AbstractThe article presents a noninvasive approach to the study of erythrocyte properties by means of a comparative analysis of signals obtained by surface-enhanced Raman spectroscopy (SERS) and resonance Raman spectroscopy (RS). We report step-by-step the procedure for preparing experimental samples containing erythrocytes in their normal physiological environment in a mixture of colloid solution with silver nanoparticles and the procedure for the optimization of SERS conditions to achieve high signal enhancement without affecting the properties of living erythrocytes. By means of three independent techniques, we demonstrate that under the proposed conditions a colloid solution of silver nanoparticles does not affect the properties of ery...
Progress in the field of biocompatible SERS nanoparticles has promising prospects for biomedical app...
Raman imaging visualizes without the need for labeling the molecular composition of sub-cellular com...
Photoinduced oxygen dynamics in hemoglobin is monitored by surface enhanced resonant Raman spectrosc...
AbstractThe article presents a noninvasive approach to the study of erythrocyte properties by means ...
Herein, Raman and surface-enhanced Raman spectroscopies (SERS) were successfully employed to establi...
"In this work, the effects of thalassemia, a blood disease quite diffuse in the Mediterranean sea re...
We report how Raman difference imaging provides insight on cellular biochemistryin vivoas a function...
AbstractWe present the first recorded Raman spectra of haemoglobin in both the R and T states from w...
Hemoglobin (Hb) is a key component of respiratory system and as such plays important role in human p...
We applied surface-enhanced Raman spectroscopy (SERS) to cationic gold-labeled endothelial cells to ...
SERS spectra of whole human blood, blood plasma, and red blood cells on Au nanoparticle SiO<sub>2</s...
Cellular imaging techniques based on vibrational spectroscopy (Raman) are powerful tools in cell bio...
Application of modern and innovative spectroscopic and microscopic approaches to biomedical analysis...
Silver nanoparticles (Ag NPs) are known to exhibit broad antimicrobial activity. However, such activ...
Silver nanoparticles (Ag NPs) are known to exhibit broad antimicrobial activity. However, such activ...
Progress in the field of biocompatible SERS nanoparticles has promising prospects for biomedical app...
Raman imaging visualizes without the need for labeling the molecular composition of sub-cellular com...
Photoinduced oxygen dynamics in hemoglobin is monitored by surface enhanced resonant Raman spectrosc...
AbstractThe article presents a noninvasive approach to the study of erythrocyte properties by means ...
Herein, Raman and surface-enhanced Raman spectroscopies (SERS) were successfully employed to establi...
"In this work, the effects of thalassemia, a blood disease quite diffuse in the Mediterranean sea re...
We report how Raman difference imaging provides insight on cellular biochemistryin vivoas a function...
AbstractWe present the first recorded Raman spectra of haemoglobin in both the R and T states from w...
Hemoglobin (Hb) is a key component of respiratory system and as such plays important role in human p...
We applied surface-enhanced Raman spectroscopy (SERS) to cationic gold-labeled endothelial cells to ...
SERS spectra of whole human blood, blood plasma, and red blood cells on Au nanoparticle SiO<sub>2</s...
Cellular imaging techniques based on vibrational spectroscopy (Raman) are powerful tools in cell bio...
Application of modern and innovative spectroscopic and microscopic approaches to biomedical analysis...
Silver nanoparticles (Ag NPs) are known to exhibit broad antimicrobial activity. However, such activ...
Silver nanoparticles (Ag NPs) are known to exhibit broad antimicrobial activity. However, such activ...
Progress in the field of biocompatible SERS nanoparticles has promising prospects for biomedical app...
Raman imaging visualizes without the need for labeling the molecular composition of sub-cellular com...
Photoinduced oxygen dynamics in hemoglobin is monitored by surface enhanced resonant Raman spectrosc...