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Journal ArticleDOI

Microplastics Aggravate the Bioaccumulation of Two Waterborne Veterinary Antibiotics in an Edible Bivalve Species: Potential Mechanisms and Implications for Human Health

TLDR
The activity of GST and expression of key detoxification genes were significantly suppressed by MPs, suggesting that the disruption of detoxification represents one possible explanation for the aggravated bioaccumulation observed here.
Abstract
Edible bivalves are one of the major types of seafood and may be subject to antibiotic and microplastics (MPs) coexposure under realistic scenarios. However, the effect of MPs on the bioaccumulation of antibiotics in edible bivalves and subsequent health risks for consumers remain poorly understood. Therefore, the bioaccumulation of two frequently detected veterinary antibiotics, oxytetracycline (OTC) and florfenicol (FLO), with or without the copresence of MPs was investigated in the blood clam. Health risks associated with the consumption of contaminated clams were also assessed. Furthermore, the activity of GST and expression of key detoxification genes were analyzed as well. The bioaccumulation of OTC and FLO in clams was found to be aggravated by MPs. Because the estimated target hazard quotients (THQs) were far less than the critical value, direct toxic effects of consuming contaminated clams are negligible. However, the dietary exposure doses of the human gut microbiota (DEGM) to the antibiotics tested were greater than or similar to corresponding minimum selective concentrations (MSC), indicating a potential antibiotic resistance risk. Moreover, the GST activity and expression of detoxification genes were significantly suppressed by MPs, suggesting that the disruption of detoxification represents one possible explanation for the aggravated bioaccumulation observed here.

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Citations
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Journal ArticleDOI

Microplastics and associated contaminants in the aquatic environment: A review on their ecotoxicological effects, trophic transfer, and potential impacts to human health.

TL;DR: The effects of microplastics on typical aquatic organisms from different trophic levels are described, and the combined effects ofmicroplastics and associated contaminants on aquatic biota are summarized.
Journal ArticleDOI

Immunotoxicity and intestinal effects of nano- and microplastics: a review of the literature

TL;DR: A growing body of evidence showing that nano- and microplastic exposure disturbs the gut microbiota and critical intestinal functions is brought together, showing that such effects may promote the development of chronic immune disorders.
Journal ArticleDOI

Microplastics in soils: A review of methods, occurrence, fate, transport, ecological and environmental risks.

TL;DR: A selection of papers is reviewed and a tentative standardized method for analyzing particles in complex matrices is extrapolated, helpful for providing an important roadmap and inspiration for the research methods and framework of soil MPs and facilitates the development of waste management and remediation strategies for regional soil MP contamination.
Journal ArticleDOI

Interaction of Microplastics with Antibiotics in Aquatic Environment: Distribution, Adsorption, and Toxicity.

TL;DR: In this paper, the authors examined the interaction mechanisms of microplastics and antibiotics, and the effect of MPs on ATs bioavailability and antibiotic resistance genes (ARGs) abundance in aquatic environments.
Journal ArticleDOI

Immunotoxicity and neurotoxicity of bisphenol A and microplastics alone or in combination to a bivalve species, Tegillarca granosa

TL;DR: The results demonstrated that the toxic impacts exerted by BPA were significantly aggravated by the co-presence of MPs, which may be due to interactions between BPA and MPs as well as those between MPs and clam individuals.
References
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Journal ArticleDOI

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Journal ArticleDOI

A global perspective on the use, sales, exposure pathways, occurrence, fate and effects of veterinary antibiotics (VAs) in the environment

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Journal ArticleDOI

Incomplete recovery and individualized responses of the human distal gut microbiota to repeated antibiotic perturbation

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