DocumentCode :
1251186
Title :
Changes in absorbance of monolayer of living cells induced by laser radiation at 633, 670, and 820 nm
Author :
Karu, Tiina I. ; Afanasyeva, Natalya I. ; Kolyakov, Sergey F. ; Pyatibrat, Ljudmila V. ; Welser, Leslie
Author_Institution :
Inst. of the Problems of Laser & Inf. Technol., Acad. of Sci., Troitsk, Russia
Volume :
7
Issue :
6
fYear :
2001
Firstpage :
982
Lastpage :
988
Abstract :
Redox absorbance changes in living cells (monolayer of HeLa cells) under laser irradiation at 633, 670, and 820 nm have been studied by the method of multichannel recording in spectral range 530-890 nm. It has been found that the irradiation causes changes in the absorption spectrum of the cells in two regions, near 754-795 nm (maxima at 757, 775, and 795 nm) and near 812-873 nm (maxima at 819, 837, 858, and 873 nm). Changes occur in band parameters (peak positions, width, and integral intensity). Virtually no changes occur in the red spectral region and a few changes are recorded in the green region near 556-565 nm. The results obtained evidence that cytochrome c oxidase becomes more oxidized (which means that the oxidative metabolism is increased) due to irradiation at all wavelengths used. The results of present experiment support the suggestion (Karu, Lasers Life Sci., 2:53, 1988) that the mechanism of low-power laser therapy at the cellular level is based on the electronic excitation of chromophores in cytochrome c oxidase which modulates α redox status of the molecule and enhances its functional activity
Keywords :
biochemistry; biological effects of laser radiation; cellular effects of radiation; infrared spectra; oxidation; photochemistry; photoexcitation; reduction (chemical); visible spectra; 530 to 890 nm; 633 nm; 670 nm; 820 nm; HeLa cells; absorption spectrum; band parameters; chromophores; cytochrome c oxidase; electronic excitation; functional activity; laser irradiation; living cells; low-power laser therapy; monolayer; multichannel recording; oxidative metabolism; primary photoacceptor; redox absorbance changes; Acceleration; Biochemistry; Electromagnetic wave absorption; Laser excitation; Laser transitions; Mechanical factors; Medical treatment; Monitoring; Power lasers; Spectroscopy;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/2944.983303
Filename :
983303
Link To Document :
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