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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Detection Methods Environmental Sources Gut & Microbiome Human Health Effects Marine & Wildlife Nanoplastics Remediation Sign in to save

Ingestion and effects of polystyrene nanoparticles in the silkworm Bombyx mori

Chemosphere 2020 69 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Andrea Binelli, Stefano Magni, Stefano Magni, Andrea Binelli, Camilla Carla Parenti, Camilla Carla Parenti, Camilla Carla Parenti, Camilla Carla Parenti, Stefano Magni, Stefano Magni, Camilla Della Torre, Andrea Binelli, Camilla Della Torre, Stefano Magni, Stefano Magni, Andrea Binelli, Camilla Della Torre, Stefano Magni, Andrea Binelli, Stefano Magni, Stefano Magni, Stefano Magni, Stefano Magni, Camilla Della Torre, Camilla Della Torre, Stefano Magni, Stefano Magni, Silvia Caccia Camilla Della Torre, Camilla Della Torre, Camilla Della Torre, Stefano Magni, Stefano Magni, Andrea Binelli, Camilla Della Torre, Camilla Della Torre, Camilla Della Torre, Camilla Della Torre, Stefano Magni, Camilla Della Torre, Camilla Della Torre, Stefano Magni, Camilla Della Torre, Andrea Binelli, Camilla Della Torre, Stefano Magni, Camilla Carla Parenti, Andrea Binelli, Andrea Binelli, Andrea Binelli, Andrea Binelli, Camilla Della Torre, Camilla Carla Parenti, Gilberto Pirovano, Stefano Magni, Andrea Binelli, Camilla Della Torre, Gilberto Pirovano, Stefano Magni, Morena Casartelli, Andrea Binelli, Camilla Carla Parenti, Camilla Carla Parenti, Andrea Binelli, Camilla Della Torre, Stefano Magni, Andrea Binelli, Camilla Della Torre, Camilla Della Torre, Andrea Binelli, Andrea Binelli, Camilla Della Torre, Camilla Carla Parenti, Morena Casartelli, Andrea Binelli, Silvia Caccia

Summary

Scientists fed polystyrene nanoparticles to silkworm larvae (Bombyx mori) and found ingestion, tissue accumulation, and oxidative stress responses, demonstrating that terrestrial insects are vulnerable to nanoplastic exposure through their food.

Polymers

Information on the occurrence and effects of nanoplastics in ecosystems worldwide currently represent one of the main challenges from the ecotoxicological point of view. This is particularly true for terrestrial environments, in which nanoplastics are released directly by human activities or derive from the fragmentation of larger plastic items incorrectly disposed. Since insects can represent a target for these emerging contaminants in land-based community, the aim of this study was the evaluation of ingestion of 0.5 μm polystyrene nanoplastics and their effects in silkworm (Bombyx mori) larvae, a useful and well-studied insect model. The ingestion of nanoplastics, the possible infiltration in the tissues and organ accumulation were checked by confocal microscopy, while we evaluated the effects due to the administered nanoplastics through a multi-tier approach based on insect development and behaviour assessment, as endpoints at organism level, and the measurements of some biochemical responses associated with the imbalance of the redox status (superoxide dismutase, catalase, glutathione s-transferase, reactive oxygen species evaluation, lipid peroxidation) to investigate the cellular and molecular effects. We observed the presence of microplastics in the intestinal lumen, but also inside the larvae, specifically into the midgut epithelium, the Malpighian tubules and in the haemocytes. The behavioural observations revealed a significant (p < 0.05) increase of erratic movements and chemotaxis defects, potentially reflecting negative indirect effects on B. mori survival and fitness, while neither effect on insect development nor redox status imbalance were measured, with the exception of the significant (p < 0.05) inhibition of superoxide dismutase activity.

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