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Kvantovaya Elektronika, 2008 Volume 38, Number 7, Pages 695–701 (Mi qe13558)

This article is cited in 8 papers

Laser applications and other topics in quantum electronics

Study of photodissociation parameters of carboxyhemoglobin

V. V. Kuz'mina, V. V. Salmina, A. B. Salminab, A. S. Provorova

a Institute of Arts and Sciences, Siberian Federal University
b Krasnoyarsk State Medical Academy

Abstract: The general properties of photodissociation of carboxyhemoglobin (HbCO) in buffer solutions of whole human blood are studied by the flash photolysis method on a setup with intersecting beams. It is shown that the efficiency of photoinduced dissociation of the HbCO complex virtually linearly depends on the photolytic irradiation intensity for the average power density not exceeding 45 mW cm-2. The general dissociation of the HbCO complex in native conditions occurs in a narrower range of values of the saturation degree than in model experiments with the hemoglobin solution. The dependence of the pulse photolysis efficiency of HbCO on the photolytic radiation wavelength in the range from 550 to 585 nm has a broad bell shape. The efficiency maximum corresponds to the electronic Q transition (porphyrin ππ* absorption) in HbCO at a wavelength of 570 nm. No dissociation of the complex was observed under given experimental conditions upon irradiation of solutions by photolytic radiation at wavelengths above 585 nm.

PACS: 42.62.Be, 87.15.mk

Received: 05.03.2007
Revised: 28.11.2007


 English version:
Quantum Electronics, 2008, 38:7, 695–701

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