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Measuring Carbon Content in Airway Macrophages Exposed to Carbon-Containing Particulate Matters
Published on: July 12, 2024
Milano summer particulate matter (PM10) triggers lung inflammation and extra pulmonary adverse events in mice
Francesca Farina1, Giulio Sancini, Cristina Battaglia
1Department of Health Science, POLARIS Research Center, University of Milano-Bicocca, Monza, Italy.
Abstract:
Recent studies have suggested a link between particulate matter (PM) exposure and increased mortality and morbidity associated with pulmonary and cardiovascular diseases; accumulating evidences point to a new role for air pollution in CNS diseases. The purpose of our study is to investigate PM10sum effects on lungs and extra pulmonary tissues. Milano PM10sum has been intratracheally instilled into BALB/c mice. Broncho Alveolar Lavage fluid, lung parenchyma, heart and brain were screened for markers of inflammation (cell counts, cytokines, ET-1, HO-1, MPO, iNOS), cytotoxicity (LDH, ALP, Hsp70, Caspase8-p18, Caspase3-p17) for a putative pro-carcinogenic marker (Cyp1B1) and for TLR4 pathway activation. Brain was also investigated for CD68, TNF-α, GFAP. In blood, cell counts were performed while plasma was screened for endothelial activation (sP-selectin, ET-1) and for inflammation markers (TNF-α, MIP-2, IL-1β, MPO). Genes up-regulation (HMOX1, Cyp1B1, IL-1β, MIP-2, MPO) and miR-21 have been investigated in lungs and blood. Inflammation in the respiratory tract of PM10sum-treated mice has been confirmed in BALf and lung parenchyma by increased PMNs percentage, increased ET-1, MPO and cytokines levels. A systemic spreading of lung inflammation in PM10sum-treated mice has been related to the increased blood total cell count and neutrophils percentage, as well as to increased blood MPO. The blood-endothelium interface activation has been confirmed by significant increases of plasma ET-1 and sP-selectin. Furthermore PM10sum induced heart endothelial activation and PAHs metabolism, proved by increased ET-1 and Cyp1B1 levels. Moreover, PM10sum causes an increase in brain HO-1 and ET-1. These results state the translocation of inflammation mediators, ultrafine particles, LPS, metals associated to PM10sum, from lungs to bloodstream, thus triggering a systemic reaction, mainly involving heart and brain. Our results provided additional insight into the toxicity of PM10sum and could facilitate shedding light on mechanisms underlying the development of urban air pollution related diseases.
Insights
Exposure to particulate matter (PM10sum) causes lung inflammation that spreads systemically, affecting the heart and brain. This study reveals how air pollution contributes to various diseases through inflammatory pathways.
Area of Science:
- Environmental Health
- Toxicology
- Pulmonary Medicine
Background:
- Particulate matter (PM) exposure is linked to pulmonary and cardiovascular diseases.
- Emerging evidence suggests air pollution plays a role in central nervous system (CNS) diseases.
Purpose of the Study:
- To investigate the effects of PM10sum on lungs and extra-pulmonary tissues.
- To explore the systemic inflammatory response triggered by PM10sum exposure.
Main Methods:
- Intratracheal instillation of Milano PM10sum into BALB/c mice.
- Analysis of bronchoalveolar lavage fluid, lung parenchyma, heart, brain, and blood for inflammation, cytotoxicity, and gene expression markers.
- Investigation of Toll-like receptor 4 (TLR4) pathway activation.
Main Results:
- PM10sum induced lung inflammation, characterized by increased neutrophils, ET-1, MPO, and cytokines.
- Systemic inflammation was observed, with increased blood cell counts and MPO levels.
- Endothelial activation in blood and heart, along with increased Cyp1B1 in the heart, indicated PAHs metabolism.
- Elevated HO-1 and ET-1 in the brain suggest neuroinflammation.
Conclusions:
- PM10sum translocates from lungs to the bloodstream, initiating a systemic inflammatory reaction affecting the heart and brain.
- These findings provide insights into the toxicity of PM10sum and mechanisms of air pollution-related diseases.
- The study highlights the widespread impact of particulate matter beyond the respiratory system.
