Toxicity of Cerium Oxide Nanoparticles in Human Lung Cancer Cells

Токсичность наночастиц оксида церия для клеток рака легкого человека
Yinfa Ma, Xiao‐Dong Zhou, Weisheng Lin, Yue‐Wern Huang
2006-11-01

cerium oxide nanoparticleshuman lung cancer cellsoxidative stressreactive oxygen speciessulforhodamine B assay
With the fast development of nanotechnology, the nanomaterials start to cause people's attention for potential toxic effect. In this paper, the cytotoxicity and oxidative stress caused by 20-nm cerium oxide (CeO2) nanoparticles in cultured human lung cancer cells was investigated. The sulforhodamine B method was employed to assess cell viability after exposure to 3.5, 10.5, and 23.3 microg/ml of CeO2 nanoparticles for 24, 48, and 72 h. Cell viability decreased significantly as a function of nanoparticle dose and exposure time. Indicators of oxidative stress and cytotoxicity, including total reactive oxygen species, glutathione, malondialdehyde, alpha-tocopherol, and lactate dehydrogenase, were quantitatively assessed. It is concluded from the results that free radicals generated by exposure to 3.5 to 23.3 microg/ml CeO2 nanoparticles produce significant oxidative stress in the cells, as reflected by reduced glutathione and alpha-tocopherol levels; the toxic effects of CeO2 nanoparticles are dose dependent and time dependent; elevated oxidative stress increases the production of malondialdehyde and lactate dehydrogenase, which are indicators of lipid peroxidation and cell membrane damage, respectively.
1
CeO2 nanoparticles at 3.5–23.3 microg/ml generated free radicals and induced significant oxidative stress in cultured cells.
2
Exposure to 20-nm CeO2 nanoparticles significantly reduced human lung cancer cell viability in a dose- and time-dependent manner.
3
Increased oxidative stress elevated malondialdehyde and lactate dehydrogenase, consistent with lipid peroxidation and cell membrane damage.
4
Nanoparticle exposure reduced intracellular glutathione and alpha-tocopherol levels, indicating depletion of antioxidant defenses.

20-nm cerium oxide (CeO2) nanoparticles in cultured human lung cancer cells

Dose- and time-dependent cytotoxicity and oxidative stress, including effects on cell viability, reactive oxygen species, antioxidant levels, lipid peroxidation, and cell membrane damage

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2006-11-01
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Yinfa Ma
Xiao‐Dong Zhou
Weisheng Lin
Yue‐Wern Huang
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