Comparative iron oxide nanoparticle cellular dosimetry and response in mice by the inhalation and liquid cell culture exposure routes

被引:41
作者
Teeguarden, Justin G. [1 ]
Mikheev, Vladimir B. [2 ]
Minard, Kevin R. [1 ]
Forsythe, William C. [2 ]
Wang, Wei [3 ]
Sharma, Gaurav [2 ]
Karin, Norman [4 ]
Tilton, Susan C. [1 ]
Waters, Katrina M. [1 ]
Asgharian, Bahman [5 ]
Price, Owen R. [5 ]
Pounds, Joel G. [1 ]
Thrall, Brian D. [1 ]
机构
[1] Pacific NW Natl Lab, Richland, WA 99352 USA
[2] Battelle Mem Inst, Columbus, OH 43201 USA
[3] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA
[4] Roswell Pk Canc Inst, Buffalo, NY 14263 USA
[5] Appl Res Associates, Raleigh, NC 27615 USA
关键词
Magnetic particle detection; Nano-aerosol; In vivo testing; Lung deposition; Nanoparticle; Dosimetry; Extrapolation; IN-VITRO; MAGNETIC NANOPARTICLES; TOXICITY; VIVO; FUNCTIONALIZATION; NANOMATERIALS; MANAGEMENT; DEPOSITION; PARTICLES;
D O I
10.1186/s12989-014-0046-4
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Background: Toxicity testing the rapidly growing number of nanomaterials requires large scale use of in vitro systems under the presumption that these systems are sufficiently predictive or descriptive of responses in in vivo systems for effective use in hazard ranking. We hypothesized that improved relationships between in vitro and in vivo models of experimental toxicology for nanomaterials would result from placing response data in vitro and in vivo on the same dose scale, the amount of material associated with cells. Methods: Balb/c mice were exposed nose-only to an aerosol (68.6 nm CMD, 19.9 mg/m(3), 4 hours) generated from of 12.8 nm superparamagnetic iron oxide particles (SPIO). Target cell doses were calculated, histological evaluations conducted, and biomarkers of response were identified by global transcriptomics. Representative murine epithelial and macrophage cell types were exposed in vitro to the same material in liquid suspension for four hours and levels of nanoparticle regulated cytokine transcripts identified in vivo were quantified as a function of measured nanoparticle cellular dose. Results: Target tissue doses of 0.009-0.4 mu g SPIO/cm(2) in lung led to an inflammatory response in the alveolar region characterized by interstitial inflammation and macrophage infiltration. In vitro, higher target tissue doses of similar to 1.2-4 mu g SPIO/cm(2) of cells were required to induce transcriptional regulation of markers of inflammation, CXCL2 & CCL3, in C10 lung epithelial cells. Estimated in vivo macrophage SPIO nanoparticle doses ranged from 1-100 pg/cell, and induction of inflammatory markers was observed in vitro in macrophages at doses of 8-35 pg/cell. Conclusions: Application of target tissue dosimetry revealed good correspondence between target cell doses triggering inflammatory processes in vitro and in vivo in the alveolar macrophage population, but not in the epithelial cells of the alveolar region. These findings demonstrate the potential for target tissue dosimetry to enable the more quantitative comparison of in vitro and in vivo systems and advance their use for hazard assessment and extrapolation to humans. The mildly inflammogentic cellular doses experienced by mice were similar to those calculated for humans exposed to the same material at the existing permissible exposure limit of 10 mg/m(3) iron oxide (as Fe).
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页数:18
相关论文
共 37 条
[1]  
[Anonymous], 2004, Royal Society and the Royal Academy of Engineering, P111
[2]  
Asgharian B, 2014, INHAL TOXICOL
[3]  
Balashazy I, J APPL PHYSL
[4]   Soluble iron modulates iron oxide particle-induced inflammatory responses via prostaglandin E2 synthesis: In vitro and in vivo studies [J].
Beck-Speier, Ingrid ;
Kreyling, Wolfgang G. ;
Maier, Konrad L. ;
Dayal, Niru ;
Schladweiler, Mette C. ;
Mayer, Paula ;
Semmler-Behnke, Manuela ;
Kodavanti, Urmila P. .
PARTICLE AND FIBRE TOXICOLOGY, 2009, 6
[5]   Functionalisation of magnetic nanoparticles for applications in biomedicine [J].
Berry, CC ;
Curtis, ASG .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2003, 36 (13) :R198-R206
[6]   BIOKINETIC MODELING AND IN VITRO-IN VIVO EXTRAPOLATIONS [J].
Blaauboer, Bas J. .
JOURNAL OF TOXICOLOGY AND ENVIRONMENTAL HEALTH-PART B-CRITICAL REVIEWS, 2010, 13 (2-4) :242-252
[7]   MEASUREMENT OF RESPIRATORY PATTERNS IN RODENTS USING WHOLE-BODY PLETHYSMOGRAPHY AND A PNEUMOTACHOGRAPH [J].
COGGINS, CRE ;
DUCHOSAL, F ;
MUSY, C ;
VENTRONE, R .
LABORATORY ANIMALS, 1981, 15 (02) :137-140
[8]   DAVID: Database for annotation, visualization, and integrated discovery [J].
Dennis, G ;
Sherman, BT ;
Hosack, DA ;
Yang, J ;
Gao, W ;
Lane, HC ;
Lempicki, RA .
GENOME BIOLOGY, 2003, 4 (09)
[9]  
Gad S.C, 2009, GEN APPL SYSTEMS TOX
[10]   ISDD: A computational model of particle sedimentation, diffusion and target cell dosimetry for in vitro toxicity studies [J].
Hinderliter, Paul M. ;
Minard, Kevin R. ;
Orr, Galya ;
Chrisler, William B. ;
Thrall, Brian D. ;
Pounds, Joel G. ;
Teeguarden, Justin G. .
PARTICLE AND FIBRE TOXICOLOGY, 2010, 7