Effect of pre-irradiation with different doses, wavelengths, and application intervals of low-level laser therapy on cytochrome c oxidase activity in intact skeletal muscle of rats

Modulation of cytochrome c oxidase activity has been pointed as a possible key mechanism for low-level laser therapy (LLLT) in unhealthy biological tissues. But recent studies by our research group with LLLT in healthy muscles before exercise found delayed skeletal muscle fatigue development and imp...

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Veröffentlicht in:Lasers in medical science 2015-01, Vol.30 (1), p.59-66
Hauptverfasser: Albuquerque-Pontes, Gianna Móes, Vieira, Rodolfo de Paula, Tomazoni, Shaiane Silva, Caires, Cláudia Oliveira, Nemeth, Victoria, Vanin, Adriane Aver, Santos, Larissa Aline, Pinto, Henrique Dantas, Marcos, Rodrigo Labat, Bjordal, Jan Magnus, de Carvalho, Paulo de Tarso Camillo, Leal-Junior, Ernesto Cesar Pinto
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Sprache:eng
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Zusammenfassung:Modulation of cytochrome c oxidase activity has been pointed as a possible key mechanism for low-level laser therapy (LLLT) in unhealthy biological tissues. But recent studies by our research group with LLLT in healthy muscles before exercise found delayed skeletal muscle fatigue development and improved biochemical status in muscle tissue. Therefore, the aim of this study was to evaluate effects of different LLLT doses and wavelengths in cytochrome c oxidase activity in intact skeletal muscle. In this animal experiment, we irradiated the tibialis anterior muscle of rats with three different LLLT doses (1, 3, and 10 J) and wavelengths (660, 830, and 905 nm) with 50 mW power output. After irradiation, the analyses of cytochrome c oxidase expression by immunohistochemistry were analyzed at 5, 10, 30 min and at 1, 2, 12, and 24 h. Our results show that LLLT increased ( p  
ISSN:0268-8921
1435-604X
DOI:10.1007/s10103-014-1616-2