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Methodology optimization to quantify microplastic presence in planktonic copepods, chaetognaths and fish larvae

MethodsX 2023 6 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Sabrina M. Rodrigues, Sabrina M. Rodrigues, Sabrina M. Rodrigues, C. Marisa R. Almeida Sabrina M. Rodrigues, Sabrina M. Rodrigues, Sandra Ramos, Sabrina M. Rodrigues, Sabrina M. Rodrigues, Sabrina M. Rodrigues, C. Marisa R. Almeida Sabrina M. Rodrigues, Michael Elliott, Michael Elliott, Sabrina M. Rodrigues, C. Marisa R. Almeida Sabrina M. Rodrigues, Sabrina M. Rodrigues, Sabrina M. Rodrigues, Michael Elliott, Michael Elliott, Michael Elliott, F. Espincho, Sandra Ramos, Michael Elliott, C. Marisa R. Almeida C. Marisa R. Almeida C. Marisa R. Almeida C. Marisa R. Almeida C. Marisa R. Almeida C. Marisa R. Almeida Sandra Ramos, Sabrina M. Rodrigues, C. Marisa R. Almeida Michael Elliott, Sandra Ramos, Michael Elliott, Michael Elliott, Sabrina M. Rodrigues, C. Marisa R. Almeida Sabrina M. Rodrigues, Sandra Ramos, Sandra Ramos, Sabrina M. Rodrigues, C. Marisa R. Almeida Sandra Ramos, Sabrina M. Rodrigues, Sandra Ramos, C. Marisa R. Almeida C. Marisa R. Almeida Sabrina M. Rodrigues, Michael Elliott, C. Marisa R. Almeida C. Marisa R. Almeida Sabrina M. Rodrigues, Sabrina M. Rodrigues, C. Marisa R. Almeida C. Marisa R. Almeida C. Marisa R. Almeida C. Marisa R. Almeida Sandra Ramos, Sandra Ramos, Sandra Ramos, Sandra Ramos, Sandra Ramos, Sandra Ramos, Sandra Ramos, Sandra Ramos, C. Marisa R. Almeida Sandra Ramos, C. Marisa R. Almeida Sandra Ramos, Sandra Ramos, C. Marisa R. Almeida Michael Elliott, Sandra Ramos, Sandra Ramos, Sandra Ramos, C. Marisa R. Almeida C. Marisa R. Almeida Sandra Ramos, C. Marisa R. Almeida C. Marisa R. Almeida Sandra Ramos, C. Marisa R. Almeida C. Marisa R. Almeida

Summary

Researchers optimized a hydrogen peroxide digestion method for extracting and counting microplastics from zooplankton and fish larvae while preserving the physical and chemical integrity of the plastic particles, achieving over 85% recovery across 13 plastic types. Having a reliable, standardized method for quantifying microplastics in plankton is essential for accurately assessing how much plastic is entering marine food webs at the base of the food chain.

Two of the groups most impacted by microplastics (MPs) are zooplankton and fish larvae, either through MPs ingestion or absorption. Although there has been an increase of studies focusing on MPs ingestion by these organisms, there is still no standardized methodology for the quantification of MPs present in plankton. For example, some reagents normally used to digest plankton and recover MPs appear adversely to affect some plastic characteristics. This can potentially lead to underestimating the amount and types of MPs present in the organisms analyzed. Hence, this work aimed to optimize a methodology to quantify MPs present in plankton, namely zooplankton and fish larvae, and ensuring MPs integrity. Hence, the planktonic organism tissues were digested using 30% (v/v) HO solution at different temperatures and incubation periods while preserving the integrity and polymer characteristics of 13 types of MPs. MPs' characteristics were register before and after the tests, by visual inspection and Fourier Transform Infrared Spectroscopy (FTIR) analysis, to evaluate the integrity and features of MPs. With this methodology, MPs recovery was above 85% for all types of plastic tested. The proposed methodology is a rapid protocol, with a maximum of 7 h of incubation, that ensures simultaneously the full digestion of the organism tissues and the complete preservation of all the plastic characteristics, namely color, size and polymer type.•A methodology was optimized to quantify microplastics present in zooplankton (copepods, chaetognaths and fish larvae).•Thirteen types of microplastics (fibers and fragments of different polymers) were used to test the efficiency of the methodology ensuring the maintenance of the integrity of plastics.•With this methodology, microplastic recovery was above 85% for all the types of microplastic tested and no changes in their characteristics were observed.

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