scholarly article | Q13442814 |
review article | Q7318358 |
P50 | author | Vincent Castranova | Q24747188 |
P2093 | author name string | Mary Gulumian | |
Ken Donaldson | |||
Paul Ja Borm | |||
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Asbestos induces activator protein-1 transactivation in transgenic mice | Q23923146 | ||
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Reactive oxygen species and silica-induced carcinogenesis | Q23923891 | ||
Augmentation of pulmonary reactions to quartz inhalation by trace amounts of iron-containing particles | Q24169684 | ||
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Combustion-derived nanoparticles: a review of their toxicology following inhalation exposure | Q24815866 | ||
Cooperativity between oxidants and tumor necrosis factor in the activation of nuclear factor (NF)-kappaB: requirement of Ras/mitogen-activated protein kinases in the activation of NF-kappaB by oxidants | Q26341684 | ||
Ambient air pollution particles and the acute exacerbation of chronic obstructive pulmonary disease | Q57115910 | ||
Persistent Depletion of I Kappa B Alpha and Interleukin-8 Expression in Human Pulmonary Epithelial Cells Exposed to Quartz Particles | Q58317017 | ||
Activation of NF-κB by PM10 Occurs via an Iron-Mediated Mechanism in the Absence of IκB Degradation | Q58317018 | ||
Increased production of plasminogen activator inhibitor in vitro by pleural leukocytes from rats intratracheally instilled with crocidolite asbestos | Q68248633 | ||
Reactive pleural inflammation caused by intratracheal instillation of killed microbes | Q70542075 | ||
TNF alpha and increased chemokine expression in rat lung after particle exposure | Q70991101 | ||
Chrysotile asbestos induces PDGF-A chain-dependent proliferation in human and rat lung fibroblasts in vitro | Q70993274 | ||
Induction of heme oxygenase in mammalian cells by mineral fibers: distinctive effect of reactive oxygen species | Q71067972 | ||
Apoptosis is observed in mesothelial cells after exposure to crocidolite asbestos | Q71184923 | ||
Mesothelial cell proliferation: a nonspecific response to lung injury associated with fibrosis | Q71612241 | ||
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The quartz hazard: a variable entity | Q77211690 | ||
DNA single strand breaks induced by asbestos fibers in human pleural mesothelial cells in vitro | Q77365863 | ||
Variation of biological responses to different respirable quartz flours determined by a vector model | Q80494162 | ||
The pathology of asbestos-associated diseases of the lungs and pleural cavities: diagnostic criteria and proposed grading schema | Q26342915 | ||
Toxic potential of materials at the nanolevel | Q28295314 | ||
The role of oxidative stress in chemical carcinogenesis | Q28379454 | ||
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Short term variations in hospital admissions and mortality and particulate air pollution | Q28769682 | ||
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Diesel exhaust inhalation causes vascular dysfunction and impaired endogenous fibrinolysis | Q29617291 | ||
Concentrated ambient air particles induce mild pulmonary inflammation in healthy human volunteers | Q29618549 | ||
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Possible mechanisms of carcinogenesis after exposure to benzene. | Q33811686 | ||
TNFalpha and MIP-2: role in particle-induced inflammation and regulation by oxidative stress | Q33864833 | ||
Quinoid redox cycling as a mechanism for sustained free radical generation by inhaled airborne particulate matter | Q34417958 | ||
Malignant lymphomas in autoimmunity and inflammation: a review of risks, risk factors, and lymphoma characteristics | Q34583460 | ||
Man-made vitreous fibres | Q35012554 | ||
Particle characteristics responsible for effects on human lung epithelial cells | Q35063627 | ||
Oxidative stress and apoptosis in metal ion-induced carcinogenesis | Q35852929 | ||
