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   Free radical scavenging and formation by multi-walled carbon nanotubes in cell free conditions and in human bronchial epithelial cells  
   
نویسنده nymark p. ,alstrup j.k. ,suhonen s. ,kembouche y. ,vippola m. ,kleinjans j. ,catalán j. ,norppa h. ,van delft j. ,briedé j.j.
منبع particle and fibre toxicology - 2014 - دوره : 11 - شماره : 1
چکیده    Background: certain multi-walled carbon nanotubes (mwcnts) have been shown to elicit asbestos-like toxicological effects. to reduce needs for risk assessment it has been suggested that the physicochemical characteristics or reactivity of nanomaterials could be used to predict their hazard. fibre-shape and ability to generate reactive oxygen species (ros) are important indicators of high hazard materials. asbestos is a known ros generator,while mwcnts may either produce or scavenge ros. however,certain biomolecules,such as albumin - used as dispersants in nanomaterial preparation for toxicological testing in vivo and in vitro - may reduce the surface reactivity of nanomaterials.methods: here,we investigated the effect of bovine serum albumin (bsa) and cell culture medium with and without beas 2b cells on radical formation/scavenging by five mwcnts,printex 90 carbon black,crocidolite asbestos,and glass wool,using electron spin resonance (esr) spectroscopy and linked this to cytotoxic effects measured by trypan blue exclusion assay. in addition,the materials were characterized in the exposure medium (e.g. for hydrodynamic size-distribution and sedimentation rate).results: the test materials induced highly variable cytotoxic effects which could generally be related to the abundance and characteristics of agglomerates/aggregates and to the rate of sedimentation. all carbon nanomaterials were found to scavenge hydroxyl radicals (•oh) in at least one of the solutions tested. the effect of bsa was different among the materials. two types of long,needle-like mwcnts (average diameter >74 and 64.2 nm,average length 5.7 and 4.0 μm,respectively) induced,in addition to a scavenging effect,a dose-dependent formation of a unique,yet unidentified radical in both absence and presence of cells,which also coincided with cytotoxicity.conclusions: culture medium and bsa affects scavenging/production of •oh by mwcnts,printex 90 carbon black,asbestos and glass-wool. an unidentified radical is generated by two long,needle-like mwcnts and these two cnts were more cytotoxic than the other cnts tested,suggesting that this radical could be related to the adverse effects of mwcnts. © 2014 nymark et al.; licensee biomed central ltd.
کلیدواژه Asbestos; Electron Spin Resonance; Free radicals; Glass wool; Human bronchial epithelial cells; Multi-walled carbon nanotubes
آدرس department of toxicogenomics,maastricht university,maastricht, Netherlands, danish centre for nanosafety,national research centre for the working environment,copenhagen, Denmark, nanosafety research centre and systems toxicology,finnish institute of occupational health,helsinki, Finland, danish centre for nanosafety,national research centre for the working environment,copenhagen, Denmark, nanosafety research centre and systems toxicology,finnish institute of occupational health,helsinki,finland,department of materials science,tampere university of technology,tampere, Finland, department of toxicogenomics,maastricht university,maastricht, Netherlands, nanosafety research centre and systems toxicology,finnish institute of occupational health,helsinki,finland,department of anatomy,embriology and genetics,university of zaragoza,zaragoza, Spain, nanosafety research centre and systems toxicology,finnish institute of occupational health,helsinki, Finland, department of toxicogenomics,maastricht university,maastricht, Netherlands, department of toxicogenomics,maastricht university,maastricht, Netherlands
 
     
   
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