Nanoparticles (NPs) contained in commercial products are released and enter into the aquatic ecosystem, posing serious possible risks to the environment and affecting the food chain. Therefore, investigating the potential toxicity of NPs on aquatic organisms has become an important issue. This study assessed the toxicity and trophic transfer of metal oxide NPs from marine microalgae (Cricosphaera elongata) to the larvae of the sea urchin Paracentrotus lividus. Larvae (24 h old) were fed on 2000 cellmL−1 48 h of microalgae contaminated with 5mg L−1 of several metal oxide NPs (SiO2, SnO2, CeO2, Fe3O4) for 15 days. Larval viability and development were monitored from the 4-arm stage to the 8-arm pluteus stage. A significant decrease in survival was observed in larvae fed with microalgae exposed to SiO2 and CeO2 NPs. Abnormal development, characterised by skeletal degeneration and altered rudiment growth, was observed in all larvae fed with contaminated NP algae. Our findings revealed that SiO2 and CeO2 NPs exerted a toxic effect in the trophic interaction analysed, by reducing sea urchin larval viability, and all metal oxide NPs induced toxicological effects. In conclusion, metal oxide NPs may enter the food chain and become bioavailable for marine organisms, affecting their development.

Toxicity and transfer of metal oxide nanoparticles from microalgae to sea urchin larvae / Chiara Gambardella;Lorenzo Gallus;Antonietta M. Gatti;Marco Faimali;Serena Carbone;Livia Vittori Antisari;Carla Falugi;Sara Ferrando. - In: CHEMISTRY IN ECOLOGY. - ISSN 0275-7540. - ELETTRONICO. - 30:4(2014), pp. 308-316. [10.1080/02757540.2013.873031]

Toxicity and transfer of metal oxide nanoparticles from microalgae to sea urchin larvae

CARBONE, SERENA;VITTORI ANTISARI, LIVIA;
2014

Abstract

Nanoparticles (NPs) contained in commercial products are released and enter into the aquatic ecosystem, posing serious possible risks to the environment and affecting the food chain. Therefore, investigating the potential toxicity of NPs on aquatic organisms has become an important issue. This study assessed the toxicity and trophic transfer of metal oxide NPs from marine microalgae (Cricosphaera elongata) to the larvae of the sea urchin Paracentrotus lividus. Larvae (24 h old) were fed on 2000 cellmL−1 48 h of microalgae contaminated with 5mg L−1 of several metal oxide NPs (SiO2, SnO2, CeO2, Fe3O4) for 15 days. Larval viability and development were monitored from the 4-arm stage to the 8-arm pluteus stage. A significant decrease in survival was observed in larvae fed with microalgae exposed to SiO2 and CeO2 NPs. Abnormal development, characterised by skeletal degeneration and altered rudiment growth, was observed in all larvae fed with contaminated NP algae. Our findings revealed that SiO2 and CeO2 NPs exerted a toxic effect in the trophic interaction analysed, by reducing sea urchin larval viability, and all metal oxide NPs induced toxicological effects. In conclusion, metal oxide NPs may enter the food chain and become bioavailable for marine organisms, affecting their development.
2014
Toxicity and transfer of metal oxide nanoparticles from microalgae to sea urchin larvae / Chiara Gambardella;Lorenzo Gallus;Antonietta M. Gatti;Marco Faimali;Serena Carbone;Livia Vittori Antisari;Carla Falugi;Sara Ferrando. - In: CHEMISTRY IN ECOLOGY. - ISSN 0275-7540. - ELETTRONICO. - 30:4(2014), pp. 308-316. [10.1080/02757540.2013.873031]
Chiara Gambardella;Lorenzo Gallus;Antonietta M. Gatti;Marco Faimali;Serena Carbone;Livia Vittori Antisari;Carla Falugi;Sara Ferrando
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/229478
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