Papers

20 results
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Article Tier 2

Addressing the current fettle of bioaccumulation of microplastics on the subsequent perspective of the aquatic ecosystem and health implications of commercial species: a review

This review examined the global evidence for microplastic bioaccumulation in aquatic animals and the downstream risks to ecosystem health and food security. The authors highlight how ingestion of plastic-contaminated prey transfers microplastics up the food chain.

2024 Zenodo (CERN European Organization for Nuclear Research)
Article Tier 2

Microplastic in the Aquatic Ecosystem and Human Health Implications

This review examines the sources, distribution, and pathways of microplastics in aquatic ecosystems, summarizing current evidence on how MPs enter the food chain, accumulate in aquatic fauna, and pose risks to both ecosystem health and human health through seafood consumption.

2022 5 citations
Article Tier 2

Toxicological review of micro- and nano-plastics in aquatic environments: Risks to ecosystems, food web dynamics and human health.

This review synthesized evidence on the toxicological effects of micro- and nanoplastics in aquatic ecosystems, covering risks to individual organisms, disruptions to food web dynamics, and pathways through which plastic exposure poses risks to human health via seafood consumption.

2024 Ecotoxicology and environmental safety
Article Tier 2

The Challenge of Microplastics in Aquatic Ecosystem: A Review of Current Consensus and Future Trends of the Effect on the Fish

This review synthesizes research on how microplastics affect aquatic ecosystems, covering ingestion by marine animals, trophic transfer up the food chain, and the chemicals that microplastics carry. The findings highlight that microplastic contamination is now widespread enough to threaten marine biodiversity and food security for populations that rely on seafood.

2023 BENTHAM SCIENCE PUBLISHERS eBooks
Article Tier 2

Micro-Nano Plastics in Aquatic Environments: Associated Health Impacts and Mitigation Strategies

This review examines how micro- and nanoplastics in aquatic environments are biologically transferred up the food chain, covering the factors that influence particle bioavailability, accumulation in organisms, and trophic transfer — with implications for both aquatic ecosystem health and human dietary exposure.

2025
Article Tier 2

Occurrence, Bioaccumulation, and Risk Assessment of Microplastics in the Aquatic Environment: A Review

This review summarizes current knowledge on microplastic occurrence, bioaccumulation, and health risks in aquatic environments worldwide. Microplastics can absorb other pollutants and transfer them through the food chain, accumulating in organisms at higher levels. The authors call for standardized risk assessment methods and better monitoring to understand the full scope of microplastic threats to ecosystems and human health.

2023 Water 46 citations
Article Tier 2

Impacts of microplastic accumulation in aquatic environment: Physiological, eco-toxicological, immunological, and neurotoxic effects

This review summarizes how microplastics build up in fish and other aquatic life, causing damage to their immune systems, nervous systems, and overall health. When fish eat microplastics, the particles move up the food chain and can eventually reach humans through seafood consumption. The authors also discuss strategies for removing microplastics from water and reducing plastic pollution.

2024 Aquatic Toxicology 16 citations
Article Tier 2

Plastic Peril

This review examines the skyrocketing global plastic production and the resulting accumulation of microplastics that adversely affect terrestrial and aquatic organisms through bioaccumulation and biomagnification. The authors assess evidence for microplastic effects across trophic levels including in edible aquatic organisms, highlighting the food chain risks from plastic pollution.

2024
Article Tier 2

Impact of Microplastics on AquaticOrganisms and Human Health: A Review

This review examines how microplastics from degraded plastic debris accumulate in aquatic environments, are ingested by organisms at all levels of the food chain, and may transfer to humans through seafood. The evidence warrants concern about microplastic contamination as an emerging public health issue.

2020 RePEc: Research Papers in Economics 6 citations
Systematic Review Tier 1

A global perspective on microplastic bioaccumulation in marine organisms

This systematic review examines microplastic contamination in marine organisms around the world, documenting how plastics of various sizes and types build up in seafood species. Since many of these species end up on our plates, the findings raise important questions about how much microplastic humans may be consuming through seafood.

2023 Ecological Indicators 107 citations
Article Tier 2

Exploring bioaccumulation patterns and ecological risks of microplastics in aquatic ecosystems

This review comprehensively examined microplastic bioaccumulation and ecological risk in aquatic ecosystems, covering sources, environmental pathways, and the risks microplastics pose to organisms across trophic levels in rivers, lakes, and marine environments.

