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Contrasting toxicity of polystyrene nanoplastics to the rotifer Brachionus koreanus in the presence of zinc oxide nanoparticles and zinc ions

Aquatic Toxicology 2022 11 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Aleksandra B. Djurišić, Racliffe Weng Seng Lai, Hye-Min Kang, Hye-Min Kang, Kmy Leung Chang‐Bum Jeong, Chang‐Bum Jeong, Guang‐Jie Zhou, Hye-Min Kang, Hye-Min Kang, Chang‐Bum Jeong, Chang‐Bum Jeong, Guang‐Jie Zhou, Racliffe Weng Seng Lai, Chang‐Bum Jeong, Guang‐Jie Zhou, Kmy Leung Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Hye-Min Kang, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Kmy Leung Kmy Leung Kmy Leung Racliffe Weng Seng Lai, Chang‐Bum Jeong, Chang‐Bum Jeong, Chang‐Bum Jeong, Chang‐Bum Jeong, Jae‐Seong Lee, Kmy Leung Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Aleksandra B. Djurišić, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Racliffe Weng Seng Lai, Jae‐Seong Lee, Jae‐Seong Lee, Aleksandra B. Djurišić, Kmy Leung Jae‐Seong Lee, Jae‐Seong Lee, Chang‐Bum Jeong, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Kmy Leung Kmy Leung Kmy Leung Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Kmy Leung Kmy Leung Kmy Leung Guang‐Jie Zhou, Chang‐Bum Jeong, Chang‐Bum Jeong, Jae‐Seong Lee, Racliffe Weng Seng Lai, Kmy Leung Jae‐Seong Lee, Kmy Leung Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Chang‐Bum Jeong, Kmy Leung Kmy Leung Kmy Leung Hye-Min Kang, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Jae‐Seong Lee, Chang‐Bum Jeong, Kmy Leung Jae‐Seong Lee, Jae‐Seong Lee, Kmy Leung Jae‐Seong Lee, Jae‐Seong Lee, Aleksandra B. Djurišić, Kmy Leung Kmy Leung Aleksandra B. Djurišić, Kmy Leung

Summary

This study compared the combined toxicity of polystyrene nanoplastics with zinc oxide nanoparticles versus zinc ions on the rotifer Brachionus koreanus. Zinc oxide nanoparticles and nanoplastics showed antagonistic toxicity because the particles aggregated together and reduced bioavailable zinc, while zinc ions and nanoplastics showed additive toxicity because ion availability was less affected by aggregation.

Emerging contaminants such as nanoplastics and nanoparticles likely experience similar environmental behaviours, fate and effects but our knowledge of their combined toxicity is scanty. This study, therefore, investigated the joint toxicity of polystyrene nanoplastics (PNPs) and zinc oxide nanoparticles (ZnO-NPs) to an ecologically important rotifer Brachionus koreanus, and compared with the joint toxicity of PNPs and Zn ions (Zn-IONs from ZnSO·7HO). With increasing concentration, ZnO-NPs formed significant agglomeration with PNPs for up to 1.3 times of the original hydrodynamic size of ZnO-NPs, alongside doubling in their sedimentation and thereby losing 58% of their released Zn ions. In contrast, the availability of Zn-IONs was less affected by the agglomeration and sedimentation of PNPs, with only a loss of 18% of Zn ions at the highest concentration of PNPs. Consequently, as suggested by Concentration Addition and Independent Action models and the Model Deviation Ratios, ZnO-NPs and PNPs exerted an antagonistic interaction whereas Zn-IONs and PNPs exhibited an additive effect. We also advocate the use of the Nonparametric Response Surface method, which is more useful to predict the toxicity of chemical mixtures with interacting effects. Our findings suggested a potential difference between particle-particle and particle-ion interactions, especially at higher test concentrations, which may eventually affect their toxicity. We, therefore, call for a more systematic evaluation of commonly coexisting chemical mixtures which consist of nanoplastics and manufactured nanomaterials.

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