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Comprehensive phenotyping and transcriptome profiling to study nanotoxicity in . | LitMetric

Engineered nanoparticles are used at an increasing rate in both industry and medicine without fully understanding their impact on health and environment. The nematode is a suitable model to study the toxic effects of nanoparticles as it is amenable to comprehensive phenotyping, such as locomotion, growth, neurotoxicity and reproduction. In this study, we systematically evaluated the effects of silver (Ag) and five metal oxide nanoparticles: SiO, CeO, CuO, AlO and TiO. The results showed that Ag and SiO exposures had the most toxic effects on locomotion velocity, growth and reproduction, whereas CeO, AlO and CuO exposures were mostly neurotoxic. We further performed RNAseq to compare the gene expression profiles underlying Ag and SiOtoxicities. Gene set enrichment analyses revealed that exposures to Ag and SiOconsistently downregulated several biological processes (regulations in locomotion, reproductive process and cell growth) and pathways (neuroactive ligand-receptor interaction, wnt and MAPK signaling, etc.), with opposite effects on genes involved in innate immunity. Our results contribute to mechanistic insights into toxicity of Ag and SiO nanoparticles and demonstrated that as a valuable model for nanotoxicity assessment.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7049462PMC
http://dx.doi.org/10.7717/peerj.8684DOI Listing

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