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1.
Sci Rep ; 7(1): 11988, 2017 09 20.
Artigo em Inglês | MEDLINE | ID: mdl-28931863

RESUMO

Immune response in the lung has to protect the huge alveolar surface against pathogens while securing the delicate lung structure. Macrophages and alveolar epithelial cells constitute the first line of defense and together orchestrate the initial steps of host defense. In this study, we analysed the influence of macrophages on type II alveolar epithelial cells during Legionella pneumophila-infection by a systems biology approach combining experimental work and mathematical modelling. We found that L. pneumophila-infected THP-1-derived macrophages provoke a pro-inflammatory activation of neighboring lung epithelial cells, but in addition render them hypo-responsive to direct infection with the same pathogen. We generated a kinetic mathematical model of macrophage activation and identified a paracrine mechanism of macrophage-secreted IL-1ß inducing a prolonged IRAK-1 degradation in lung epithelial cells. This intercellular crosstalk may help to avoid an overwhelming inflammatory response by preventing excessive local secretion of pro-inflammatory cytokines and thereby negatively regulating the recruitment of immune cells to the site of infection. This suggests an important but ambivalent immunomodulatory role of macrophages in lung infection.


Assuntos
Células Epiteliais Alveolares/imunologia , Legionella pneumophila/imunologia , Doença dos Legionários/patologia , Macrófagos/imunologia , Células A549 , Técnicas de Cocultura , Humanos , Modelos Teóricos , Biologia de Sistemas , Células THP-1
2.
Sci Rep ; 7(1): 6301, 2017 07 24.
Artigo em Inglês | MEDLINE | ID: mdl-28740179

RESUMO

Extracellular vesicles from eukaryotic cells and outer membrane vesicles (OMVs) released from gram-negative bacteria have been described as mediators of pathogen-host interaction and intercellular communication. Legionella pneumophila (L. pneumophila) is a causative agent of severe pneumonia. The differential effect of bacterial and host cell vesicles in L. pneumophila infection is unknown so far. We infected THP-1-derived or primary human macrophages with L. pneumophila and isolated supernatant vesicles by differential centrifugation. We observed an increase of exosomes in the 100 k pellet by nanoparticle tracking analysis, electron microscopy, and protein markers. This fraction additionally contained Legionella LPS, indicating also the presence of OMVs. In contrast, vesicles in the 16 k pellet, representing microparticles, decreased during infection. The 100 k vesicle fraction activated uninfected primary human alveolar epithelial cells, A549 cells, and THP-1 cells. Epithelial cell activation was reduced by exosome depletion (anti-CD63, or GW4869), or blocking of IL-1ß in the supernatant. In contrast, the response of THP-1 cells to vesicles was reduced by a TLR2-neutralizing antibody, UV-inactivation of bacteria, or - partially - RNase-treatment of vesicles. Taken together, we found that during L. pneumophila infection, neighbouring epithelial cells were predominantly activated by exosomes and cytokines, whereas myeloid cells were activated by bacterial OMVs.


Assuntos
Efeito Espectador , Exossomos/metabolismo , Vesículas Extracelulares/metabolismo , Interações Hospedeiro-Patógeno , Legionella pneumophila/patogenicidade , Doença dos Legionários/metabolismo , Monócitos/metabolismo , Células A549 , Exossomos/microbiologia , Vesículas Extracelulares/microbiologia , Humanos , Doença dos Legionários/microbiologia , Doença dos Legionários/patologia , Monócitos/microbiologia , Células THP-1
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