Interactions between Magnetic Nanowires and Living Cells: Uptake, Toxicity, and Degradation

被引:103
作者
Safi, Malak [1 ]
Yan, Minhao [1 ]
Guedeau-Boudeville, Marie-Alice [1 ]
Conjeaud, Helene [1 ]
Garnier-Thibaud, Virginie [2 ]
Boggetto, Nicole [3 ]
Baeza-Squiban, Armelle [4 ]
Niedergang, Florence [5 ,6 ,7 ]
Averbeck, Dietrich [8 ]
Berret, Jean-Francois [1 ]
机构
[1] Univ Paris 07, CNRS, UMR 7057, F-75205 Paris, France
[2] Univ P&M Curie, IFR 83, Serv Microscopie Elect, Inst Biol Integrat, F-75252 Paris, France
[3] Univ Paris 07, ImagoSeine Bioimaging Core Facil, Inst Jacques Monod, F-75013 Paris, France
[4] Univ Paris 07, Unit Funct & Adapt Biol BFA, CNRS EAC 4413, Lab Mol & Cellular Responses Xenobiot, F-75013 Paris, France
[5] Inst Cochin, INSERM, U1016, Paris, France
[6] CNRS, UMR 8104, Paris, France
[7] Univ Paris 05, Paris, France
[8] Ctr Univ Paris Sud, Inst Curie, Sect Rech, F-91405 Orsay, France
关键词
magnetic nanoparticles; nanowires; assembled nanostructures; cytotoxicity; internalization; IRON-OXIDE NANOPARTICLES; CARBON NANOTUBES; NICKEL NANOWIRES; CYTOTOXICITY; INTERNALIZATION; DYNAMICS; SILICA; GROWTH;
D O I
10.1021/nn201121e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We report on the uptake, toxicity, and degradation of magnetic nanowires by NIH/3T3 mouse fibroblasts. Magnetic nanowires of diameters 200 nm and lengths between 1 and 40 mu m are fabricated by controlled assembly of iron oxide (gamma-Fe2O3) nanoparticles. Using optical and electron microscopy, we show that after 24 h incubation the wires are internalized by the cells and located either in membrane-bound compartments or dispersed In the cytosol. Using fluorescence microscopy, the membrane-bound compartments were identified as late endosomal/lysosomal endosomes labeled with lysosomal associated membrane protein (Lamp1). Toxicity assays evaluating the mitochondrial activity, cell proliferation, and production of reactive oxygen species show that the wires do not display acute short-term (<100 h) toxicity toward the cells. Interestingly, the cells are able to degrade the wires and to transform them into smaller aggregates, even in short time periods (days). This degradation is likely to occur as a consequence of the internal structure of the wires, which is that of a noncovalently bound aggregate. We anticipate that this degradation should prevent long-term asbestos-like toxicity effects related to high aspect ratio morphologies and that these wires represent a promising class of nanomaterials for cell manipulation and microrheology.
引用
收藏
页码:5354 / 5364
页数:11
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