Anti‐inflammatory Properties of Cerium Oxide Nanoparticles
Противовоспалительные свойства наночастиц оксида церия
2009-10-03
SCID: 54.1/3dvvntx2
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cerium oxide nanoparticleschronic inflammationfree radical scavenginginducible nitric oxide synthasereactive oxygen species
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Abstract (AI)
The valence and oxygen defect properties of cerium oxide nanoparticles (nanoceria) suggest that they may act as auto-regenerative free radical scavengers. Overproduction of the free radical nitric oxide (NO) by the enzyme inducible nitric oxide synthase (iNOS) has been implicated as a critical mediator of inflammation. NO is correlated with disease activity and contributes to tissue destruction. The ability of nanoceria to scavenge free radicals, or reactive oxygen species (ROS), and inhibit inflammatory mediator production in J774A.1 murine macrophages is investigated. Cells internalize nanoceria, the treatment is nontoxic, and oxidative stress and pro-inflammatory iNOS protein expression are abated with stimulation. In vivo studies show nanoceria deposition in mouse tissues with no pathogenicity. Taken together, it is suggested that cerium oxide nanoparticles are well tolerated in mice and are incorporated into cellular tissues. Furthermore, nanoceria may have the potential to reduce ROS production in states of inflammation and therefore serve as a novel therapy for chronic inflammation.
Key Findings
1
Cerium oxide nanoparticles may function as auto-regenerative free-radical scavengers because of their valence and oxygen-defect properties.
2
In vivo, nanoceria deposit in mouse tissues without causing pathogenicity, indicating good tolerability and cellular-tissue incorporation.
3
Nanoceria abate pro-inflammatory inducible nitric oxide synthase (iNOS) protein expression in stimulated macrophages.
4
Nanoceria are internalized by J774A.1 murine macrophages without detectable toxicity and reduce oxidative stress after inflammatory stimulation.
5
Nanoceria may reduce reactive oxygen species production during inflammation and could represent a potential therapy for chronic inflammatory conditions.
Research Object
cerium oxide nanoparticles (nanoceria) in murine macrophages and mouse tissues
Research Subject
nanoceria effects on reactive oxygen species scavenging, oxidative stress, and pro-inflammatory iNOS expression during inflammation, including cellular tolerance and tissue deposition
Publication Details
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2009-10-03
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