Multiple diseases are at some point associated with altered endothelial function, and endothelial dysfunction (ED) contributes to their pathophysiology. Biochemical changes of the dysfunctional endothelium are linked to various cellular organelles, including the mitochondria, endoplasmic reticulum, and nucleus, so organelle-specific insight is needed for better understanding of endothelial pathobiology. Raman imaging, which combines chemical specificity with microscopic resolution, has proved to be useful in detecting biochemical changes in ED at the cellular level. However, the detection of spectroscopic markers associated with specific cell organelles, while desirable, cannot easily be achieved by Raman imaging without labeling. This crit...
Chan J, Fore S, Wachsman-Hogiu S, Huser T. Raman spectroscopy and microscopy of individual cells and...
Raman spectroscopy is an established laser-based technology for the quality assurance of pharmaceuti...
In this work, 3D linear Raman spectroscopy was used to study lipid droplets (LDs) <i>ex vivo</i> in ...
Raman imaging using molecular reporters is a relatively new approach in subcellular investigations. ...
Abnormalities in the composition, quantity or size of lipid droplets in endothelial cells are recogn...
Komórki śródbłonka odgrywają kluczową rolę w utrzymywaniu homeostazy organizmu, poprzez wydzielanie ...
In the present work, we propose the spectroscopic approach to identify biochemical alterations in en...
A relatively new approach to subcellular research is Raman microscopy with the application of sensor...
Noninvasive and label-free vibrational spectroscopy and microscopy methods have shown great potentia...
In vivo cellular imaging and in vitro assays or sensors are fundamentally used to study the spatiote...
Direct imaging of metabolism in cells or multicellular organisms is important for understanding many...
Wachsmann-Hogiu S, Weeks T, Huser T. Chemical analysis in vivo and in vitro by Raman spectroscopy-fr...
Raman spectroscopy allows visualization of 2D and 3D chemical distributions at high spatial resoluti...
In this work, 3D linear Raman spectroscopy was used to study lipid droplets (LDs) ex vivo in liver t...
Raman micro-spectroscopy presents a highly sensitive, non-invasive, and rapid way to collect biochem...
Chan J, Fore S, Wachsman-Hogiu S, Huser T. Raman spectroscopy and microscopy of individual cells and...
Raman spectroscopy is an established laser-based technology for the quality assurance of pharmaceuti...
In this work, 3D linear Raman spectroscopy was used to study lipid droplets (LDs) <i>ex vivo</i> in ...
Raman imaging using molecular reporters is a relatively new approach in subcellular investigations. ...
Abnormalities in the composition, quantity or size of lipid droplets in endothelial cells are recogn...
Komórki śródbłonka odgrywają kluczową rolę w utrzymywaniu homeostazy organizmu, poprzez wydzielanie ...
In the present work, we propose the spectroscopic approach to identify biochemical alterations in en...
A relatively new approach to subcellular research is Raman microscopy with the application of sensor...
Noninvasive and label-free vibrational spectroscopy and microscopy methods have shown great potentia...
In vivo cellular imaging and in vitro assays or sensors are fundamentally used to study the spatiote...
Direct imaging of metabolism in cells or multicellular organisms is important for understanding many...
Wachsmann-Hogiu S, Weeks T, Huser T. Chemical analysis in vivo and in vitro by Raman spectroscopy-fr...
Raman spectroscopy allows visualization of 2D and 3D chemical distributions at high spatial resoluti...
In this work, 3D linear Raman spectroscopy was used to study lipid droplets (LDs) ex vivo in liver t...
Raman micro-spectroscopy presents a highly sensitive, non-invasive, and rapid way to collect biochem...
Chan J, Fore S, Wachsman-Hogiu S, Huser T. Raman spectroscopy and microscopy of individual cells and...
Raman spectroscopy is an established laser-based technology for the quality assurance of pharmaceuti...
In this work, 3D linear Raman spectroscopy was used to study lipid droplets (LDs) <i>ex vivo</i> in ...