Dataset related to article "The Long Pentraxin PTX3 Controls Klebsiella Pneumoniae Severe Infection "
- Fatemeh Asgari1
- Domenico Supino2
- Raffaella Parente2
- Nadia Polentarutti2
- Matteo Stravalaci1
- Remi Porte2
- Fabio Pasqualini1
- Marialuisa Barbagallo2
- Chiara Perucchini2
- Camilla Recordati3
- Elena Magrini2
- Andrea Mariancini2
- Federica Riva3
- Alessia Giordano3
- Sadaf Davoudian1
- Thierry Roger4
- Cornelis Van't Veer5
- Sebastien Jaillon1
- Alberto Mantovani6
- Andrea Doni2
- Cecilia Garlanda1
- 1. IRCCS Humanitas Research Hospital, via Manzoni 56,20089 Rozzano (Mi) - Italy AND Humanitas University, Department of Biomedical Sciences, Via Rita Levi Montalcini 4, 20072 Pieve Emanuele – Milan, Italy
- 2. IRCCS Humanitas Research Hospital, via Manzoni 56, 20072 Rozzano (Mi) - Italy
- 3. Department of Veterinary Medicine, University of Milano, Lodi, Italy.
- 4. Infectious Diseases Service, Department of Medicine, Lausanne University Hospital and University of Lausanne, Epalinges, Switzerland.
- 5. Center of Experimental and Molecular Medicine, Academic Medical Center, Amsterdam, Netherlands.
- 6. IRCCS Humanitas Research Hospital, via Manzoni 56,20089 Rozzano (Mi) - Italy AND Humanitas University, Department of Biomedical Sciences, Via Rita Levi Montalcini 4, 20072 Pieve Emanuele – Milan, Italy AND Centre for Experimental Medicine and Rheumatology, William Harvey Research Institute, Barts and The London School of Medicine and Dentistry, Queen Mary University of London, London, United Kingdom.
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This record contains raw data related to article “The Long Pentraxin PTX3 Controls Klebsiella Pneumoniae Severe Infection"
Klebsiella pneumoniae is a common pathogen in human sepsis. The emergence of multidrug-resistant K. pneumoniae strains represents a major clinical challenge in nosocomial and community acquired infections. The long pentraxin PTX3, a key component of humoral innate immunity, is involved in resistance to selected pathogens by promoting opsonophagocytosis. We investigated the relevance of PTX3 in innate immunity against K. pneumoniae infections using Ptx3 -/- mice and mouse models of severe K. pneumoniae infections. Local and systemic PTX3 expression was induced following K. pneumoniae pulmonary infection, in association with the up-regulation of TNF-α and IL-1β. PTX3 deficiency in mice was associated with higher bacterial burden and mortality, release of pro-inflammatory cytokines as well as IL-10 in the lung and systemically. The analysis of the mechanisms responsible of PTX3-dependent control of K. pneumoniae infection revealed that PTX3 did not interact with K. pneumoniae, or promote opsonophagocytosis. The comparison of susceptibility of wild-type, Ptx3-/-, C3-/- and Ptx3-/- /C3-/- mice to the infection showed that PTX3 acted in a complement-independent manner. Lung histopathological analysis showed more severe lesions in Ptx3 -/- mice with fibrinosuppurative, necrotizing and haemorrhagic bronchopneumonia, associated with increased fibrin deposition in the lung and circulating fibrinogen consumption. These findings indicate that PTX3 contributes to the control of K. pneumoniae infection by modulating inflammatory responses and tissue damage. Thus, this study emphasizes the relevance of the role of PTX3 as regulator of inflammation and orchestrator of tissue repair in innate responses to infections
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- 34093560 (PMID)
- 10.3389/fimmu.2021.666198 (DOI)