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Oxidative stress-related effects induced by micronized polyethylene terephthalate microparticles in the Manila clam
Marco Parolini1, Beatrice De Felice1, Stefano Gazzotti2
1Department of Environmental Science and Policy, University of Milan, Milan, Italy.
Abstract:
Microplastic (MP) contamination represents a serious threat for marine organisms. Several lab studies demonstrated adverse effects induced by exposure to different MP polymers toward diverse marine species. However, the information regarding toxicity of polyethylene terephthalate (PET) MPs is largely unknown. The present study was aimed at investigating the adverse effects induced by 7-day exposure to two concentrations (0.125 or 12.5 µg/ml) micronized, irregular shaped and variable size PET microparticles (PET-MPs) toward Manila clam (Ruditapes philippinarum). Histological analyses were performed to assess tissue damage on digestive glands, gonads, gut and gills, whereas oxidative stress-related effects, including the concentration of pro-oxidant molecules, activity of antioxidant (superoxide dismutase - SOD, catalase - CAT and glutathione peroxidase - GPx) and detoxifying (glutathione S-transferase - GST) enzymes, as well as levels of lipid peroxidation, were determined in gills and digestive gland. Our results showed that clams ingest and egest micronized PET-MPs, but no marked histological alterations to bivalve tissues occurred. Although PET-MPs did not produce oxidative stress in the digestive gland, these materials significantly altered oxidative status of gills, leading to lipid peroxidation. No apparent clear indication of a weakness of bivalve health status was obtained in this study.
Insights
Polyethylene terephthalate microplastics (PET-MPs) exposure in Manila clams caused gill damage and lipid peroxidation, but did not significantly harm overall bivalve health. Further research is needed on microplastic toxicity.
Area of Science:
- Marine Biology
- Environmental Toxicology
- Ecotoxicology
Background:
- Microplastic (MP) contamination poses a significant threat to marine life.
- Adverse effects of various MP polymers on marine species are documented.
- Toxicity data for polyethylene terephthalate microplastics (PET-MPs) remain limited.
Purpose of the Study:
- To investigate the adverse effects of micronized PET-MPs on the Manila clam (*Ruditapes philippinarum*).
- To assess histological alterations and oxidative stress biomarkers in clams exposed to PET-MPs.
Main Methods:
- Exposure of Manila clams to two concentrations of micronized PET-MPs for 7 days.
- Histological analysis of digestive glands, gonads, gut, and gills.
- Determination of oxidative stress markers (pro-oxidants, antioxidant enzymes, lipid peroxidation) in gills and digestive glands.
Main Results:
- Manila clams ingested and egested PET-MPs without significant histological damage to tissues.
- PET-MPs did not induce oxidative stress in the digestive gland.
- Significant alterations in gill oxidative status and increased lipid peroxidation were observed.
Conclusions:
- While PET-MPs are ingested, they did not cause widespread histological damage in Manila clams.
- PET-MPs induced oxidative stress and lipid peroxidation specifically in the gills.
- No clear overall decline in bivalve health status was evident from this 7-day exposure study.
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