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Prolonged survival time of Daphnia magna exposed to polylactic acid breakdown nanoplastics.


ABSTRACT: Polylactic acid nanoparticles (PLA NPs) according to food and drug administration are biodegradable and biocompatible polymers that have received a lot of attention due to their natural degradation mechanism. Although there is already available information concerning the effects of PLA microplastic to aquatic organisms, the knowledge about PLA NPs is still vague. In the present study, we analyzed the chemical composition of engineered PLA NPs, daily used PLA items and their breakdown products. We show that PLA breakdown products are oxidized and may contain aldehydes and/or ketones. The breakdown produces nanosized particles, nanoplastics, and possibly other small molecules as lactide or cyclic oligomers. Further, we show that all PLA breakdown nanoplastics extended the survival rate in Daphnia magna in an acute toxicity assay, however, only PLA plastic cup breakdown nanoplastics showed a significant difference compared to a control group.

SUBMITTER: Kelpsiene E 

PROVIDER: S-EPMC10479899 | biostudies-literature | 2023

REPOSITORIES: biostudies-literature

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Prolonged survival time of Daphnia magna exposed to polylactic acid breakdown nanoplastics.

Kelpsiene Egle E   Rydberg Melinda M   Ekvall Mikael T MT   Lundqvist Martin M   Cedervall Tommy T  

PloS one 20230905 9


Polylactic acid nanoparticles (PLA NPs) according to food and drug administration are biodegradable and biocompatible polymers that have received a lot of attention due to their natural degradation mechanism. Although there is already available information concerning the effects of PLA microplastic to aquatic organisms, the knowledge about PLA NPs is still vague. In the present study, we analyzed the chemical composition of engineered PLA NPs, daily used PLA items and their breakdown products. W  ...[more]

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