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1.
Redox Biol ; 37: 101620, 2020 10.
Artigo em Inglês | MEDLINE | ID: mdl-32863185

RESUMO

Microplastics (MPs) and nanoplastics (NPs) have attracted considerable attention in the recent years as potential threats to the ecosystem and public health. This review summarizes current knowledge of pathological events triggered by micro- and nano-plastics (MP/NPs) with focus on oxidative damages at different levels of biological complexity (molecular, cellular, tissue, organ, individual and population). Based on published information, we matched the apical toxicity endpoints induced by MP/NPs with key event (KE) or adverse outcomes (AO) and categorized them according to the Adverse Outcome Pathway (AOP) online knowledgebase. We used existing AOPs and applied them to highlight formal mechanistic links between identified KEs and AOs in two possible scenarios: first from ecological, and second from public health perspective. Ecological perspective AOP based literature analysis revealed that MP/NPs share formation of reactive oxygen species as their molecular initiating event, leading to adverse outcomes such as growth inhibition and behavior alteration through oxidative stress cascades and inflammatory responses. Application of AOP on literature data related to public health perspective of MP/NPs showed that oxidative stress and its responding pathways, including inflammatory responses, could play the role of key events. However insufficient information prevented precise definitions of AOPs at this level. To overcome this knowledge gap, further mammalian model and epidemiological studies are necessary to support development and construction of detailed AOPs with public health focus.


Assuntos
Rotas de Resultados Adversos , Microplásticos , Estresse Oxidativo , Animais , Ecossistema , Microplásticos/efeitos adversos , Plásticos
2.
Environ Toxicol Chem ; 35(12): 3093-3100, 2016 12.
Artigo em Inglês | MEDLINE | ID: mdl-27207313

RESUMO

Water pollution with large-scale and small-scale plastic litter is an area of growing concern. Macro-plastic litter is a well-known threat to aquatic wildlife; however, the effects of micro-sized and nano-sized plastic particles on the health of organisms are not well understood. Small-scale plastic particles can easily be ingested by various aquatic organisms and potentially interfere with their immune system; therefore, the authors used a freshwater fish species as a model organism for nanoplastic exposure. Characterization of polystyrene (41.0 nm) and polycarbonate (158.7 nm) nanoplastic particles (PSNPs and PCNPs, respectively) in plasma was performed, and the effects of PSNPs and PCNPs on the innate immune system of fathead minnow were investigated. In vitro effects of PSNPs and PCNPs on neutrophil function were determined using a battery of neutrophil function assays. Exposure of neutrophils to PSNPs or PCNPs caused significant increases in degranulation of primary granules and neutrophil extracellular trap release compared to a nontreated control, whereas oxidative burst was less affected. The present study outlines the stress response of the cellular component of fish innate immune system to polystyrene and polycarbonate nanoparticles/aggregates and indicates their potential to interfere with disease resistance in fish populations. Environ Toxicol Chem 2016;35:3093-3100. © 2016 SETAC.


Assuntos
Cyprinidae/imunologia , Imunidade Inata/efeitos dos fármacos , Nanopartículas/toxicidade , Neutrófilos/efeitos dos fármacos , Cimento de Policarboxilato/química , Poliestirenos/química , Animais , Cyprinidae/metabolismo , Difusão Dinâmica da Luz , Nanopartículas/análise , Nanopartículas/química , Neutrófilos/metabolismo , Tamanho da Partícula , Fagocitose/efeitos dos fármacos , Explosão Respiratória/efeitos dos fármacos , Vesículas Secretórias/metabolismo
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