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Ambient fine particulate matter induces apoptosis of endothelial progenitor cells through reactive oxygen species formation.

Authors :
Cui Y
Xie X
Jia F
He J
Li Z
Fu M
Hao H
Liu Y
Liu JZ
Cowan PJ
Zhu H
Sun Q
Liu Z
Source :
Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology [Cell Physiol Biochem] 2015; Vol. 35 (1), pp. 353-63. Date of Electronic Publication: 2015 Jan 12.
Publication Year :
2015

Abstract

Background/aims: Bone marrow (BM)-derived endothelial progenitor cells (EPCs) play a critical role in angiogenesis and vascular repair. Some environmental insults, like fine particulate matter (PM) exposure, significantly impair cardiovascular functions. However, the mechanisms for PM-induced adverse effects on cardiovascular system remain largely unknown. The present research was to study the detrimental effects of PM on EPCs and explore the potential mechanisms.<br />Methods: PM was intranasal-distilled into male C57BL/6 mice for one month. Flow cytometry was used to measure the number of EPCs, apoptosis level of circulating EPCs and intracellular reactive oxygen species (ROS) formation. Serum TNF-α and IL-1β were measured using ELISA. To determine the role of PM-induced ROS in EPC apoptosis, PM was co-administrated with the antioxidant N-acetylcysteine (NAC) in wild type mice or used in a triple transgenic mouse line (TG) with overexpression of antioxidant enzyme network (AON) composed of superoxide dismutase (SOD)1, SOD3, and glutathione peroxidase (Gpx-1) with decreased in vivo ROS production.<br />Results: PM treatment significantly decreased circulating EPC population, promoted apoptosis of EPCs in association with increased ROS production and serum TNF-α and IL-1β levels, which could be effectively reversed by either NAC treatment or overexpression of AON.<br />Conclusion: PM exposure significantly decreased circulating EPCs population due to increased apoptosis via ROS formation in mice.<br /> (© 2015 S. Karger AG, Basel.)

Details

Language :
English
ISSN :
1421-9778
Volume :
35
Issue :
1
Database :
MEDLINE
Journal :
Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology
Publication Type :
Academic Journal
Accession number :
25591776
Full Text :
https://doi.org/10.1159/000369701