Exposure of engineered nanoparticles to human lung epithelial cells: Influence of chemical composition and catalytic activity on oxidative stress

被引:675
作者
Limbach, Ludwig K.
Wick, Peter
Manser, Pius
Grass, Robert N.
Bruinink, Arie
Stark, Wendelin J. [1 ]
机构
[1] ETH, Inst Chem & Bioengn, Dept Chem & Appl BIosci, CH-8093 Zurich, Switzerland
[2] Swiss Fed Labs Mat Testing & Res, Empa, Lab mat Biol Interact, CH-9014 St Gallen, Switzerland
关键词
D O I
10.1021/es062629t
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The chemical and catalytic activity of nanoparticles has strongly contributed to the current tremendous interest in engineered nanomaterials and often serves as a guiding principle for the design of functional materials. Since it has most recently become evident that such active materials can enter into cells or organisms, the present study investigates the level of intracellular oxidations after exposure to iron-, cobalt-, manganese-, and titania-containing silica nanoparticles and the corresponding pure oxides in vitro. The resulting oxidative stress was quantitatively measured as the release of reactive oxygen species (ROS). The use of thoroughly characterized nanoparticles of the same morphology, comparable size, shape, and degree of agglomeration allowed separation of physical (rate of particle uptake, agglomeration, sedimentation) and chemical effects (oxidations). Three sets of control experiments elucidated the role of nanoparticles as carriers for heavy metal uptake and excluded a potential interference of the biological assay with the nanomaterial. The present results indicate that the particles could efficiently enter the cells by a Trojan-horse type mechanism which provoked an up to eight times higher oxidative stress in the case of cobalt or manganese if compared to reference cultures exposed to aqueous solutions of the same metals. A systematic investigation on iron-containing nanoparticles as used in industrial fine chemical synthesis demonstrated that the presence of catalytic activity could strongly alter the damaging action of a nanomaterial. This indicates that a proactive development of nanomaterials and their risk assessment should consider chemical and catalytic properties of nanomaterials beyond a mere focus on physical properties such as size, shape, and degree of agglomeration.
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收藏
页码:4158 / 4163
页数:6
相关论文
共 53 条
[1]   Silica-based composite and mixed-oxide nanoparticles from atmospheric pressure flame synthesis [J].
Akurati, Kranthi K. ;
Dittmann, Rainer ;
Vital, Andri ;
Klotz, Ulrich ;
Hug, Paul ;
Graule, Thomas ;
Winterer, Markus .
JOURNAL OF NANOPARTICLE RESEARCH, 2006, 8 (3-4) :379-393
[2]   Direct gas-phase epoxidation of propene with nitrous oxide over modified silica supported FeOx catalysts [J].
Ananieva, E ;
Reitzmann, A .
CHEMICAL ENGINEERING SCIENCE, 2004, 59 (22-23) :5509-5517
[3]  
BASS DA, 1983, J IMMUNOL, V130, P1910
[4]   Nature of active sites in sol-gel TiO2-SiO2 epoxidation catalysts [J].
Beck, C ;
Mallat, T ;
Bürgi, T ;
Baiker, A .
JOURNAL OF CATALYSIS, 2001, 204 (02) :428-439
[5]   In vitro cytotoxicity of oxide nanoparticles: Comparison to asbestos, silica, and the effect of particle solubility [J].
Brunner, Tobias J. ;
Wick, Peter ;
Manser, Pius ;
Spohn, Philipp ;
Grass, Robert N. ;
Limbach, Ludwig K. ;
Bruinink, Arie ;
Stark, Wendelin J. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2006, 40 (14) :4374-4381
[6]   The potential environmental impact of engineered nanomaterials [J].
Colvin, VL .
NATURE BIOTECHNOLOGY, 2003, 21 (10) :1166-1170
[7]   Recent advances in the liquid-phase syntheses of inorganic nanoparticles [J].
Cushing, BL ;
Kolesnichenko, VL ;
O'Connor, CJ .
CHEMICAL REVIEWS, 2004, 104 (09) :3893-3946
[8]   The role of free radicals in the toxic and inflammatory effects of four different ultrafine particle types [J].
Dick, CAJ ;
Brown, DM ;
Donaldson, K ;
Stone, V .
INHALATION TOXICOLOGY, 2003, 15 (01) :39-52
[9]   Ultrafine (nanometre) particle mediated lung injury [J].
Donaldson, K ;
Li, XY ;
MacNee, W .
JOURNAL OF AEROSOL SCIENCE, 1998, 29 (5-6) :553-560
[10]   The pulmonary toxicology of ultrafine particles [J].
Donaldson, K ;
Brown, D ;
Clouter, A ;
Duffin, R ;
MacNee, W ;
Renwick, L ;
Tran, L ;
Stone, V .
JOURNAL OF AEROSOL MEDICINE-DEPOSITION CLEARANCE AND EFFECTS IN THE LUNG, 2002, 15 (02) :213-220