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Quantitative flow cytometric evaluation of oxidative stress and mitochondrial impairment in raw 264.7 macrophages after exposure to pristine, acid functionalized, or annealed carbon nanotubes

Articolo
Data di Pubblicazione:
2020
Abstract:
Conventional nanotoxicological assays are subjected to various interferences with nanoparticles and especially carbon nanotubes. A multiparametric flow cytometry (FCM) methodology was developed here as an alternative to quantify oxidative stress, mitochondrial impairment, and later cytotoxic and genotoxic events. The experiments were conducted on RAW264.7 macrophages, exposed for 90 min or 24 h-exposure with three types of multiwalled carbon nanotubes (MWCNTs): pristine (Nanocyl™ CNT), acid functionalized (CNTf), or annealed treatment (CNTa). An original combination of reactive oxygen species (ROS) probes allowed the simultaneous quantifications of broad-spectrum ROS, superoxide anion (O•−2), and hydroxyl radical (•OH). All MWCNTs types induced a slight increase of broad ROS levels regardless of earlier antioxidant catalase activity. CNTf strongly stimulated the O•−2 production. The •OH production was downregulated for all MWCNTs due to their scavenging capacity. The latter was quantified in a cell-free system by electron paramagnetic resonance spectroscopy (EPR). Further FCM-based assessment revealed early biological damages with a mitochondrial membrane potential collapse, followed by late cytotoxicity with chromatin decondensation. The combined evaluation by FCM analysis and cell-free techniques led to a better understanding of the impacts of MWCNTs surface treatments on the oxidative stress and related biological response.
Tipologia CRIS:
03A-Articolo su Rivista
Keywords:
Acid functionalization; Annealing treatment; Carbon nanotubes; Chromatin decondensation; Cytotoxicity; Flow cytometry and spin trapping in-cell free system; Mitochondrial membrane potential collapse; Oxidative stress; Scavenging capacity
Elenco autori:
Sabido O.; Figarol A.; Klein J.-P.; Bin V.; Forest V.; Pourchez J.; Fubini B.; Cottier M.; Tomatis M.; Boudard D.
Autori di Ateneo:
TOMATIS Maura
Link alla scheda completa:
https://iris.unito.it/handle/2318/1795305
Link al Full Text:
https://iris.unito.it/retrieve/handle/2318/1795305/777784/Sabido_2020_Nanomaterials.pdf
Pubblicato in:
NANOMATERIALS
Journal
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