2025
Article Tier 2

A review of microplastics in the aquatic environmental: distribution, transport, ecotoxicology, and toxicological mechanisms

This review examines how microplastics are distributed, transported, and accumulate throughout aquatic environments, and the toxicological effects they have on aquatic organisms. The study suggests that microplastics can affect human health through the food chain, but notes that understanding of combined toxicity mechanisms remains very limited. The authors identify significant knowledge gaps and call for more systematic environmental risk assessments across multiple species.

2020 Environmental Science and Pollution Research 153 citations
Article Tier 2

Microplastics in Aquatic Ecosystems: A Review of Ecotoxicological Effects, Exposure Pathways and Trophic Transfer Risks

This review synthesises evidence on the ecotoxicological effects of microplastics in marine, freshwater, and estuarine environments, covering ingestion, bioaccumulation, trophic transfer, and physiological harms across aquatic fauna. It identifies chemical co-contamination and particle size as key modulators of toxicity.

2025 UTTAR PRADESH JOURNAL OF ZOOLOGY
Article Tier 2

Microplastics—A New Threat to Aquatic Food Safety?

This review article examines whether microplastics pose a new threat to the safety of aquatic food sources, noting that plastics have accumulated widely in marine environments and are ingested by organisms throughout the food chain. The authors assess potential risks from microplastic particles in seafood and the possibility of chemical contaminants being transferred from plastic to human consumers.

2015 Journal of Aquatic Food Product Technology 5 citations
Article Tier 2

Microplastic profusion in food and drinking water: are microplastics becoming a macroproblem?

This review examined the prevalence of microplastics in food and drinking water, assessing trophic transfer along the food web and evaluating whether microplastic contamination in human dietary sources constitutes a growing public health concern.

2022 Environmental Science Processes & Impacts 28 citations
Article Tier 2

Unraveling the ecotoxicological effects of micro and nano-plastics on aquatic organisms and human health

This review summarizes the growing body of evidence on how micro- and nanoplastics affect aquatic organisms and, through the food chain, potentially human health. The tiny plastic particles absorb toxic pollutants and pathogens from the water, acting as carriers that deliver these harmful substances into the bodies of fish, shellfish, and other organisms. The review highlights that both direct plastic toxicity and indirect chemical exposure through contaminated seafood pose risks to human consumers.

2024 Frontiers in Environmental Science 23 citations
Article Tier 2

Effects of Microplastic Exposure on Different Speciesin Ecosystem

This review examines the ecotoxicological effects of microplastic exposure on organisms across aquatic and terrestrial ecosystems, covering bioaccumulation and trophic transfer in fish, mollusks, and other species. The authors emphasize that microplastics originating from industrial processes and plastic waste pose long-term ecosystem-wide threats.

2025 Journal of Research in Humanities and Social Science
Article Tier 2

Impact of Microplastics on Aquatic Organisms and Human Health: A Review

This review examined the impacts of microplastics on aquatic organisms and human health, highlighting that microplastic size ranges mimic prey sizes ingested by aquatic organisms and that contaminated commercially important fish species transfer microplastics to human consumers. The authors synthesised evidence on ingestion pathways, toxicological effects, and human dietary exposure routes.

2020 International Journal of Environmental Sciences & Natural Resources 17 citations
Article Tier 2

The Impact of Microplastic Bioaccumulation on Marine Ecosystems

This review examined the bioaccumulation of microplastics in marine ecosystems, tracing MP uptake from zooplankton to fish to marine mammals and discussing the ecological disruptions caused by plastic accumulation across food webs. It called for integrated solutions addressing MP pollution at both the source and ecosystem levels.

2024 Theoretical and Natural Science
Article Tier 2

Plastic Pollution is a Serious Menace to Ecosystem Health with Special Reference to Aquatic Ecosystems and its Associated Challenges, Opportunities, and Mitigations

This review examines how plastic pollution, including microplastics, threatens aquatic ecosystem health, affecting fish, birds, and mammals through ingestion, entanglement, and chemical exposure. Researchers highlighted that our understanding of microplastic dynamics — their release, retention, accumulation, and transfer across ecosystems — remains limited. The study calls for more research into the long-term ecological consequences of microplastic contamination in aquatic environments.

2024 3 citations