VCAM-1-mediated neutrophil infiltration exacerbates ambient fine particle-induced lung injury. (1st March 2019)
- Record Type:
- Journal Article
- Title:
- VCAM-1-mediated neutrophil infiltration exacerbates ambient fine particle-induced lung injury. (1st March 2019)
- Main Title:
- VCAM-1-mediated neutrophil infiltration exacerbates ambient fine particle-induced lung injury
- Authors:
- Cui, Anfeng
Xiang, Meng
Xu, Ming
Lu, Peng
Wang, Shun
Zou, Yajuan
Qiao, Ke
Jin, Chengyu
Li, Yijun
Lu, Meng
Chen, Alex. F.
Chen, Sifeng - Abstract:
- Graphical abstract: Fine ambient particle matter (PM2.5), a component of air pollution, is linked to inflammatory lung injury. PM2.5-induced diffuse intra-alveolar edema in the lungs is accompanied by polymorphonuclear leukocyte (PMN) activation and infiltration, as well as endothelial cell (EC) injury and VCAM-1 expression. Activated-PMNs and injured ECs exacerbate particle-induced lung injury. Through VCAM-1 upregulation, PM2.5 increases the permeability of endothelial and epithelial monolayers in vitro, and promotes PMN adhesion, chemotaxis, and migration across the monolayer. Neutropenia or soluble VCAM-1 inhibits PM2.5-induced lung injury. VCAM-1-mediated PMN infiltration is essential for a detrimental cycle of PM2.5-induced inflammation and lung injury. Highlights: Short-term exposure to fine particulate matter (PM2.5) increases PMN/WBC ratio in human. PM2.5 is deposited in alveolar space and endothelial cells, resulting in lung injury. VCAM-1-mediated PMN infiltration was essential for a detrimental cycle of PM2.5-induced inflammation and lung injury. PM2.5 increased VCAM-1 expression and epithelial/endothelial monolayer permeability Neutropenia or soluble VCAM-1 inhibited PM2.5-induced lung injury. Abstract: Background: Fine ambient particle matter (PM2.5) induces inflammatory lung injury; however, whether intratracheal administration of PM2.5 increases pulmonary polymorphonuclear leukocyte (PMN) infiltration, the mechanism of infiltration, and if these cellsGraphical abstract: Fine ambient particle matter (PM2.5), a component of air pollution, is linked to inflammatory lung injury. PM2.5-induced diffuse intra-alveolar edema in the lungs is accompanied by polymorphonuclear leukocyte (PMN) activation and infiltration, as well as endothelial cell (EC) injury and VCAM-1 expression. Activated-PMNs and injured ECs exacerbate particle-induced lung injury. Through VCAM-1 upregulation, PM2.5 increases the permeability of endothelial and epithelial monolayers in vitro, and promotes PMN adhesion, chemotaxis, and migration across the monolayer. Neutropenia or soluble VCAM-1 inhibits PM2.5-induced lung injury. VCAM-1-mediated PMN infiltration is essential for a detrimental cycle of PM2.5-induced inflammation and lung injury. Highlights: Short-term exposure to fine particulate matter (PM2.5) increases PMN/WBC ratio in human. PM2.5 is deposited in alveolar space and endothelial cells, resulting in lung injury. VCAM-1-mediated PMN infiltration was essential for a detrimental cycle of PM2.5-induced inflammation and lung injury. PM2.5 increased VCAM-1 expression and epithelial/endothelial monolayer permeability Neutropenia or soluble VCAM-1 inhibited PM2.5-induced lung injury. Abstract: Background: Fine ambient particle matter (PM2.5) induces inflammatory lung injury; however, whether intratracheal administration of PM2.5 increases pulmonary polymorphonuclear leukocyte (PMN) infiltration, the mechanism of infiltration, and if these cells exacerbate PM2.5-induced lung injury are unknown. Methods: Using 32, 704 subjects, the association between blood PMNs and ambient PM2.5 levels on the previous day was retrospectively analyzed. Neutropenia was achieved by injecting mice with PMN-specific antibodies. Inhibition of PMN infiltration was achieved by pretreating PMNs with soluble vascular cell adhesion molecule-1 (sVCAM-1). The effects of PMNs on PM2.5-induced lung injury and endothelial dysfunction were observed. Result: Short-term PM2.5 (> 75 μg/m 3 air) exposure increased the PMN/white blood cell ratio and the PMN count in human peripheral blood observed during routine examination. A significant number of PM2.5-treated PMNs was able to bind sVCAM-1. In mice, intratracheally-instilled PM2.5 deposited in the alveolar space and endothelial cells, which caused significant lung edema, morphological disorder, increased permeability of the endothelial-alveolar epithelial barrier, and PMN infiltration with increased VCAM-1 expression. Depletion of circulatory PMNs inhibited these adverse effects. Replenishment of untreated PMNs, but not those pretreated with soluble VCAM-1, restored lung injury. In vitro, PM2.5 increased VCAM-1 expression and endothelial and epithelial monolayer permeability, and promoted PMN adhesion to, chemotaxis toward, and migration across these monolayers. PMNs, but not those pretreated with soluble VCAM-1, exacerbated these effects. Conclusion: VCAM-1-mediated PMN infiltration was essential for a detrimental cycle of PM2.5-induced inflammation and lung injury. Results suggest that drugs that inhibit PMN function might prevent acute deterioration of chronic pulmonary and cardiovascular diseases triggered by PM2.5. … (more)
- Is Part Of:
- Toxicology letters. Volume 302(2019)
- Journal:
- Toxicology letters
- Issue:
- Volume 302(2019)
- Issue Display:
- Volume 302, Issue 2019 (2019)
- Year:
- 2019
- Volume:
- 302
- Issue:
- 2019
- Issue Sort Value:
- 2019-0302-2019-0000
- Page Start:
- 60
- Page End:
- 74
- Publication Date:
- 2019-03-01
- Subjects:
- PM particle matter -- PM2.5 fine ambient particle matter -- PMN polymorphonuclear leukocyte -- VCAM-1 vascular cell adhesion molecule-1 -- sVCAM-1 soluble VCAM-1 -- COPD chronic obstructive pulmonary disease -- WBCs white blood cells -- PBS phosphate-buffered saline -- HUVECs human umbilical vein endothelial cells -- FITC fluorescein isothiocyanate -- BSA bovine serum albumin -- BALF bronchoalveolar lavage fluid -- DMEM Dulbecco's modified eagle medium -- MPO myeloperoxidase -- IL-1β interleukin 1β -- IL- 2 interleukin 2 -- IL- 4 interleukin 4 -- IL- 6 interleukin 6 -- IL- 10 interleukin 10 -- MCP-1 monocyte chemotactic protein 1 -- GM/CSF granulocyte-macrophage colony-stimulating factor -- TNF-α tumor necrosis factor α -- TGF-β transforming growth factor β
Fine ambient particle matter -- Lung injury -- Polymorphonuclear leukocyte -- Vascular cell adhesion molecule-1
Toxicology -- Periodicals
363.179 - Journal URLs:
- http://www.sciencedirect.com/science/journal/03784274 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.toxlet.2018.11.002 ↗
- Languages:
- English
- ISSNs:
- 0378-4274
- Deposit Type:
- Legaldeposit
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