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Highly electroconductive multiwalled carbon nanotubes as potentially useful tools for modulating calcium balancing in biological environments.

Academic Article
Publication Date:
2012
abstract:
Aiming to explore the mechanisms modulating cell-carbon nanotube interactions, we investigated whether Ca(2+) ion balancing between intra- and extracellular environments could be affected by multiwalled carbon nanotubes (MWCNTs). We analyzed the effects induced by two different kinds of MWCNTs (as prepared and annealed at 2400°C) on the intracellular Ca(2+) ion levels in rat electrically sensitive cells and on the intercellular junction integrity of rat adenocarcinoma colon cells and platelet aggregation ability, which depend on the Ca(2+) concentration in the medium. MWCNTs, purified by annealing and more electroconductive as compared to nonannealed MWCNTs, affected Ca(2+) ion balancing between extra- and intracellular environments and induced changes on Ca(2+) ion-dependent cellular junctions and platelet aggregation, behaving as the calcium chelator ethylene glycol tetraacetic acid. This could be due to the sorption of cationic Ca(2+) ions on CNTs surface because of the excess of negatively charged electrons on the aromatic units formed on MWCNTs after annealing.
Iris type:
01.01 Articolo in rivista
List of contributors:
Fiorito, Silvana; Serafino, Annalucia; Lisi, Antonella; Grimaldi, Settimio; Ledda, Mario; Andreola, Federica
Authors of the University:
ANDREOLA FEDERICA
LEDDA MARIO
LISI ANTONELLA
SERAFINO ANNALUCIA
Handle:
https://iris.cnr.it/handle/20.500.14243/77385
Published in:
NANOMEDICINE (LOND., PRINT)
Journal
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