Article
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Tier 2
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Original research — experimental, observational, or case-control study. Direct primary evidence.
Human Health Effects
Marine & Wildlife
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Arsenic exposure combined with nano- or microplastic induces different effects in the marine rotifer Brachionus plicatilis
Aquatic Toxicology2021
68 citations
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Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Score: 55
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0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Yoseop Lee,
Yoseop Lee,
Chang‐Bum Jeong,
Chang‐Bum Jeong,
Haksoo Jeong,
Eunjin Byeon,
Haksoo Jeong,
Haksoo Jeong,
Haksoo Jeong,
Hye-Min Kang,
Hye-Min Kang,
Yoseop Lee,
Haksoo Jeong,
Haksoo Jeong,
Haksoo Jeong,
Haksoo Jeong,
Haksoo Jeong,
Haksoo Jeong,
Cheolho Yoon,
Cheolho Yoon,
Hye-Min Kang,
Hye-Min Kang,
Eunjin Byeon,
Eunjin Byeon,
Un-Ki Hwang,
Chang‐Bum Jeong,
Chang‐Bum Jeong,
Haksoo Jeong,
Yoseop Lee,
Chang‐Bum Jeong,
Yoseop Lee,
Jae‐Seong Lee
Jae‐Seong Lee
Haksoo Jeong,
Haksoo Jeong,
Yoseop Lee,
Jae‐Seong Lee
Hye-Min Kang,
Jae‐Seong Lee
Eunjin Byeon,
Yoseop Lee,
Yoseop Lee,
Cheolho Yoon,
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
Jae‐Seong Lee
Haksoo Jeong,
Haksoo Jeong,
Yoseop Lee,
Chang‐Bum Jeong,
Chang‐Bum Jeong,
Chang‐Bum Jeong,
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
Un-Ki Hwang,
Haksoo Jeong,
Jae‐Seong Lee
Jae‐Seong Lee
Haksoo Jeong,
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Un-Ki Hwang,
Chang‐Bum Jeong,
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Un-Ki Hwang,
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Cheolho Yoon,
Jae‐Seong Lee
Cheolho Yoon,
Cheolho Yoon,
Chang‐Bum Jeong,
Cheolho Yoon,
Chang‐Bum Jeong,
Eunjin Byeon,
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
Chang‐Bum Jeong,
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Chang‐Bum Jeong,
Jae‐Seong Lee
Jae‐Seong Lee
Jae‐Seong Lee
Summary
Researchers exposed marine rotifers to arsenic combined with either nanoplastics or microplastics and found that particle size significantly influenced the combined toxic effects. Nanoplastics enhanced arsenic toxicity more than microplastics, likely due to their greater surface area and cellular uptake. The study suggests that nanoplastic-pollutant interactions may pose greater ecological risks than microplastic-pollutant combinations in marine environments.
Besides the adverse biological effects induced by microplastics (MPs), the effects associated with sorption of ambient pollutants on MPs are considered as an emerging environmental problem as MPs act as a mediator of pollutants. The present study examines the combined effects of nano(micro)plastics (NMPs) and arsenic (As) by exposing the marine rotifer Brachionus plicatilis to MP particles at the micro-scale (6 μm) and nano-scale (nanoplastics, NPs) (50 nm) along with As. In vivo toxicity, bioaccumulation, and biochemical reactions were used to examine the effects of combined exposure. The results of in vivo experiments showed that As toxicity increased with NP exposure, whereas toxicity was alleviated by MPs, indicating a different mode of action between NPs and MPs in combination with As. The highest level of As bioaccumulation was detected in NP + As groups, and followed by MP + As and As-only exposure groups, whereas no significant difference between groups was shown for As metabolites. In addition, the activity of several ATP-binding cassette proteins that confer multixenobiotic resistance, which is responsible for efflux of As, was activated by As but significantly inhibited by NP exposure, supporting the findings of in vivo experiments. Our results show that the effects of combining exposure to As with NP and MPs differ depending on particle size and provide an in-depth understanding of both environmental pollutants.