Antioxidant defense disruption by polycyclic aromatic hydrocarbons-coated onto Fe2O3 particles in human lung cells (A549)

被引:33
作者
Garçon, G
Zerimech, F
Hannothiaux, MH
Gosset, P
Martin, A
Marez, T
Shirali, P
机构
[1] Univ Lille, Fac Med Pole Rech, Lab Med Travail & Risques Profess, GIP,CERESTE, F-59045 Lille, France
[2] Univ Littoral Cote dOpale, F-59375 Dunkerque, France
[3] Hop Huriez, Biochim Lab, F-59045 Lille, France
[4] Fac Sci Pharmaceut & Biol, F-59006 Lille, France
[5] Ho St Vincent, Anat Pathol Lab, F-59020 Lille, France
关键词
A549; cells; Fe2O3; benzo(a)pyrene; pyrene; oxidative stress;
D O I
10.1016/S0300-483X(01)00461-9
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
We addressed the hypothesis that in vitro short-term exposure to hematite (Fe2O3) and polycyclic aromatic hydrocarbons (PAHs) is more deleterious by virtue of their combinations being able to cause higher oxidative stress conditions in human lung cells (A549), than either chemical alone. Lipid peroxidation (malondialdehyde; MDA), antioxidant enzyme activities (superoxide dismutase; SOD, glutathione peroxidase; GPx, glutathione reductase; GR), glutathione status (reduced glutathione; GSH, oxidized glutathione; GSSG) and alpha -tocopherol (alpha -Toc) consumption were studied in cells exposed to Fe2O3, benzo(a)pyrene (B(a)P) or pyrene, alone or in association. We found that increases in GSSG/GSH (P < 0.01) and in alpha -Toc consumption (P < 0.01) counteracted Fe2O3-induced lipid peroxidation. Exposure to B(a)P did not induce oxidative injury because of the involvement of non-enzymatic antioxidants in cell homeostasis. Pyrene did not induce free radicals (FR)-induced injury. Exposure to PAHs-coated onto Fe2O3 particles damaged both the enzymatic (i.e. increases in SOD and GR activities; P < 0.01) and the non-enzymatic (i.e. increases in GSSG/GSH; P < 0.001, alpha -Toc consumption; P < 0.01) antioxidant defenses, thereby allowing lipid peroxidation (i.e. MDA production; P < 0.05). Exposure to PAHs-coated onto Fe2O3 particles induced not only higher lipid peroxidation (i.e. MDA production; P < 0.05) but also higher antioxidant alterations (i.e. SOD and GR activities; P < 0.05, GSSH/GSH; P < 0.01 or P < 0.05) than either chemical alone. Several mechanisms could account for this result, enhanced uptake of Fe2O3 and/or greater availability of PAHs. Hence, our results indicate that exposure to PAHs-coated onto Fe2O3 particles is more deleterious in lungs than either chemical alone. (C) 2001 Elsevier Science Ireland Ltd. All rights reserved.
引用
收藏
页码:129 / 137
页数:9
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