Literature DB >> 23427069

Silver nanoparticle exposure attenuates the viability of rat cerebellum granule cells through apoptosis coupled to oxidative stress.

Nuoya Yin1, Qian Liu, Jiyan Liu, Bin He, Lin Cui, Zhuona Li, Zhaojun Yun, Guangbo Qu, Sijin Liu, Qunfang Zhou, Guibin Jiang.   

Abstract

The impact of silver nanoparticles (AgNPs) on the central nervous system is a topic with mounting interest and concern and the facts remain elusive. In the current study, the neurotoxicity of commercial AgNPs to rat cerebellum granule cells (CGCs) and the corresponding molecular mechanism are closely investigated. It is demonstrated that AgNPs induce significant cellular toxicity to CGCs in a dose-dependent manner without damaging the cell membrane. Flow cytometry analysis with the Annexin V/propidium iodide (PI) staining indicates that the apoptotic proportion of CGCs upon treatment with AgNPs is greatly increased compared to the negative control. Moreover, the activity of caspase-3 is largely elevated in AgNP-treated cells compared to the negative control. AgNPs are demonstrated to induce oxidative stress, reflected by the massive generation of reactive oxygen species (ROS), the depletion of antioxidant glutathione (GSH), and the increase of intracellular calcium. Histological examination suggests that AgNPs provoke destruction of the cerebellum granular layer in rats with concomitant activation of caspase-3, in parallel to the neurotoxicity of AgNPs observed in vitro. Taken together, it is demonstrated for the first time that AgNPs substantially impair the survival of primary neuronal cells through apoptosis coupled to oxidative stress, depending on the caspase activation-mediated signaling.
Copyright © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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Year:  2013        PMID: 23427069     DOI: 10.1002/smll.201202732

Source DB:  PubMed          Journal:  Small        ISSN: 1613-6810            Impact factor:   13.281


  19 in total

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6.  Biocompatibility of very small superparamagnetic iron oxide nanoparticles in murine organotypic hippocampal slice cultures and the role of microglia.

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7.  Silver nanoparticles induce tight junction disruption and astrocyte neurotoxicity in a rat blood-brain barrier primary triple coculture model.

Authors:  Liming Xu; Mo Dan; Anliang Shao; Xiang Cheng; Cuiping Zhang; Robert A Yokel; Taro Takemura; Nobutaka Hanagata; Masami Niwa; Daisuke Watanabe
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8.  Silver nanoparticle protein corona composition in cell culture media.

Authors:  Jonathan H Shannahan; Xianyin Lai; Pu Chun Ke; Ramakrishna Podila; Jared M Brown; Frank A Witzmann
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Review 9.  When neurons encounter nanoobjects: spotlight on calcium signalling.

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Review 10.  Silver Nanoparticle-Mediated Cellular Responses in Various Cell Lines: An in Vitro Model.

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Journal:  Int J Mol Sci       Date:  2016-09-22       Impact factor: 5.923

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