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izvor podataka: crosbi

Gold and silver nanoparticles effects to the earthworm Eisenia fetida - the importance of tissue over soil concentrations (CROSBI ID 259686)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Bourdineaud, Jean-Paul ; Štambuk, Anamaria ; Šrut, Maja ; Radić Brkanac, Sandra ; Ivanković, Dušica ; Lisjak, Damir ; Sauerborn Klobučar, Roberta ; Dragun, Zrinka ; Bačić, Niko ; Klobučar, Goran Gold and silver nanoparticles effects to the earthworm Eisenia fetida - the importance of tissue over soil concentrations // Drug and chemical toxicology, 44 (2021), 1; 21-29. doi: 10.1080/01480545.2019.1567757

Podaci o odgovornosti

Bourdineaud, Jean-Paul ; Štambuk, Anamaria ; Šrut, Maja ; Radić Brkanac, Sandra ; Ivanković, Dušica ; Lisjak, Damir ; Sauerborn Klobučar, Roberta ; Dragun, Zrinka ; Bačić, Niko ; Klobučar, Goran

engleski

Gold and silver nanoparticles effects to the earthworm Eisenia fetida - the importance of tissue over soil concentrations

To address and to compare the respective impact of gold and silver nanoparticles (Au and Ag NPs) in soil invertebrate, the earthworm Eisenia fetida was exposed to soil containing 2, 10 and 50 mg/kg of Au and Ag in both nanoparticulate and ionic forms for 10 days. Both metal NPs were 2 to 15-times less bioavailable than their ionic forms, and displayed similar transfer coefficients from soil to earthworm tissues. Both metal NPs triggered the onset of an oxidative stress as illustrated by increased glutathione S- transferase levels, decreased catalase levels, and increased malondialdehyde concentrations. Protein carbonylation distinguished the nanoparticular from the ionic forms as its increase was observed only after exposure to the highest concentration of both metal NPs. Au and Ag NPs triggered DNA modifications even at the lowest concentration, and both repressed the expression of genes involved in the general defense and stress response at high concentrations as did their ionic counterparts. Despite the fact that both metal NPs were less bioavailable than their ionic forms, at equivalent concentrations accumulated within earthworms tissues they exerted equal or higher toxic potential than their ionic counterparts.

nanoparticles ; silver ; gold ; catalase ; glutathione reductase ; DNA damage ; gene expression ; metallothioneins

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Podaci o izdanju

44 (1)

2021.

21-29

objavljeno

0148-0545

1525-6014

10.1080/01480545.2019.1567757

Povezanost rada

Biologija

Poveznice
Indeksiranost