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首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >Hazard assessment of small-size plastic particles: is the conceptual framework of particle toxicology useful?
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Hazard assessment of small-size plastic particles: is the conceptual framework of particle toxicology useful?

机译:小尺寸塑料颗粒的危害评估:是粒子毒理学的概念框架有用吗?

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摘要

Humans are exposed to plastic particles, but there are no studies on environmental plastics in cell cultures or animals. The toxicological understanding arises from model particles like polystyrene, polyethylene or non-plastic particles like food-grade titanium dioxide. The majority of studies on polystyrene particles show toxicological effects on measures of oxidative stress, inflammation, mitochondrial dysfunction, lysosomal dysfunction and apoptosis. The toxic effects in cell cultures mainly occur at high concentrations. Polyethylene particles seem to generate inflammatory reactions, whereas other toxicological effects have not been assessed. There are very few studies on effects of polystyrene particles in animal models and these have not demonstrated overt indices of toxicity. Studies in animals are the likely way for hazard assessment of micro- or nanoplastics. However, co-culture systems that mimic the complex architecture of mammalian tissues can cost-efficiently determine the hazards of micro- and nanoplastics. Future studies should include low doses of micro- and nanoplastic particles, which are more relevant in the assessment of health risk than the extrapolation of effects from high doses to realistic doses. Based on studies on model particles, environmental exposure to micro- and nanoplastic particles may be a hazard to human health.
机译:人类暴露于塑料颗粒,但没有关于细胞培养物或动物的环境塑料的研究。毒理学理解是由诸如聚苯乙烯,聚乙烯或非塑料颗粒等食品级二氧化钛等模型颗粒中的毒理学理解。大多数关于聚苯乙烯颗粒的研究表明了对氧化应激,炎症,线粒体功能障碍,溶酶体功能障碍和凋亡的措施的毒理学影响。细胞培养物中的毒性作用主要以高浓度发生。聚乙烯颗粒似乎产生炎症反应,而其他毒理学效应尚未得到评估。少量研究了动物模型中聚苯乙烯颗粒的影响,这些研究尚未表现出明显的毒性索引。动物的研究是危害微观或纳米塑料的可能性的可能性。然而,模拟哺乳动物组织复杂结构的共同培养系统可以高效地确定微型和纳米型玻璃的危害。未来的研究应包括低剂量的微型和纳米颗粒,其在健康风险的评估中更相关,而不是高剂量的影响到现实剂量的影响。基于模型颗粒的研究,对微观和纳米塑料颗粒的环境暴露可能对人类健康有危害。

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