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Low-solubility particles and a Trojan-horse type mechanism of toxicity: the case of cobalt oxide on human lung cells
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نویسنده
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ortega r. ,bresson c. ,darolles c. ,gautier c. ,roudeau s. ,perrin l. ,janin m. ,floriani m. ,aloin v. ,carmona a. ,malard v.
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منبع
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particle and fibre toxicology - 2014 - دوره : 11 - شماره : 1 - صفحه:1 -18
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چکیده
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Background: the mechanisms of toxicity of metal oxide particles towards lung cells are far from being understood. in particular,the relative contribution of intracellular particulate versus solubilized fractions is rarely considered as it is very challenging to assess,especially for low-solubility particles such as cobalt oxide (co3o4).methods: this study was possible owing to two highly sensitive,independent,analytical techniques,based on single-cell analysis,using ion beam microanalysis,and on bulk analysis of cell lysates,using mass spectrometry.results: our study shows that cobalt oxide particles,of very low solubility in the culture medium,are readily incorporated by beas-2b human lung cells through endocytosis via the clathrin-dependent pathway. they are partially solubilized at low ph within lysosomes,leading to cobalt ions release. solubilized cobalt was detected within the cytoplasm and the nucleus. as expected from these low-solubility particles,the intracellular solubilized cobalt content is small compared with the intracellular particulate cobalt content,in the parts-per-thousand range or below. however,we were able to demonstrate that this minute fraction of intracellular solubilized cobalt is responsible for the overall toxicity.conclusions: cobalt oxide particles are readily internalized by pulmonary cells via the endo-lysosomal pathway and can lead,through a trojan-horse mechanism,to intracellular release of toxic metal ions over long periods of time,involving specific toxicity. © 2014 ortega et al.; licensee biomed central ltd.
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کلیدواژه
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Cobalt oxide; Endocytosis; ICP-MS; Intracellular solubilization; Lung cells; Lysosome; Particles; PIXE; Toxicity
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آدرس
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univ. bordeaux,cenbg,umr 5797,gradignan f-33170,france,cnrs,in2p3,cenbg,umr 5797,gradignan f-33170, France, cea,den,dpc,sears,laboratoire de développement analytique nucléaire,isotopique et elémentaire,gif-sur-yvette f-91191, France, cea,dsv,ibeb,lab biochim system perturb,bagnols-sur-cèze f-30207, France, cea,den,dpc,sears,laboratoire d'analyse en soutien aux exploitants,gif-sur-yvette f-91191, France, univ. bordeaux,cenbg,umr 5797,gradignan f-33170,france,cnrs,in2p3,cenbg,umr 5797,gradignan f-33170, France, univ. bordeaux,cenbg,umr 5797,gradignan f-33170,france,cnrs,in2p3,cenbg,umr 5797,gradignan f-33170, France, cea,den,dpc,sears,laboratoire de développement analytique nucléaire,isotopique et elémentaire,gif-sur-yvette f-91191,france,univ. nîmes,lab. géochimie isotopique environnementale,nîmes f-30035, France, irsn,institut de radioprotection et sûreté nucléaire,prp-env/seris/leco,laboratoire d'ecotoxicologie des radionucléides,saint-paul-lez-durance cedex 13115, France, cea,dsv,ibeb,lab biochim system perturb,bagnols-sur-cèze f-30207, France, univ. bordeaux,cenbg,umr 5797,gradignan f-33170,france,cnrs,in2p3,cenbg,umr 5797,gradignan f-33170, France, cea,dsv,ibeb,lab biochim system perturb,bagnols-sur-cèze f-30207, France
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Authors
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