Role of cytochromes P450 in chemical toxicity and oxidative stress: studies with CYP2E1. | Q35986619 | ||
Reactive oxygen species: toxic molecules or spark of life? | Q36392238 | ||
Immunological effects of silica and asbestos. | Q36926028 | ||
Air pollution and atherothrombosis | Q36948387 | ||
Signalling, inflammation and arthritis: crossed signals: the role of interleukin (IL)-12, -17, -23 and -27 in autoimmunity. | Q37073169 | ||
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Diesel exhaust particles in lung acutely enhance experimental peripheral thrombosis | Q39643313 | ||
Oxidative stress in chemical toxicity | Q39665035 | ||
Pro-inflammatory effects of Dunkerque city air pollution particulate matter 2.5 in human epithelial lung cells (L132) in culture | Q39709450 | ||
The effects of PM10 particles and oxidative stress on macrophages and lung epithelial cells: modulating effects of calcium-signaling antagonists | Q40157350 | ||
Histone acetylation regulates epithelial IL-8 release mediated by oxidative stress from environmental particles | Q40672066 | ||
Oxidant-induced DNA damage by quartz in alveolar epithelial cells | Q40729188 | ||
PM(10)-exposed macrophages stimulate a proinflammatory response in lung epithelial cells via TNF-alpha | Q40756914 | ||
Silica-induced activation of c-Jun-NH2-terminal amino kinases, protracted expression of the activator protein-1 proto-oncogene, fra-1, and S-phase alterations are mediated via oxidative stress | Q40816023 | ||
Cytotoxicity of PM(2.5) and PM(2.5--10) ambient air pollutants assessed by the MTT and the Comet assays. | Q40842107 | ||
Lung epithelial cell (A549) interaction with unopsonized environmental particulates: quantitation of particle-specific binding and IL-8 production | Q41170436 | ||
Transforming growth factor beta expression and transformation of rat lung epithelial cells by crystalline silica (quartz). | Q41226104 | ||
Effect of long and short fibre amosite asbestos on in vitro TNF production by rat alveolar macrophages: the modifying effect of lipopolysaccharide | Q41387409 | ||
Asbestos stimulates IL-8 production from human lung epithelial cells | Q41436983 | ||
Oxidative damage in chemical teratogenesis | Q41685016 | ||
The procoagulant potential of environmental particles (PM10). | Q42120267 | ||
Production of interleukin 1 by rat pleural leucocytes in culture after intratracheal instillation of crocidolite asbestos | Q42701791 | ||
Role of free radicals in the toxicity of airborne fine particulate matter | Q43765743 | ||
Patterns of c-fos and c-jun proto-oncogene expression, apoptosis, and proliferation in rat pleural mesothelial cells exposed to erionite or asbestos fibers | Q47680000 | ||
Ambient particulate matter causes activation of the c-jun kinase/stress-activated protein kinase cascade and DNA synthesis in lung epithelial cells. | Q53429819 | ||
Iron mobilization from crocidolite asbestos greatly enhances crocidolite-dependent formation of DNA single-strand breaks in øX174 RFI DNA | Q53491419 | ||
P6195 | funding scheme | extramural research | Q124503498 |
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | pathology | Q7208 |
nanotechnology | Q11468 | ||
toxicology | Q7218 | ||
nanoparticle | Q61231 | ||
biological hazard | Q864360 | ||
toxicant | Q3072135 | ||
toxicity | Q274160 | ||
particulates | Q498957 | ||
respirable dust | Q19829512 | ||
air sampling | Q91057398 | ||
P5008 | on focus list of Wikimedia project | Wikimedia–NIOSH collaboration | Q104416361 |
P304 | page(s) | 13 | |
P577 | publication date | 2009-01-01 | |
P1433 | published in | Particle and Fibre Toxicology | Q15724404 |
P859 | sponsor | NIOSH Health Effects Laboratory Division | Q123344455 |
P1476 | title | The limits of testing particle-mediated oxidative stress in vitro in predicting diverse pathologies; relevance for testing of nanoparticles | |
P478 | volume | 6 |
Q28390698 | Activation of Proinflammatory Responses in Cells of the Airway Mucosa by Particulate Matter: Oxidant- and Non-Oxidant-Mediated Triggering Mechanisms |
