[HTML][HTML] Polystyrene micro-and nanoparticles exposure induced anxiety-like behaviors, gut microbiota dysbiosis and metabolism disorder in adult mice

X Chen, L Xu, Q Chen, S Su, J Zhuang… - … and Environmental Safety, 2023 - Elsevier
Plastics have been proven to be a potential threat to the ecosystem, and their toxicity
mechanism is still uncertain. In the ecological environment, plastics can be degraded into …

Polystyrene micro-and nanoparticles exposure induced anxiety-like behaviors, gut microbiota dysbiosis and metabolism disorder in adult mice

X Chen, L Xu, Q Chen, S Su… - Ecotoxicology and …, 2023 - ui.adsabs.harvard.edu
Plastics have been proven to be a potential threat to the ecosystem, and their toxicity
mechanism is still uncertain. In the ecological environment, plastics can be degraded into …

Polystyrene micro-and nanoparticles exposure induced anxiety-like behaviors, gut microbiota dysbiosis and metabolism disorder in adult mice.

X Chen, L Xu, Q Chen, S Su, J Zhuang… - Ecotoxicology and …, 2023 - europepmc.org
Plastics have been proven to be a potential threat to the ecosystem, and their toxicity
mechanism is still uncertain. In the ecological environment, plastics can be degraded into …

Polystyrene micro-and nanoparticles exposure induced anxiety-like behaviors, gut microbiota dysbiosis and metabolism disorder in adult mice.

X Chen, L Xu, Q Chen, S Su, J Zhuang, D Qiao - 2023 - cabidigitallibrary.org
Plastics have been proven to be a potential threat to the ecosystem, and their toxicity
mechanism is still uncertain. In the ecological environment, plastics can be degraded into …

Polystyrene micro-and nanoparticles exposure induced anxiety-like behaviors, gut microbiota dysbiosis and metabolism disorder in adult mice

X Chen, L Xu, Q Chen, S Su… - Ecotoxicology and …, 2023 - pubmed.ncbi.nlm.nih.gov
Plastics have been proven to be a potential threat to the ecosystem, and their toxicity
mechanism is still uncertain. In the ecological environment, plastics can be degraded into …