Understanding the ability of fish intestinal cells to act as a barrier for nanoparticle (NP) uptake and their effects is of significance from an environmental perspective as well as for human health, for which fish serves as an important nutrient source. We used an in vitro intestinal barrier model, based on rainbow trout intestinal (RTgutGC) cells, to elaborate the toxicity and translocation of five types of metal-based NPs. The NPs were polyvinylpyrrolidone (PVP)-coated Ag NPs, uncoated Ag NPs, CuO NPs, ZnO NPs and TiO2 NPs. In conventional monolayers on impermeable supports, cell viability declined according to classical sigmoidal dose-response curves with EC50 values between 0.28 mg L-1 and >100 mg L-1 in the following rank order, from ...
We studied adult zebrafish to determine whether the size of 20 and 110 nm citrate-coated silver nano...
The unique physicochemistry and potential toxicity of manufactured nanoparticles (NPs) requires inno...
Our recent work suggests limited uptake of unstabilized metal oxide nanoparticles via water into fis...
We introduce a novel in vitro rainbow trout intestinal barrier model and demonstrate its suitability...
Silver nanoparticle toxicity has been extensively studied in several vertebrate cells. Its correlati...
Nanotechnology is a rapidly growing industry of global economic importance, with new technologies ex...
In vitro studies can provide more detailed information into the mechanisms of toxic effects than in ...
Nanoparticles are already widely used in technology, medicine and consumer products, but there are l...
The environmental impacts of nanoparticle mixtures in the aquatic environment is not well understood...
The uptake of engineered nanomaterials (ENMs) by the gut of fishes is poorly understood. This study ...
During the development of nanotechnology, the production of many substances containing nanoparticles...
Nanotechnology is rapidly growing with nanoparticles produced and utilized in a wide range of commer...
Nanotechnology is rapidly growing with nanoparticles produced and utilized in a wide range of commer...
Background Silver nanoparticles (AgNP) are widely applied and can, upon use, be released into the a...
10 Pág. Departamento de Medio Ambiente y Agronomía (INIA)Nanobiomaterials (NBMs) are nanostructure...
We studied adult zebrafish to determine whether the size of 20 and 110 nm citrate-coated silver nano...
The unique physicochemistry and potential toxicity of manufactured nanoparticles (NPs) requires inno...
Our recent work suggests limited uptake of unstabilized metal oxide nanoparticles via water into fis...
We introduce a novel in vitro rainbow trout intestinal barrier model and demonstrate its suitability...
Silver nanoparticle toxicity has been extensively studied in several vertebrate cells. Its correlati...
Nanotechnology is a rapidly growing industry of global economic importance, with new technologies ex...
In vitro studies can provide more detailed information into the mechanisms of toxic effects than in ...
Nanoparticles are already widely used in technology, medicine and consumer products, but there are l...
The environmental impacts of nanoparticle mixtures in the aquatic environment is not well understood...
The uptake of engineered nanomaterials (ENMs) by the gut of fishes is poorly understood. This study ...
During the development of nanotechnology, the production of many substances containing nanoparticles...
Nanotechnology is rapidly growing with nanoparticles produced and utilized in a wide range of commer...
Nanotechnology is rapidly growing with nanoparticles produced and utilized in a wide range of commer...
Background Silver nanoparticles (AgNP) are widely applied and can, upon use, be released into the a...
10 Pág. Departamento de Medio Ambiente y Agronomía (INIA)Nanobiomaterials (NBMs) are nanostructure...
We studied adult zebrafish to determine whether the size of 20 and 110 nm citrate-coated silver nano...
The unique physicochemistry and potential toxicity of manufactured nanoparticles (NPs) requires inno...
Our recent work suggests limited uptake of unstabilized metal oxide nanoparticles via water into fis...