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Multi-level approach to investigate sub-lethal effects caused by synthetic and natural microfibers on Daphnia magna
Beatrice De Felice1, Stefano Gazzotti2, Marco Aldo Ortenzi2
1University of Milan, Department of Environmental Science and Policy, Via Celoria 26, I-20133 Milan, Italy.
Abstract:
Microplastic (MP) contamination is pervasive across all the ecosystems worldwide. Among MPs, fibers, specifically microfibers, represent the main shape commonly identified in diverse environmental matrices. In the environment, these fibers are not uniquely made of synthetic polymers, but several studies have highlighted that fibers made of natural polymers are predominant with respect to those made of synthetic ones. Despite these findings, whilst the potential toxicity of microfibers made of synthetic polymers has been explored, to date, little is known concerning the potential negative effect induced by natural microfibers, nonetheless they could pose the same threat to organisms than their synthetic counterpart. Thus, the aim of this study was to explore the potential sub-lethal effects induced by the exposure to two concentrations (0.05 microfibers/mL and 0.1 microfibers/mL) of microfibers made of a synthetic (i.e., polyester) or a natural (i.e., cellulose) polymer on the freshwater cladoceran Daphnia magna. Sub-lethal effects were investigated at the sub-individual and individual level. At the sub-individual level, a suite of oxidative stress biomarkers was applied, while at the individual level, effects on body growth and swimming behavior were assessed. Our results showed that the exposure to synthetic microfibers induced a modulation in antioxidant defenses and in swimming behavior of individuals exposed to microfiber treatments with respect to control. In contrast, cotton-based microfibers slightly modulated the antioxidant enzyme activity. These findings suggest that the exposure to synthetic and natural microfibers can affect the health status of D. magna, with synthetic microfibers potentially inducing more relevant effects than natural ones.
Insights
Microplastic (MP) fibers, both synthetic and natural, can harm aquatic life. This study found synthetic microfibers more detrimental to Daphnia magna than natural ones, impacting their health and behavior.
Area of Science:
- Environmental Science
- Ecotoxicology
- Aquatic Biology
Background:
- Microplastic (MP) contamination is a global issue, with microfibers being the most common form found in ecosystems.
- While synthetic microfibers are studied for toxicity, natural microfibers, which are more prevalent, are less understood.
- Natural microfibers may pose similar environmental threats as synthetic ones, necessitating further research.
Purpose of the Study:
- To investigate the sub-lethal effects of synthetic (polyester) and natural (cellulose) microfibers on the freshwater cladoceran Daphnia magna.
- To assess impacts at both sub-individual (oxidative stress biomarkers) and individual (growth, swimming behavior) levels.
- To compare the toxicity of natural versus synthetic microfibers on aquatic organisms.
Main Methods:
- Exposure of Daphnia magna to two concentrations (0.05 and 0.1 microfibers/mL) of polyester and cellulose microfibers.
- Measurement of oxidative stress biomarkers to assess sub-individual responses.
- Evaluation of body growth and swimming behavior to determine individual-level effects.
Main Results:
- Synthetic microfibers significantly modulated antioxidant defenses and swimming behavior in Daphnia magna.
- Natural (cotton-based) microfibers showed only slight modulation of antioxidant enzyme activity.
- Exposure to both types of microfibers affected the health status of Daphnia magna, with synthetic microfibers exhibiting greater impact.
Conclusions:
- Both synthetic and natural microfibers can negatively affect Daphnia magna health.
- Synthetic microfibers appear to induce more pronounced sub-lethal effects compared to natural microfibers.
- Further research is needed to fully understand the ecotoxicological risks posed by natural microfibers.

