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Cationic gold nanoparticles elicit mitochondrial dysfunction: a multi-omics study

delete2019-03-13
delete54
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OA
AI
A
Audrey Gallud
K
Katharina Klöditz
J
Jimmy Ytterberg
N
Nataliya K. Östberg
S
Shintaro Katayama
T
Tiina Skoog
V
Vladimir Gogvadze
Y
Yu-Zen Chen
D
Ding Xue
S
Sergio Moya
J
Jaimé Ruiz
D
Didier Astruc
R
Roman A. Zubarev
J
Juha Kere
B
Bengt Fadeel *
DOI:10.1038/s41598-019-40579-6delete
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摘要

摘要

En 中文
Systems biology is increasingly being applied in nanosafety research for observing and predicting the biological perturbations inflicted by exposure to nanoparticles (NPs). In the present study, we used a combined transcriptomics and proteomics approach to assess the responses of human monocytic cells to Au-NPs of two different sizes with three different surface functional groups, i.e., alkyl ammonium bromide, alkyl sodium carboxylate, or poly(ethylene glycol) (PEG)-terminated Au-NPs. Cytotoxicity screening using THP-1 cells revealed a pronounced cytotoxicity for the ammonium-terminated Au-NPs, while no cell death was seen after exposure to the carboxylated or PEG-modified Au-NPs. Moreover, Au-NR3+ NPs, but not the Au-COOH NPs, were found to trigger dose-dependent lethality in vivo in the model organism, Caenorhabditis elegans. RNA sequencing combined with mass spectrometry-based proteomics predicted that the ammonium-modified Au-NPs elicited mitochondrial dysfunction. The latter results were validated by using an array of assays to monitor mitochondrial function. Au-NR3+ NPs were localized in mitochondria of THP-lcells. Moreover, the cationic Au-NPs triggered autophagy in macrophage-like RFP-GFP-LC3 reporter cells, and cell death was aggravated upon inhibition of autophagy. Taken together, these studies have disclosed mitochondria-dependent effects of cationic Au-NPs resulting in the rapid demise of the cells.
Keyword:
CELL-DEATH
CAENORHABDITIS-ELEGANS
PINK1/PARKIN PATHWAY
COMBINED PROTEOMICS
OXIDATIVE STRESS
PROTEIN
AUTOPHAGY
CYTOTOXICITY
IDENTIFICATION
NANOMATERIALS
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Scientific Reports 封面图
Scientific Reports
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3.9
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被引数:
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University of Colorado System 封面图
University of Colorado System
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university of colorado boulder
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CIC biomaGUNE
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Karolinska Institutet
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