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首页> 外文期刊>Environmental Science & Technology >Ingested Microscopic Plastic Translocates to the Circulatory System of the Mussel, Mytilus edulis (L.)
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Ingested Microscopic Plastic Translocates to the Circulatory System of the Mussel, Mytilus edulis (L.)

机译:摄入的微量塑料易位至贻贝(Mytilus edulis,L。)的循环系统。

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摘要

Plastics debris is accumulating in the environment and is fragmenting into smaller pieces; as it does, the potential for ingestion by animals increases. The consequences of macroplastic debris for wildlife are well documented, however the impacts of microplastic (<1 mm) are poorly understood. The mussel, Mytilus edulis, was used to investigate ingestion, translocation, and accumulation of this debris. Initial experiments showed that upon ingestion, microplastic accumulated in the gut Mussels were subsequently exposed to treatments containing seawater and microplastic (3.0 or 9.6 μm). After transfer to clean conditions, microplastic was tracked in the hemolymph. Particles translocated from the gut to the circulatory system within 3 days and persisted for over 48 days. Abundance of microplastic was greatest after 12 days and declined thereafter. Smaller particles were more abundant than larger particles and our data indicate as plastic fragments into smaller particles, the potential for accumulation in the tissues of an organism increases. The short-term pulse exposure used here did not result in significant biological effects. However, plastics are exceedingly durable and so further work using a wider range of organisms, polymers, and periods of exposure will be required to establish the biological consequences of this debris.
机译:塑料碎片在环境中累积,并破碎成较小的碎片;这样一来,动物摄入的可能性就会增加。大量记载了塑料碎片对野生生物的后果,但是对塑料微粒(<1毫米)的影响知之甚少。贻贝(Mytilus edulis)贻贝被用于研究这种碎片的摄入,易位和积累。初步实验表明,摄入后,贻贝在肠道中积累的微塑性物质随后会接受含有海水和微塑性物质(3.0或9.6μm)的处理。转移到干净的条件后,在血淋巴中追踪到了微塑性。颗粒在3天内从肠道转移到循环系统,并持续48天以上。 12天后微塑性丰度最大,此后下降。较小的颗粒比较大的颗粒更丰富,我们的数据表明,塑料碎片变成较小的颗粒后,有机体组织中积累的可能性增加。这里使用的短期脉冲暴露不会导致明显的生物学影响。但是,塑料极其耐用,因此需要使用更广泛的生物,聚合物和暴露时间进行进一步工作才能确定这种碎片的生物学后果。

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