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Raman study of mechanically induced oxygenation state transition of red blood cells using optical tweezers.


ABSTRACT: Raman spectroscopy was used to monitor changes in the oxygenation state of human red blood cells while they were placed under mechanical stress with the use of optical tweezers. The applied force is intended to simulate the stretching and compression that cells experience as they pass through vessels and smaller capillaries. In this work, spectroscopic evidence of a transition between the oxygenation and deoxygenation states, which is induced by stretching the cell with optical tweezers, is presented. The transition is due to enhanced hemoglobin-membrane and hemoglobin neighbor-neighbor interactions, and the latter was further studied by modeling the electrostatic binding of two of the protein structures.

SUBMITTER: Rao S 

PROVIDER: S-EPMC2710025 | biostudies-literature | 2009 Jan

REPOSITORIES: biostudies-literature

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Raman study of mechanically induced oxygenation state transition of red blood cells using optical tweezers.

Rao Satish S   Bálint Stefan S   Cossins Benjamin B   Guallar Victor V   Petrov Dmitri D  

Biophysical journal 20090101 1


Raman spectroscopy was used to monitor changes in the oxygenation state of human red blood cells while they were placed under mechanical stress with the use of optical tweezers. The applied force is intended to simulate the stretching and compression that cells experience as they pass through vessels and smaller capillaries. In this work, spectroscopic evidence of a transition between the oxygenation and deoxygenation states, which is induced by stretching the cell with optical tweezers, is pres  ...[more]

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