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Title:
Cellular uptake, intracellular trafficking and cytotoxicity of silver nanoparticles
Date:
9/2012
Link to Journal Abstract
Abstract:
Silver nanoparticles (Ag NPs) are used in consumer products and wound dressings due to their antimicrobial properties. However, in addition to toxic effects on microbes, Ag NPs can also induce stress responses as well as cytotoxicity in mammalian cells. We observed that Ag NPs are efficiently internalized via scavenger receptor-mediated phagocytosis in murine macrophages. Confocal and electron microscopy analysis revealed that internalized Ag NPs localize in the cytoplasm. Ag NPs cause mitochondrial damage, induce apoptosis and cell death. These effects were abrogated in presence of Ag ion-reactive, thiol-containing compounds suggesting the central of Ag ions in Ag NP toxicity. Quantitative image analysis revealed that intracellular dissolution of Ag NPs occurs about 50 times faster than in water. In conclusion, we demonstrate for the first time that Ag NPs are internalized by scavenger receptors, trafficked to cytoplasm and induce toxicity by releasing Ag ions.
Non-technical Summary:
In this study, the authors evaluated the mechanism of cellular uptake, intracellular trafficking and cytotoxicity of silver nanoparticles (Ag NPs). They also investigated whether Ag ion formation, mitochondrial damage and cell death are interrelated events.
Content Emphasis
Peer Reviewed Journal Article
Exposure Or Hazard Target
Mammalian
Exposure Pathway
Other/Unspecified
Method Of Study
In Vitro
Paper Type
Hazard
Particle Type
Metal
Production Method
Engineered
Risk Exposure Group
General Population
Target Audience
Technical Research
Citation:
Toxicology Letters, 213(2): 249-259 (September 2012)
Publication:
Toxicology Letters
Author:
Singh RP, Ramarao P
Volume:
213
Number:
2
Pages:
249-259
Last updated on September 11, 2012
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This work is supported in part by the Nanoscale Science and Engineering Initiative of the National Science Foundation
under NSF Award Number EEC-0118007.
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