Hyperspectral imaging with enhanced darkfield microscopy (HSI-M) possesses unique advantages in its simplicity and non-invasiveness. In consideration of the urgent need for profound knowledge on the behavior and effects of engineered nanoparticles (NPs), here, we determined the capability of HSI-M for examining cellular uptake of different metal-based NPs, including nanosized metals (silver and gold, both citrate stabilized), metal oxides (copper oxide and titanium dioxide), and CdSe/ZnS core/shell quantum dots at subtoxic concentrations. Specifically, we demonstrated that HSI-M can be used to detect and semi-quantify these NPs in the ciliated protozoan Tetrahymena thermophila as a model aquatic organism. Detection and semi-quantification w...
Noble metal nanoparticles (NPs) supporting localized surface plasmon resonances are widely used in t...
Epigenetic modifications on DNA, especially on cytosine, play a critical role in regulating gene exp...
This study compared the relative cellular uptake of 80 nm silver nanoparticles (AgNP) with four diff...
Nanoscale contaminants (including engineered nanoparticles and nanoplastics) pose a significant thre...
We discuss a hyperspectral darkfield microscopy technique capable of imaging single nanoparticles at...
We review how the hyperspectral dark field analysis gives us quantitative insights into the manner t...
Nanomaterials are increasingly prevalent throughout industry, manufacturing, and biomedical research...
Nanoparticles are used extensively as biomedical imaging probes and potential therapeutic agents. As...
We introduce a novel methodology based on hyperspectral imagery with enhanced Darkfield microscopy f...
Metal nanoparticles (NPs) scatter and absorb light in precise, designable ways, making them agile ca...
We review how the hyperspectral dark field analysis gives us quantitative insights into the manner t...
Increasing consumer use of engineered nanomaterials has led to significantly increased efforts to un...
Significant growth in the understanding for nanotechnology has generated possibility of engineered n...
Increasing consumer use of engineered nanomaterials has led to significantly increased efforts to un...
© 2018 The Chemical Society of Japan. Herein we report the detection and differentiation of plasmoni...
Noble metal nanoparticles (NPs) supporting localized surface plasmon resonances are widely used in t...
Epigenetic modifications on DNA, especially on cytosine, play a critical role in regulating gene exp...
This study compared the relative cellular uptake of 80 nm silver nanoparticles (AgNP) with four diff...
Nanoscale contaminants (including engineered nanoparticles and nanoplastics) pose a significant thre...
We discuss a hyperspectral darkfield microscopy technique capable of imaging single nanoparticles at...
We review how the hyperspectral dark field analysis gives us quantitative insights into the manner t...
Nanomaterials are increasingly prevalent throughout industry, manufacturing, and biomedical research...
Nanoparticles are used extensively as biomedical imaging probes and potential therapeutic agents. As...
We introduce a novel methodology based on hyperspectral imagery with enhanced Darkfield microscopy f...
Metal nanoparticles (NPs) scatter and absorb light in precise, designable ways, making them agile ca...
We review how the hyperspectral dark field analysis gives us quantitative insights into the manner t...
Increasing consumer use of engineered nanomaterials has led to significantly increased efforts to un...
Significant growth in the understanding for nanotechnology has generated possibility of engineered n...
Increasing consumer use of engineered nanomaterials has led to significantly increased efforts to un...
© 2018 The Chemical Society of Japan. Herein we report the detection and differentiation of plasmoni...
Noble metal nanoparticles (NPs) supporting localized surface plasmon resonances are widely used in t...
Epigenetic modifications on DNA, especially on cytosine, play a critical role in regulating gene exp...
This study compared the relative cellular uptake of 80 nm silver nanoparticles (AgNP) with four diff...