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- W3127068130 endingPage "710" @default.
- W3127068130 startingPage "683" @default.
- W3127068130 abstract "Nanotechnologies are becoming widely applied in various industries, leading to increasing health and environmental concern due to possible nanomaterial exposure. Development of predictive models for nanotoxicology is important to evaluate hazard and risk potentially caused by engineered nanomaterials. Toxicological data from reliable predictive models is therefore crucial in order to design safe and effective nanomaterials for world-wide applications. In this chapter, the development and application of predictive models including in vitro, in vivo and computational models for nanotoxicological studies are summarized and highlighted. The chapter covers the definition of nanotoxicology, discusses in vitro models ranging from the conventional 2D cell-based model to the 3D-tissue model, and organ-on-a-chip, considers animal in vivo models focusing on rodent-type animal models and alternative in vivo models, and reviews computational models and their application in nanotoxicological studies." @default.
- W3127068130 created "2021-02-15" @default.
- W3127068130 creator A5013039258 @default.
- W3127068130 creator A5018076126 @default.
- W3127068130 creator A5022470892 @default.
- W3127068130 creator A5024499158 @default.
- W3127068130 date "2021-01-01" @default.
- W3127068130 modified "2023-10-01" @default.
- W3127068130 title "Predictive models for nanotoxicology: in vitro, in vivo, and computational models" @default.
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