Endocytosis, oxidative stress and IL-8 expression in human lung epithelial cells upon treatment with fine and ultrafine TiO2:: Role of the specific surface area and of surface methylation of the particles

被引:272
作者
Singh, Seema
Shi, Tingming
Duffin, Rodger
Albrecht, Catrin
van Berlo, Damien
Hoehr, Doris
Fubini, Bice
Martra, Gianmario
Fenoglio, Ivana
Borm, Paul J. A.
Schins, Roel P. F. [1 ]
机构
[1] Heinrich Heine Univ Dusselford gGmbH, IUF, Dusseldorf, Germany
[2] Univ Turin, Dipartimento Chim IFM, Interdept Ctr G Scasetti Studies Asbestos & Tox P, Turin, Italy
[3] Univ Turin, NIS Ctr Excellence Nanostruct Interfaces & Surfac, Turin, Italy
[4] Hogesch Zuyd, Heerlen, Netherlands
[5] Energy & Resources Inst, TERI, New Delhi, India
[6] Hubei Provincial Ctr Dis Control & Prevent, Wuhan, Hubei, Peoples R China
[7] Univ Edinburgh, Queens Med Res Inst, CIR, Edinburgh EH8 9YL, Midlothian, Scotland
关键词
titanium dioxide; oxidative stress; ultrafine particles; nanoparticles; inflammation; lung epithelial cells; endocytosis;
D O I
10.1016/j.taap.2007.05.001
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Inhaled ultrafine particles show considerably stronger pulmonary inflammatory effects when tested at equal mass dose with their fine counterparts. However. the responsible mechanisms are not yet fully understood. We investigated the role of particle size and surface chemistry in initiating pro-inflammatory effects in vitro in A549 human lung epithelial cells on treatment with different model TiO2 particles. Two samples of TiO2, i.e. fine (40-300 nm) and ultrafine (20-80 nm) were tested in their native forms as well as upon surface methylation, as was confirmed by Fourier transformed infrared spectroscopy. Radical generation during cell treatment was determined by electron paramagnetic resonance with 5,5-ditnethyl-1-pyrroline-N-oxide or 4-hydroxy-2,2,6,6-tetramethylpiperidine-1-oxyl. Interieukin-8 mRNA expression/release was determined by RT-PCR and ELISA, whereas particle uptake was evaluated by transmission electron microscopy. TiO2 particles were rapidly taken up by the cells, generally as membrane bound aggregates and large intracellular aggregates in vesicles, vacuoles and lamellar bodies. Aggregate size tended to be smaller for the Ultrafine samples and was also smaller for methylated fine TiO2 when compared to non-methylated fine TiO2. No particles were observed inside nuclei or any other vital organelle. Both ultrafine TiO2 samples but not their fine counterparts elicited significantly stronger oxidant generation and IL-8 release, despite their aggregation state and irrespective of their methylation. The present data indicate that ultrafine TiO2, even as aggregates/agglomerates, can trigger inflaminatory responses that appear to be driven by their large surface area. Furthermore, our results indicate that these effects result from oxidants generated during particle-cell interactions through a yet to be elucidated mechanism(s). (C) 2007 Elsevier Inc. All rights reserved.
引用
收藏
页码:141 / 151
页数:11
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