IFN-γ was produced by CD4+ T cells plus other cells, and CD4+ cell depletion did not prevent alveolar macrophage remodeling. In mice infected or recovering from pneumococcus, monocytes were recruited to the lungs, and the monocyte-derived macrophages developed characteristics of alveolar macrophages. CCR2 mediated the early monocyte recruitment but was not essential to the development of the remodeled alveolar macrophage phenotype. Lineage tracing demonstrated that recovery from pneumococcal pneumonias converted the pool of alveolar macrophages from being primarily of embryonic origin to being primarily of adult hematopoietic stem cell origin. Alveolar macrophages of either origin demonstrated similar remodeled phenotypes, suggesting that ontogeny did not dictate phenotype. Our data reveal that the remodeled alveolar macrophage phenotype in lungs recovered from pneumococcal pneumonia results from a combination of new recruitment plus training of both the original cells and the new recruits.

Authors

Emad I. Arafa, Anukul T. Shenoy, Kimberly A. Barker, Neelou S. Etesami, Ian M.C. Martin, Carolina Lyon De Ana, Elim Na, Christine V. Odom, Wesley N. Goltry, Filiz T. Korkmaz, Alicia K. Wooten, Anna C. Belkina, Antoine Guillon, E. Camilla Forsberg, Matthew R. Jones, Lee J. Quinton, Joseph P. Mizgerd

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Figure 5

Roles for IFN-γ in remodeling of AM.

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Roles for IFN-γ in remodeling of AM.
Wild type (WT) C57BL/6 or IFN-γ–/– ...
Wild type (WT) C57BL/6 or IFN-γ–/– mice were i.t. challenged with Sp19F or saline directed to the left lung twice, referred to as experienced (Exp’d) or Naive, respectively. After 4–6 weeks (to allow resolution of inflammation), the left lung lobes of these mice were immunophenotyped. n = 7–10 mice per group. Values are expressed as mean ± SEM. AM were identified as CD11c+SiglecF+CD64+ cells. Numbers were calculated from the frequency of total measured by FlowJo software. Median fluorescent intensity (MFI) of Siglec F and of MHC-II were calculated on AM from each mouse. One-way ANOVA with Tukey’s multiple-comparison test was used to examine significance. (A–D) Lung CD4+ resident memory T (TRM) cells were identified as extravascular CD4+CD69+CD11a+CD44+CD62L– live cells, and numbers were calculated from the frequency of total gated events measured by FlowJo software. Kruskal-Wallis with Dunn’s multiple-comparison test was used to examine significance.

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