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Nanografi Advanced Materials
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Nanografi Advanced Materials
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honeywell international
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Macklin Inc
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Ocean Nano Tech LLC
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Brinkmann Instruments
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Bruker Corporation
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AECOM International Development
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Journal: Particle and Fibre Toxicology
Article Title: Inhalation toxicity, pulmonary clearance, and biotransformation of ferric oxide nanoparticles in rats
doi: 10.1186/s12989-026-00659-8
Figure Lengend Snippet: Body weight and feed consumption of male rats during the 4-week repeated inhalation exposure to Fe 2 O 3 nanoparticles and the 4-week recovery period. The measured aerosol concentrations in the low-, medium-, and high-concentration groups were 0.56, 1.63, and 4.92 mg/m 3 , respectively. A Body weight and ( B ) feed consumption data of test groups during the 4-week exposure and 4-week recovery periods. Data are presented as mean ± SEM and n = 5
Article Snippet:
Techniques: Aerosol, Concentration Assay
Journal: Particle and Fibre Toxicology
Article Title: Inhalation toxicity, pulmonary clearance, and biotransformation of ferric oxide nanoparticles in rats
doi: 10.1186/s12989-026-00659-8
Figure Lengend Snippet: Lung clearance pattern of Fe 2 O 3 nanoparticles during the recovery period following 28-day repeated inhalation exposure. The ( A ) levels (µg) and ( B ) retention percentage (%) of total Fe (particulates + ions) derived from Fe 2 O 3 in the right lung lobes. The ( C ) levels (µg) and ( D ) retention percentage (%) of particulate-forms Fe derived from Fe 2 O 3 in the right lung lobes. The ( E ) levels (µg) and ( F ) retention percentage (%) of ionized Fe derived from Fe 2 O 3 in the right lung lobes. Data are presented as mean ± SEM ( n = 4 per group)
Article Snippet:
Techniques: Derivative Assay
Journal: Particle and Fibre Toxicology
Article Title: Inhalation toxicity, pulmonary clearance, and biotransformation of ferric oxide nanoparticles in rats
doi: 10.1186/s12989-026-00659-8
Figure Lengend Snippet: Distribution pattern of Fe 2 O 3 in extrapulmonary organs during the recovery period after 28-day repeated inhalation exposure. The data shown are from the high-concentration group (4.92 mg/m 3 ). Organ Fe levels were expressed separately as particulates (Fe 2 O 3 particulates), ionic counterparts (ionic Fe), and their combined values, given as micrograms Fe per gram dried organ weight. Fe concentrations in the ( A ) liver, ( B ) spleen, and ( C ) LALN showed an accumulating trend, whereas those in the ( D ) kidneys and ( E ) brain remained below the microgram range without clear accumulation. Data are presented as mean ± SEM ( n = 5 per group)
Article Snippet:
Techniques: Concentration Assay
Journal: Particle and Fibre Toxicology
Article Title: Inhalation toxicity, pulmonary clearance, and biotransformation of ferric oxide nanoparticles in rats
doi: 10.1186/s12989-026-00659-8
Figure Lengend Snippet: Representative tissue sections stained for iron at days 1, 7, and 28 following inhalation exposure to Fe 2 O 3 nanoparticles in rats. Only the high-concentration group (4.92 mg/m 3 ) was displayed to show the time-course distribution. A – D Lung sections from ( A ) vehicle control, ( B ) day 1, ( C ) day 7, and ( D ) day 28 of the recovery period. E – H LALN sections from ( E ) vehicle control, ( F ) day 1, ( G ) day 7, and ( H ) day 28 of the recovery period. I – L Spleen sections from ( I ) vehicle control, ( J ) day 1, ( K ) day 7, and ( L ) day 28 of the recovery period. The blue-stained signals (arrows) denote ferric iron deposition. Scale bar: 25 μm
Article Snippet:
Techniques: Staining, Concentration Assay, Control
Journal: Particle and Fibre Toxicology
Article Title: Inhalation toxicity, pulmonary clearance, and biotransformation of ferric oxide nanoparticles in rats
doi: 10.1186/s12989-026-00659-8
Figure Lengend Snippet: TEM images of particulates from lung tissues collected using the enzymatic tissue digestion method. A – C Representative TEM images of particles collected from rat lungs at ( A ) day 1, ( B ) day 7, and ( C ) day 28 post-exposure to a high concentration of Fe 2 O 3 (4.92 mg/m 3 ). Red crosshairs indicate the EDS-analyzed regions. D – F EDS spectra corresponding to the selected areas in panels A – C , respectively
Article Snippet:
Techniques: Concentration Assay