Toxicity of iron nanoparticles towards primary cultures of human bronchial epithelial cells

被引:3
|
作者
Canivet, Ludivine [1 ]
Denayer, Franck-Olivier [1 ]
Dubot, Pierre [2 ]
Garcon, Guillaume [1 ]
Lo Guidice, J. -M. [1 ]
机构
[1] Univ Lille, CHU Lille, Inst Pasteur Lille, ULR 4483,IMPECS,IMPact Environm Chim Sante, F-59000 Lille, France
[2] CNRS, Inst Chim & Mat, UMR 7182, Metaux & Ceram Microstruct Controlee,Paris Est, Thiais, France
关键词
gene expression profiling; human bronchial epithelial cells; inflammation; iron nanoparticles; oxidative stress; physicochemical characterization; HUMAN LUNG-CELLS; LONG-TERM EXPOSURE; PARTICULATE MATTER; AIR-POLLUTION; OXIDATIVE STRESS; OXIDE NANOPARTICLES; ULTRAFINE PARTICLES; RESPIRATORY-TRACT; FE2O3; PARTICLES; IN-VITRO;
D O I
10.1002/jat.4033
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Air pollution is a public health issue and the toxicity of ambient particulate matter (PM) is well-recognized. Although it does not mostly contribute to the total mass of PM, increasing evidence indicates that the ultrafine fraction has generally a greater toxicity than the others do. A better knowledge of the underlying mechanisms involved in the pathological disorders related to nanoparticles (NPs) remains essential. Hence, the goal of this study was to determine better whether the exposure to a relatively low dose of well-characterized iron-rich NPs (Fe-NPs) might alter some critical toxicological endpoints in a relevant primary culture model of human bronchial epithelial cells (HBECs). We sought to use Fe-NPs representative of those frequently found in the industrial smokes of metallurgical industries. After having noticed the effective internalization of Fe-NPs, oxidative, inflammatory, DNA repair, and apoptotic endpoints were investigated within HBECs, mainly through transcriptional screening. Taken together, these results revealed that, despite it only produced relatively low levels of reactive oxygen species without any significant oxidative damage, low-dose Fe-NPs quickly significantly deregulated the transcription of some target genes closely involved in the proinflammatory response. Although this inflammatory process seemed to stay under control over time in case of this acute scenario of exposure, the future study of its evolution after a scenario of repeated exposure could be very interesting to evaluate the toxicity of Fe-NPs better.
引用
收藏
页码:203 / 215
页数:13
相关论文
共 50 条
  • [21] Transcriptomic Analysis of Human Primary Bronchial Epithelial Cells after Chloropicrin Treatment
    Pesonen, Maija
    Storvik, Markus
    Kokkola, Tarja
    Rysa, Jaana
    Vahakangas, Kirsi
    Pasanen, Markku
    CHEMICAL RESEARCH IN TOXICOLOGY, 2015, 28 (10) : 1926 - 1935
  • [22] Effects of Size-Fractionated Particulate Matter on Cellular Oxidant Radical Generation in Human Bronchial Epithelial BEAS-2B Cells
    Guan, Longfei
    Rui, Wei
    Bai, Ru
    Zhang, Wei
    Zhang, Fang
    Ding, Wenjun
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2016, 13 (05)
  • [23] NiO nanoparticles induce apoptosis through repressing SIRT1 in human bronchial epithelial cells
    Duan, Wei-Xia
    He, Min-Di
    Mao, Lin
    Qian, Feng-Hua
    Li, Yu-Ming
    Pi, Hui-Feng
    Liu, Chuan
    Chen, Chun-Hai
    Lu, Yong-Hui
    Cao, Zheng-Wang
    Zhang, Lei
    Yu, Zheng-Ping
    Zhou, Zhou
    TOXICOLOGY AND APPLIED PHARMACOLOGY, 2015, 286 (02) : 80 - 91
  • [24] Toxicity of zinc oxide (ZnO) nanoparticles on human bronchial epithelial cells (BEAS-2B) is accentuated by oxidative stress
    Heng, Boon Chin
    Zhao, Xinxin
    Xiong, Sijing
    Ng, Kee Woei
    Boey, Freddy Yin-Chiang
    Loo, Joachim Say-Chye
    FOOD AND CHEMICAL TOXICOLOGY, 2010, 48 (06) : 1762 - 1766
  • [25] Calcium ions rescue human lung epithelial cells from the toxicity of zinc oxide nanoparticles
    Hanagata, Nobutaka
    Morita, Hiromi
    JOURNAL OF TOXICOLOGICAL SCIENCES, 2015, 40 (05) : 625 - 635
  • [26] Air pollution-derived PM2.5 impairs mitochondrial function in healthy and chronic obstructive pulmonary diseased human bronchial epithelial cells
    Leclercq, B.
    Kluza, J.
    Antherieu, S.
    Sotty, J.
    Alleman, L. Y.
    Perdrix, E.
    Loyens, A.
    Coddeville, P.
    Lo Guidice, J-M
    Marchetti, P.
    Garcon, G.
    ENVIRONMENTAL POLLUTION, 2018, 243 : 1434 - 1449
  • [27] Importance of agglomeration state and exposure conditions for uptake and pro-inflammatory responses to amorphous silica nanoparticles in bronchial epithelial cells
    Gualtieri, Maurizio
    Skuland, Tonje
    Iversen, Tore-Geir
    Lag, Marit
    Schwarze, Per
    Bilanicova, Dagmar
    Pojana, Giulio
    Refsnes, Magne
    NANOTOXICOLOGY, 2012, 6 (07) : 700 - 712
  • [28] Oxidative stress-mediated epidermal growth factor receptor activation regulates PM2.5-induced over-secretion of pro-inflammatory mediators from human bronchial epithelial cells
    Wang, Gui
    Zhang, Guofu
    Gao, Xia
    Zhang, Yange
    Fan, Wei
    Jiang, Jing
    An, Zhen
    Li, Juan
    Song, Jie
    Wu, Weidong
    BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS, 2020, 1864 (10):
  • [29] Biomechanical Response of Lung Epithelial Cells to Iron Oxide and Titanium Dioxide Nanoparticles
    Oliveira, Vinicius Rosa
    Uriarte, Juan Jose
    Falcones, Bryan
    Jorba, Ignasi
    Zin, Walter Araujo
    Farre, Ramon
    Nayajas, Daniel
    Almendros, Isaac
    FRONTIERS IN PHYSIOLOGY, 2019, 10
  • [30] Effects of hydrogen peroxide on MAPK activation, IL-8 production and cell viability in primary cultures of human bronchial epithelial cells
    Pelaia, G
    Cuda, G
    Vatrella, A
    Gallelli, L
    Fratto, D
    Gioffrè, V
    D'Agostino, B
    Caputi, M
    Maselli, R
    Rossi, F
    Costanzo, FS
    Marsi, SA
    JOURNAL OF CELLULAR BIOCHEMISTRY, 2004, 93 (01) : 142 - 152