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61,005 resultsShowing papers similar to Microplastics in the Food Chain
ClearMicroplastics and Their Impacts on Organisms and Trophic Chains
This review synthesizes current knowledge on microplastic pollution, examining the mechanisms by which microplastics affect organisms at multiple levels of biological organization and how plastic particles transfer through trophic chains, accumulating and potentially magnifying in concentration up the food web. Researchers highlight evidence for physical, chemical, and microbial impacts on organisms ranging from invertebrates to mammals, including humans, and identify priority areas for future ecotoxicological research.
Microplastics in the Food Chain
This review summarizes evidence for microplastic entry and accumulation throughout the food chain, from environmental sources through plant uptake, invertebrate ingestion, fish accumulation, and ultimately human consumption. The authors highlight the food chain as a critical pathway connecting environmental plastic pollution to direct human exposure.
Microplastic Contamination in the Marine Food Web
This review examines the contamination of the marine food web by microplastics, tracing the pathways by which plastic particles enter and move through trophic levels from primary producers to top consumers including marine mammals and humans, and summarizing evidence for toxicological effects and human exposure through seafood consumption.
Trophic transfer of microplastics in zooplanktons towards its speculations on human health: A review
This review examines how microplastics move through the ocean food chain, from tiny zooplankton at the base up through fish to humans, and what health effects may result. Trophic transfer means microplastics can concentrate as they move up the food web, increasing human dietary exposure.
How microplastics interact with food chain: a short overview of fate and impacts
This review examines how microplastics move through the food chain, from water and soil into plants and animals, and ultimately into human food. Microplastics become more dangerous when they absorb toxic chemicals from the environment, and they accumulate in organisms because they take longer to pass through the body than to be consumed. The review highlights that microplastic bioaccumulation through the food web is a direct pathway for human exposure.
Observing the Effects of Marine Debris Bioaccumulation and Biomagnification
This study examines how marine debris, particularly microplastics and heavy metals, bioaccumulates and biomagnifies through marine food webs, with organisms ingesting microplastics as they move through ocean currents. The review considers the ecological consequences of microplastic ingestion across trophic levels and the implications for food chain safety as humans sit at the top of the marine food web.
A Summary of the Transporting Mechanism of Microplastics in Marine Food Chain and its Effects to Humans
This review summarized how microplastics are transported through marine food chains from plankton to fish to humans, detailing toxic effects at each trophic level and outlining mitigation strategies to reduce ecological and human health risks from oceanic plastic pollution.
Describing the Accumulation, Concentration, and Amplification Effects of MPs Through the Food Chain
This review examines evidence for microplastic accumulation, concentration, and amplification through food chains from primary producers to predators. The authors discuss the degree to which trophic transfer leads to biomagnification of plastic particles and co-adsorbed chemical contaminants, with implications for wildlife and human dietary exposure.
Trophic transfer of microplastics and mixed contaminants in the marine food web and implications for human health
This review examines how microplastics and the chemicals they carry transfer through marine food webs from lower to higher trophic levels, and what this means for human health given that people consume marine fish and seafood. It identifies microplastics as a vector for bioaccumulation of persistent organic pollutants in ways that ultimately reach humans.
Trophic Transfer and Accumulation of Microplastics in Freshwater Ecosystem: Risk to Food Security and Human Health
This review examined the trophic transfer and accumulation of microplastics through freshwater food chains, highlighting the risks to food security and human health as plastic particles biomagnify from lower to higher trophic levels.
Microplastics in the Food Chain
This preprint reviews how microplastics enter and move through the food chain, from environmental sources to human consumption through seafood and other contaminated foods. The paper highlights the need for greater awareness of microplastic exposure through everyday diet.
The Effects of Microplastics on the Human Food Chain and Freshwater Ecosystem
This review examines how microplastic pollution affects freshwater ecosystems and the human food chain, tracing the transfer of MPs from contaminated water through aquatic organisms to human consumers and evaluating the cumulative health risks of dietary plastic exposure.
Trophic transfer of microplastics and mixed contaminants in the marine food web and implications for human health
This review examines how microplastics move through marine food webs via trophic transfer and carry chemical contaminants that can accumulate in higher predators, including humans. Researchers found that microplastics readily sorb pollutants from surrounding waters and release them after being ingested by organisms, potentially amplifying toxic effects at each level of the food chain. The study underscores the need for more research on bioaccumulation factors and the implications of seafood-mediated microplastic exposure for human health.
Microplastics: understanding the interaction with the food web and potential health hazards
This review traces how microplastics move through aquatic food webs, from tiny filter-feeding organisms up to predatory fish, and ultimately to humans who consume seafood. Evidence indicates that microplastics can accumulate and concentrate at each level of the food chain, carrying toxic chemicals that may cause inflammation and hormone disruption. The authors stress the need for more research to understand these pathways and develop strategies to reduce microplastic contamination in food.
Potent Impact of Plastic Nanomaterials and Micromaterials on the Food Chain and Human Health
This review examined how plastic nanomaterials and micromaterials impact the food chain and potentially affect human health. Researchers found that fragmented plastic debris, as both microplastics and nanoplastics, can accumulate in organisms and gradually spread through the food chain, though the specific effects on human organ systems remain an active area of investigation.
Effects of Microplastics on Living Organisms and their Trophic Transfer: An Ecotoxicological Review
This ecotoxicological review examines the effects of microplastics on living organisms across multiple trophic levels and their transfer through food webs, covering evidence from aquatic and terrestrial environments. The authors highlight the cumulative risks posed by microplastic ingestion and tissue accumulation.
Microplastics (MPs) in marine food chains: Is it a food safety issue?
This review examined the presence and transfer of microplastics through marine food chains, assessing food safety risks from contaminated seafood and highlighting the ability of microplastics to sorb and leach chemical contaminants that may impact human health.
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.
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.
Trophic transfer of microplastics and mixed contaminants in the marine food web and implications for human health
This review examines how microplastics act as vectors for chemical contaminants through marine food webs, discussing the factors influencing ingestion, the biological impacts of sorbed chemicals, and evidence for trophic transfer across multiple trophic levels. Researchers highlight that existing lab studies use unrealistically high concentrations and that no study has yet tracked microplastic-contaminant transfer from seafood to humans.
The Impact of Microplastics on Fish Poses a Threat to Human Health
This review summarizes how microplastics ingested by fish accumulate through the food chain, posing a direct threat to human health via consumption of contaminated seafood.
Research Progress on the Migration Pathways and Ecological Effects of Microplastics in Marine Food Webs
This paper reviews migration pathways and ecological effects of microplastics within marine food webs, tracing MP movement from primary producers through various trophic levels to apex predators and humans, and synthesizing evidence for biological harm at each stage of trophic transfer.
Microplastic Interference in the Food Chain and Its Adverse Effects on Human Health: A Review
This review examines how microplastics interfere with the food chain from soil and water through to human consumption, and summarizes adverse health effects including inflammation, endocrine disruption, and neurotoxicity reported in animal models.
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.