Many proposed biomedical applications for engineered gold nanoparticles require their incorporation by mammalian cells in specific numbers and locations. Here, the number of gold nanoparticles inside of individual mammalian stem cells was characterized using fast focused ion beam–scanning electron microscopy based tomography. Enhanced optical microscopy was used to provide a multiscale map of the <i>in vitro</i> sample, which allows cells of interest to be identified within their local environment. Cells were then serially sectioned using a gallium ion beam and imaged using a scanning electron beam. To confirm the accuracy of single cross sections, nanoparticles in similar cross sections were imaged using transmission electron microscopy an...
<p>(A) 0° STEM view through the thickness of a whole-mount macrophage. The magnification was 57,000×...
Transmission electron microscopy (TEM) in combination with electron tomography is widely used to obt...
Mesenchymal stem cells are widely used in many pre-clinical and clinical settings. Despite advances ...
AbstractIncreasing interest in the use of nanoparticles (NPs) to elucidate the function of nanometer...
Nanoparticles of heavy materials such as gold can be used as markers in quantitative electron micros...
AbstractIncreasing interest in the use of nanoparticles (NPs) to elucidate the function of nanometer...
<div><p>Nanoparticles of heavy materials such as gold can be used as markers in quantitative electro...
Nanoparticles of heavy materials such as gold can be used as markers in quantitative electron micros...
Nanoparticles of heavy materials such as gold can be used as markers in quantitative electron micros...
Gold nanoparticles are rapidly emerging for use in biomedical applications. Characterization of the ...
Gold nanoparticles are rapidly emerging for use in biomedical applications. Characterization of the ...
Nanoparticles of heavy materials such as gold can be used as markers in quantitative electron micros...
In the present study complementary high-resolution imaging techniques on different length scales are...
The ability to track cells in small-animal models of human disease is important because it gives the...
<p>(A) Nucleus and surrounding cellular materials. Clusters of LDL gold nanoparticles are visible as...
<p>(A) 0° STEM view through the thickness of a whole-mount macrophage. The magnification was 57,000×...
Transmission electron microscopy (TEM) in combination with electron tomography is widely used to obt...
Mesenchymal stem cells are widely used in many pre-clinical and clinical settings. Despite advances ...
AbstractIncreasing interest in the use of nanoparticles (NPs) to elucidate the function of nanometer...
Nanoparticles of heavy materials such as gold can be used as markers in quantitative electron micros...
AbstractIncreasing interest in the use of nanoparticles (NPs) to elucidate the function of nanometer...
<div><p>Nanoparticles of heavy materials such as gold can be used as markers in quantitative electro...
Nanoparticles of heavy materials such as gold can be used as markers in quantitative electron micros...
Nanoparticles of heavy materials such as gold can be used as markers in quantitative electron micros...
Gold nanoparticles are rapidly emerging for use in biomedical applications. Characterization of the ...
Gold nanoparticles are rapidly emerging for use in biomedical applications. Characterization of the ...
Nanoparticles of heavy materials such as gold can be used as markers in quantitative electron micros...
In the present study complementary high-resolution imaging techniques on different length scales are...
The ability to track cells in small-animal models of human disease is important because it gives the...
<p>(A) Nucleus and surrounding cellular materials. Clusters of LDL gold nanoparticles are visible as...
<p>(A) 0° STEM view through the thickness of a whole-mount macrophage. The magnification was 57,000×...
Transmission electron microscopy (TEM) in combination with electron tomography is widely used to obt...
Mesenchymal stem cells are widely used in many pre-clinical and clinical settings. Despite advances ...