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New insight into erythrocyte through in vivo surface-enhanced Raman spectroscopy.


ABSTRACT: The 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 erythrocytes. For the first time to our knowledge, we describe how to use the SERS-RS approach to study two populations of hemoglobin molecules inside an intact living erythrocyte: submembrane and cytosolic hemoglobin (Hb(sm) and Hb(c)). We show that the conformation of Hb(sm) differs from the conformation of Hb(c). This finding has an important application, as the comparative study of Hb(sm) and Hb(c) could be successfully used in biomedical research and diagnostic tests.

SUBMITTER: Brazhe NA 

PROVIDER: S-EPMC2793362 | biostudies-literature | 2009 Dec

REPOSITORIES: biostudies-literature

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New insight into erythrocyte through in vivo surface-enhanced Raman spectroscopy.

Brazhe Nadezda A NA   Abdali Salim S   Brazhe Alexey R AR   Luneva Oksana G OG   Bryzgalova Nadezda Y NY   Parshina Eugenia Y EY   Sosnovtseva Olga V OV   Maksimov Georgy V GV  

Biophysical journal 20091201 12


The 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  ...[more]

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