Correlation Engine 2.0
Clear Search sequence regions


  • bivalvia (1)
  • chlorpyrifos (14)
  • hdpe (1)
  • mussels (6)
  • mytilus (1)
  • pesticides (1)
  • Sizes of these terms reflect their relevance to your search.

    Microplastics (MP) are contaminants of concern per se, and also by their capacity to sorb dissolved chemicals from seawater, acting as vehicles for their transfer into marine organisms. Still, the role of MP as vehicles for contaminants and their associated toxicological effects have been poorly investigated. In this work we have compared the role of MP (high density polyethylene, HDPE, ≤22 μm) and of natural organic particles (microalgae, MA) as vehicle for chlorpyrifos (CPF), one of the most common pesticides found in river and coastal waters. We have compared the capacity of MP and MA to carry CPF. Then, the mussel Mytilus galloprovincialis has been exposed for 21 days to dissolved CPF, and to the same amount of CPF loaded onto MP and MA. The concentration of CPF in mussel' tissues and several physiological, energetics and immune parameters have been analyzed after 7 and 21 days of exposure. Results showed similar CPF accumulation in mussel exposed to MP and to MA spiked with CPF. This revealed that MP acted as vector for CPF in a similar way (or even to a lesser extent) than MA. After 21 days of exposure mussels exposed to MP spiked with CPF displayed similar or more pronounced biological effects than mussels exposed to dissolved CPF or to MA loaded with CPF. This suggested that the combined "particle" and "organic contaminant" effect produced an alteration on the biological responses greater than that produced by each stressor alone, although this was evident only after 3 weeks of exposure. Copyright © 2021 Elsevier B.V. All rights reserved.

    Citation

    Beatriz Fernández, Juan A Campillo, Elena Chaves-Pozo, Juan Bellas, Víctor M León, Marina Albentosa. Comparative role of microplastics and microalgae as vectors for chlorpyrifos bioacumulation and related physiological and immune effects in mussels. The Science of the total environment. 2022 Feb 10;807(Pt 3):150983

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 34678373

    View Full Text