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Ingested Microscopic Plastic Translocates to the Circulatory System of the Mussel, <i>Mytilus edulis</i> (L.)

Environmental Science & Technology · 2008 · Vol. 42(13) · pp. 5026–5031
Mark A. Oakley BrowneAwantha DissanayakeTamara S. GallowayDavid M. LoweRichard C. Thompson

Abstract

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 microm). 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.

Microplastics and Plastic PollutionMarine Biology and Environmental Chemistrybiodegradable polymer synthesis and propertiesMytilusMusselMicroplasticsIngestionDebrisHemolymphBiologySeawaterBivalviaMarine debris

MeSH terms

Analysis of VarianceAnimalsBody BurdenCardiovascular SystemGastrointestinal ContentsParticle SizePlasticsWaste ProductsMytilus edulis

Funding

  • Leverhulme Trust
  • Sight Research UK
  • Natural Environment Research Council
Citations
2,174
FWCI
10.57
field-weighted impact
References
42
Percentile
99%
vs. same field & year
Citations per year
References
Plastic Resin Pellets as a Transport Medium for Toxic Chemicals in the Marine Environment
Environmental Science & Technology · 2000 · 1,867 citations
The pollution of the marine environment by plastic debris: a review
Marine Pollution Bulletin · 2002 · 3,971 citations
Separating the grain from the chaff: particle selection in suspension- and deposit-feeding bivalves
Journal of Experimental Marine Biology and Ecology · 2004 · 710 citations
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