4.7 Article

Fate and effects of graphene oxide alone and with sorbed benzo(a)pyrene in mussels Mytilus galloprovincialis

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 452, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhazmat.2023.131280

Keywords

Graphene family nanomaterials; Polycyclic aromatic hydrocarbons; Trojan Horse effect; Bivalve mollusks; Biological responses

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Graphene oxide (GO) is gaining attention for its unique properties and increasing use in consumer products. There is a concern that GO will end up in oceans and potentially affect marine organisms. This study evaluated the hazards of GO and benzo(a)pyrene (BaP) in marine mussels after exposure, finding that GO acts as a carrier for BaP but may also offer some protection against BaP accumulation.
Graphene oxide (GO) has gained a great scientific and economic interest due to its unique properties. As incorporation of GO in consumer products is rising, it is expected that GO will end up in oceans. Due to its high surface to volume ratio, GO can adsorb persistent organic pollutants (POPs), such as benzo(a)pyrene (BaP), and act as carrier of POPs, increasing their bioavailability to marine organisms. Thus, uptake and effects of GO in marine biota represent a major concern. This work aimed to assess the potential hazards of GO, alone or with sorbed BaP (GO+BaP), and BaP alone in marine mussels after 7 days of exposure. GO was detected through Raman spectroscopy in the lumen of the digestive tract and in feces of mussels exposed to GO and GO+BaP while BaP was bioaccumulated in mussels exposed to GO+BaP, but especially in those exposed to BaP. Overall, GO acted as a carrier of BaP to mussels but GO appeared to protect mussels towards BaP accumulation. Some effects observed in mussels exposed to GO+BaP were due to BaP carried onto GO nanoplatelets. Enhanced toxicity of GO+BaP with respect to GO and/or BaP or to controls were identified for other biological responses, demon-strating the complexity of interactions between GO and BaP.

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