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Published on: February 23, 2014
Exposure to welding fumes and lower airway infection with Streptococcus pneumoniae
Reetika Suri1, Jimstan Periselneris2, Sophie Lanone3
1Blizard Institute, Queen Mary University of London, London, United Kingdom.
Background:
Welders are at increased risk of pneumococcal pneumonia. The mechanism for this association is not known. The capacity of pneumococci to adhere to and infect lower airway cells is mediated by host-expressed platelet-activating factor receptor (PAFR).
Objective:
We sought to assess the effect of mild steel welding fumes (MS-WF) on PAFR-dependent pneumococcal adhesion and infection to human airway cells in vitro and on pneumococcal airway infection in a mouse model.
Methods:
The oxidative potential of MS-WF was assessed by their capacity to reduce antioxidants in vitro. Pneumococcal adhesion and infection of A549, BEAS-2B, and primary human bronchial airway cells were assessed by means of quantitative bacterial culture and expressed as colony-forming units (CFU). After intranasal instillation of MS-WF, mice were infected with Streptococcus pneumoniae, and bronchoalveolar lavage fluid (BALF) and lung CFU values were determined. PAFR protein levels were assessed by using immunofluorescence and immunohistochemistry, and PAFR mRNA expression was assessed by using quantitative PCR. PAFR was blocked by CV-3988, and oxidative stress was attenuated by N-acetylcysteine.
Results:
MS-WF exhibited high oxidative potential. In A549 and BEAS-2B cells MS-WF increased pneumococcal adhesion and infection and PAFR protein expression. Both CV-3988 and N-acetylcysteine reduced MS-WF-stimulated pneumococcal adhesion and infection of airway cells. MS-WF increased mouse lung PAFR mRNA expression and increased BALF and lung pneumococcal CFU values. In MS-WF-exposed mice CV-3988 reduced BALF CFU values.
Conclusions:
Hypersusceptibility of welders to pneumococcal pneumonia is in part mediated by the capacity of welding fumes to increase PAFR-dependent pneumococcal adhesion and infection of lower airway cells.
Insights
Welding fumes increase the risk of pneumococcal pneumonia by enhancing bacterial adhesion and infection in the lungs. This effect is mediated by the platelet-activating factor receptor (PAFR) pathway, suggesting a target for prevention.
Area of Science:
- Environmental Health
- Infectious Disease Epidemiology
- Occupational Medicine
Background:
- Welders face elevated risks of pneumococcal pneumonia, but the underlying mechanisms remain unclear.
- Pneumococcal adherence and infection in the lower airways are facilitated by the platelet-activating factor receptor (PAFR).
Purpose of the Study:
- To investigate the impact of mild steel welding fumes (MS-WF) on PAFR-dependent pneumococcal adhesion and infection in human airway cells and a mouse model.
Main Methods:
- Assessed MS-WF oxidative potential and its effect on antioxidant reduction in vitro.
- Quantified pneumococcal adhesion and infection in human airway cells (A549, BEAS-2B, primary bronchial) and in mouse lungs.
- Measured PAFR expression (protein and mRNA) and utilized PAFR blockade (CV-3988) and antioxidant treatment (N-acetylcysteine).
Main Results:
- MS-WF demonstrated high oxidative potential and increased pneumococcal adhesion and infection in human airway cells.
- MS-WF exposure elevated PAFR expression in mouse lungs and increased bacterial load in bronchoalveolar lavage fluid and lung tissue.
- Both PAFR blockade and antioxidant treatment mitigated MS-WF-induced pneumococcal adhesion and infection.
Conclusions:
- The increased susceptibility of welders to pneumococcal pneumonia is partly attributed to welding fumes enhancing PAFR-dependent pneumococcal adhesion and infection in lower airway cells.
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