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Environmental toxicology of marine microplastic pollution

Cambridge Prisms Plastics 2023 32 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 60 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang Wen‐Xiong Wang

Summary

This review summarized a decade of research on the environmental toxicology of marine microplastic pollution across different ocean organisms and trophic levels. Researchers found that microplastics can accumulate in marine life from phytoplankton to fish, causing molecular, metabolic, and physiological harm. The study emphasizes that understanding these toxic effects is essential for assessing the broader ecological risks of plastic pollution in ocean environments.

Abstract Over the past decade, there have been increasing recognition and concern of the toxicological impacts of microplastics (MPs) in the environment, which have been widely found in various marine environments from estuary to deep oceans. Numerous toxicological studies have been conducted on the impacts of MPs on various marine organisms, especially phytoplankton, zooplankton, bivalves, and fish of different trophic levels. These studies mainly focused on the measurements of MPs bioaccumulation and their resulting biological impacts at molecular, metabolic, biochemical, physiological, and organismic levels. This review examines the various studies conducted over the recent years on the toxicology of MPs in different marine organisms, particularly on the bioaccumulation and toxicity of MPs. The impacts of MPs on marine organisms are diverse, and the complexity of organism physiology as well as MPs physical and chemical properties need to be considered. Future studies should consider the environmental relevance of toxicological research and the development of quantitative tools to model the transport, bioaccumulation, and toxicity of MPs. These are important for the real environmental risk assessments of MPs in the marine environments.

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