Q28394487 | Application of dental nanomaterials: potential toxicity to the central nervous system |
Q28395017 | Asbestos, carbon nanotubes and the pleural mesothelium: a review of the hypothesis regarding the role of long fibre retention in the parietal pleura, inflammation and mesothelioma |
Q38123394 | Assessing nanoparticle toxicity in cell-based assays: influence of cell culture parameters and optimized models for bridging the in vitro-in vivo gap. |
Q38057778 | Engineered nanomaterial risk. Lessons learnt from completed nanotoxicology studies: potential solutions to current and future challenges |
Q28389204 | Engineered nanomaterials in food: implications for food safety and consumer health |
Q28389006 | Genetic toxicity assessment of engineered nanoparticles using a 3D in vitro skin model (EpiDerm™) |
Q37846236 | Hazard identification of particulate matter on vasomotor dysfunction and progression of atherosclerosis. |
Q48013570 | Health implications of engineered nanomaterials |
Q37823601 | Identifying the pulmonary hazard of high aspect ratio nanoparticles to enable their safety-by-design |
Q28950905 | In Vivo Toxicity Studies of Metal and Metal Oxide Nanoparticles |
Q28386315 | In vitro genotoxicity testing strategy for nanomaterials and the adaptation of current OECD guidelines |
Q48208829 | In vitro to in vivo benchmark dose comparisons to inform risk assessment of quantum dot nanomaterials. |
Q28395126 | Inflammation-related effects of diesel engine exhaust particles: studies on lung cells in vitro |
Q39030513 | Integrated proteomic and metabolomic analysis to assess the effects of pure and benzo[a]pyrene-loaded carbon black particles on energy metabolism and motility in the human endothelial cell line EA.hy926. |
Q28385263 | Metal oxide nanoparticles induce unique inflammatory footprints in the lung: important implications for nanoparticle testing |
Q37760838 | Nanoparticles: molecular targets and cell signalling |
Q28390779 | Nanotechnology in drug delivery: the need for more cell culture based studies in screening |
Q28389555 | Non-neoplastic and neoplastic pleural endpoints following fiber exposure |
Q90333676 | Oxidative Potential Versus Biological Effects: A Review on the Relevance of Cell-Free/Abiotic Assays as Predictors of Toxicity from Airborne Particulate Matter |
Q28385574 | Predictive value of in vitro assays depends on the mechanism of toxicity of metal oxide nanoparticles |
Q28389546 | Pulmonary endpoints (lung carcinomas and asbestosis) following inhalation exposure to asbestos |
Q28387613 | Quantitative Profiling of Protein S-Glutathionylation Reveals Redox-Dependent Regulation of Macrophage Function during Nanoparticle-Induced Oxidative Stress |
Q28385022 | Quantitative nanostructure-activity relationship modeling |
Q28392665 | Reactive oxygen species a double-edged sword for mesothelioma |
Q28383164 | Safety evaluation of engineered nanomaterials for health risk assessment: an experimental tiered testing approach using pristine and functionalized carbon nanotubes |
Q28393182 | Semiconductor Electronic Label-Free Assay for Predictive Toxicology |
Q26770087 | Stem Cell Tracking with Nanoparticles for Regenerative Medicine Purposes: An Overview |
Q33834939 | The effects of grafted mesenchymal stem cells labeled with iron oxide or cobalt-zinc-iron nanoparticles on the biological macromolecules of rat brain tissue extracts |
Q28397310 | Toxicity of Nanoparticles and an Overview of Current Experimental Models |
Q42243175 | Toxicity of Transition Metal Oxide Nanoparticles: Recent Insights from in vitro Studies |
Q39258640 | Visualization of custom-tailored iron oxide nanoparticles chemistry, uptake, and toxicity. |
Q42722450 | Zeta potential and solubility to toxic ions as mechanisms of lung inflammation caused by metal/metal oxide nanoparticles |
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