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Chronic nanoplastic exposure induced oxidative and immune stress in medaka gonad

The Science of The Total Environment 2023 49 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Yinfeng Zhou, Jin Qian, Haijing Xu, Youji Wang, Mingyou Li

Summary

Researchers exposed medaka fish to nanoplastics at varying concentrations over an extended period and found significant oxidative stress and immune disruption in their reproductive organs. Higher concentrations led to tissue damage in the gonads and altered expression of genes related to inflammation and antioxidant defense. The study suggests that chronic, low-level nanoplastic exposure may affect fish reproductive health over time.

Polymers

Nanoplastic (NP) pollution is a global issue because of its widespread occurrence and potential toxicity. Many studies have investigated the impacts of the short-term toxicity of NPs on organisms. Until now, only a few studies have assessed the toxicological effects of prolonged exposure to NPs at low concentrations in fish. In this study, the effects of NPs (nano-polystyrene microspheres, diameter: 100 nm) on immune and oxidative stress response, histopathology, and survival in medaka were evaluated. The effects of different concentrations (0, 10, 10, and 10 particles/L) of nanoplastics were studied in medaka Oryzias latipes after 3 months of exposure. Lysozyme enzyme activity, oxidative stress-related biomarkers (i.e., superoxide dismutase, catalase, and glutathione peroxidase), and malondialdehyde levels were decreased under NP exposure. The gonadal histology showed that high NP exposure (10 particles/L) inhibited the process of spermatogenesis and oogenesis processes, implying delayed maturation of the gonad. Furthermore, the IBR and PCA analysis revealed the potential biotoxicity of NPs and the total survival rate of medaka was significantly reduced due to the long-term exposure to NPs. Overall, prolonged exposure to low concentrations of NPs is harmful to the health of medaka gonads. In the long run, this may threaten the fish reproduction and population, suggesting the need for long-term toxicological studies to predict the aquatic animal health in nature.

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