Effects of three different nanoparticles on bioaccumulation, oxidative stress, osmoregulatory, and immune responses of Carcinus aestuarii

2019 
AbstractIn this study, the toxicity of CuO (40 nm), α-Al2O3 (40 nm), and α-Fe2O3 (20–40 nm) nanoparticles was comparatively investigated on Carcinus aestuarii. Crabs were semi-statically exposed to 1 mg/L of each for 14 days and their accumulation and distribution in tissue and hemolymph, potential oxidative stress mechanism, total hemocyte counts and types, and the osmoregulatory and ionoregulatory responses were determined. The tissue distribution of CuO nanoparticles was hepatopancreas > hemolymph ≥ gill >  muscle, for α-Fe2O3 gill > hepatopancreas > muscle >  hemolymph, and for α-Al2O3 gill > muscle ≥ hemolymph >  hepatopancreas. While α-Al2O3 and α-Fe2O3 NPs, induced lipid peroxidation and changes in antioxidant enzyme activity in the hepatopancreas tissue, the oxidative damage caused by the CuO nanoparticles was minimal. All three nanoparticles, copper in particular, elicit osmoregulatory and ionoregulatory toxicity at this concentration, due to the inhibition of Na+, K+-ATPase activity in the gill ...
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