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Zoological biobanks as a resource for microplastic analysis: a Py-GC-MS/MS case study on sea cucumbers
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Scientists found a reliable way to measure microplastic pollution in sea cucumbers using museum specimens preserved in jars, essentially turning old biobank collections into a time machine for tracking ocean plastic pollution. This matters because these bottom-dwelling animals are a good indicator of plastic buildup on the seafloor, and having a trustworthy method to study preserved specimens means scientists can now track how microplastic contamination in the food chain has changed over decades without needing new, expensive ocean expeditions.
Microplastics have spread through every ecosystem. Yet, documenting their spatiotemporal distribution remains challenging, particularly in marine environments where sampling is costly and difficult. Archived specimens in zoological biobanks offer an underused resource for investigating microplastic contamination. However, false-positive signals can arise from storage conditions or procedural contamination. This case study addresses these methodological challenges showing that careful experimental design can reliably account for such artefacts, using sea cucumbers as a model organism. As deposit feeders, they are directly exposed to microplastics accumulating on the seafloor. We adapted state-of-the-art sample preparation protocols to quantify five common plastic polymers from sea cucumber intestines using pyrolysis-gas chromatography-tandem mass spectrometry after chemical digestion of the intestines of five specimens of Holothuria forskali from the Atlantic and five specimens of Holothuria tubulosa from the Mediterranean. Samples of the biobank's preservation fluids were also analyzed, revealing low polymer concentrations compared to intestinal tissues. Procedural contamination was negligible. High purification rates confirmed effective elimination of tissue matrix before polymer analysis. Our analytical approach achieves low detection limits. It also uses a conservative multi-marker strategy to distinguish polyethylene from confounding organic compounds such as lipids. Analyzed specimens contained total polymer concentrations ranging from 9.4 to 169.2 μg per gram of dry weight, consistent with levels found in other marine organisms, and predominantly polyethylene terephthalate and polystyrene. These results confirm the method's robustness and support the wider use of zoological biobanks for microplastic pollution monitoring across time and space.
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Researchers used preserved holothurian (sea cucumber) specimens from natural history collections spanning decades to monitor the temporal evolution of deep-sea microplastic pollution in the Indo-Pacific, providing a rare historical record of how microplastic ingestion by benthic organisms has changed since plastic production began in the 1950s.
Can natural history collection specimens be used as aquatic microplastic pollution bioindicators?
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Researchers explored whether preserved animal specimens from natural history museum collections could serve as historical records of microplastic pollution over time. By reviewing how such collections have been used to track other pollutants, they identified key challenges — including inconsistent sampling and specimen degradation — and proposed guidelines for using museum archives to reconstruct how microplastic contamination has changed over decades.
La pollution microplastique des grands fonds marins de l'Indo-Pacifique : mobilisation des collections d'holothuries du Muséum national d'Histoire naturelle pour une analyse rétrospective
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Researchers investigated the use of museum collections of deep-sea holothuroids (sea cucumbers) gathered over 50 years of Indo-Pacific oceanographic surveys as proxies to retrospectively assess the temporal dynamics of benthic microplastic pollution in otherwise inaccessible deep-sea environments.
Optimisation of enzymatic digestion and validation of specimen preservation methods for the analysis of ingested microplastics
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This study developed and validated an enzymatic tissue digestion method for extracting microplastics from both freshly collected and museum-archived marine specimens. The non-destructive approach opens the possibility of using long-term museum collections to trace historical changes in microplastic ingestion by marine organisms.
Enzymatic digestion method development for long-term stored chitinaceous planktonic samples
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Researchers developed an enzymatic digestion method for extracting microplastics from long-term preserved chitinaceous planktonic crustacean samples, comparing material from 1985 and 2020 North Sea collections. The method enables retrospective microplastic analysis in archived time-series biological collections, providing a tool for investigating historical changes in marine microplastic exposure.
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