Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
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Genotoxicity and carcinogenic potential of carbon nanomaterialsImmunomodulation of nanoparticles in nanomedicine applicationsPVP formulated fullerene (C60) increases Rho-kinase dependent vascular tissue contractility in pregnant Sprague Dawley ratsSteering carbon nanotubes to scavenger receptor recognition by nanotube surface chemistry modification partially alleviates NFκB activation and reduces its immunotoxicityInduction of Inflammatory Responses by Carbon Fullerene (C60) in Cultured RAW264.7 Cells and in Intraperitoneally Injected MiceBiological toxicity and inflammatory response of semi-single-walled carbon nanotubesRespiratory toxicity and immunotoxicity evaluations of microparticle and nanoparticle C60 fullerene aggregates in mice and rats following nose-only inhalation for 13 weeksBiological responses to diesel exhaust particles (DEPs) depend on the physicochemical properties of the DEPsComparison of Cellular Uptake and Inflammatory Response via Toll-Like Receptor 4 to Lipopolysaccharide and Titanium Dioxide NanoparticlesEffect of aerosol particles generated by ultrasonic humidifiers on the lung in mouse.Doxorubicin induces cytotoxicity through upregulation of pERK-dependent ATF3.Amorphous nanosilica induce endocytosis-dependent ROS generation and DNA damage in human keratinocytes.Effect of surface properties of silica nanoparticles on their cytotoxicity and cellular distribution in murine macrophages.Nanoparticle-induced pulmonary toxicity.Toxicity of pristine versus functionalized fullerenes: mechanisms of cell damage and the role of oxidative stress.Effect of carbon nanoparticles on renal epithelial cell structure, barrier function, and protein expression.Acute and chronic nephrotoxicity of platinum nanoparticles in mice.Tailoring buckybowls for fullerene recognition. A dispersion-corrected DFT study.Analysis of pulmonary surfactant in rat lungs after inhalation of nanomaterials: Fullerenes, nickel oxide and multi-walled carbon nanotubes.Pathological features of rat lung following inhalation and intratracheal instillation of C(60) fullerene.Resveratrol prevents nanoparticles-induced inflammation and oxidative stress via downregulation of PKC-α and NADPH oxidase in lung epithelial A549 cells.Immunotoxicity of nanoparticles: a computational study suggests that CNTs and C60 fullerenes might be recognized as pathogens by Toll-like receptors
P2860
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P2860
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
description
2010 թուականի Ապրիլին հրատարակուած գիտական յօդուած
@hyw
2010 թվականի ապրիլին հրատարակված գիտական հոդված
@hy
artículu científicu espublizáu en 2010
@ast
im April 2010 veröffentlichter wissenschaftlicher Artikel
@de
scientific journal article
@en
vedecký článok (publikovaný 2010/04/15)
@sk
vědecký článek publikovaný v roce 2010
@cs
wetenschappelijk artikel (gepubliceerd op 2010/04/15)
@nl
наукова стаття, опублікована у квітні 2010
@uk
مقالة علمية (نشرت في 15-4-2010)
@ar
name
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@ast
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@en
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@nl
type
label
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@ast
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@en
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@nl
prefLabel
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@ast
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@en
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@nl
P2093
P1476
Carbon fullerenes (C60s) can induce inflammatory responses in the lung of mice
@en
P2093
Eun-Jung Park
Jongheop Yi
Kwangsik Park
Kyunghee Choi
Younghun Kim
P304
P356
10.1016/J.TAAP.2009.12.036
P577
2010-04-15T00:00:00Z