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The unrecognized occupational relevance of the interaction between engineered nanomaterials and the gastro-intestinal tract: A consensus paper from a multidisciplinary working group
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نویسنده
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pietroiusti a. ,bergamaschi e. ,campagna m. ,campagnolo l. ,de palma g. ,iavicoli s. ,leso v. ,magrini a. ,miragoli m. ,pedata p. ,palombi l. ,iavicoli i.
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منبع
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particle and fibre toxicology - 2017 - دوره : 14 - شماره : 1
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چکیده
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Background: there is a fundamental gap of knowledge on the health effects caused by the interaction of engineered nanomaterials (enm) with the gastro-intestinal tract (git). this is partly due to the incomplete knowledge of the complex physical and chemical transformations that enm undergo in the git,and partly to the widespread belief that git health effects of enm are much less relevant than pulmonary effects. however,recent experimental findings,considering the role of new players in gut physiology (e.g. the microbiota),shed light on several outcomes of the interaction enm/git. along with this new information,there is growing direct and indirect evidence that not only ingested enm,but also inhaled enm may impact on the git. this fact,which may have relevant implications in occupational setting,has never been taken into consideration. this review paper summarizes the opinions and findings of a multidisciplinary team of experts,focusing on two main aspects of the issue: 1) enm interactions within the git and their possible consequences,and 2) relevance of gastro-intestinal effects of inhaled enms. under point 1,we analyzed how luminal gut-constituents,including mucus,may influence the adherence of enm to cell surfaces in a size-dependent manner,and how intestinal permeability may be affected by different physico-chemical characteristics of enm. cytotoxic,oxidative,genotoxic and inflammatory effects on different git cells,as well as effects on microbiota,are also discussed. concerning point 2,recent studies highlight the relevance of gastro-intestinal handling of inhaled enm,showing significant excretion with feces of inhaled enm and supporting the hypothesis that git should be considered an important target of extrapulmonary effects of inhaled enm. conclusions: in spite of recent insights on the relevance of the git as a target for toxic effects of nanoparticles,there is still a major gap in knowledge regarding the impact of the direct versus indirect oral exposure. this fact probably applies also to larger particles and dictates careful consideration in workers,who carry the highest risk of exposure to particulate matter. © 2017 the author(s).
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کلیدواژه
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Direct toxicity; Gastrointestinal tract; Indirect toxicity; Ingested nanoparticles; Inhaled nanoparticles; Microbiota; Workers' exposure
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آدرس
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university of rome tor vergata,department of biomedicine and prevention,via montpellier 1,rome,00133, Italy, university of turin,department of sciences and public health and pediatrics,turin, Italy, university of cagliari,department of medical sciences and public health,cagliari, Italy, university of rome tor vergata,department of biomedicine and prevention,via montpellier 1,rome,00133, Italy, university of brescia,department of medical and surgical specialties,radiological sciences,and public health,section of public health and human sciences,brescia, Italy, italian workers' compensation authority (inail),department of occupational and environmental medicine,epidemiology and hygiene,rome, Italy, university of naples federico ii,department of public health,naples, Italy, university of rome tor vergata,department of biomedicine and prevention,via montpellier 1,rome,00133, Italy, university of parma,department of medicine and surgery,parma, Italy, university of campania luigi vanvitelli,department of experimental medicine- section of hygiene,occupational medicine and forensic medicine,naples, Italy, university of rome tor vergata,department of biomedicine and prevention,via montpellier 1,rome,00133, Italy, university of naples federico ii,department of public health,naples, Italy
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Authors
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