YuW., NaimJ.O., McGowanM., IppolitoK., LanzafameR.J.1997. Photomodulation of oxidative metabolism and electron chain enzymes in rat liver mitochondria. Photochem. Photobiol., 66:866–871.
MatichardE., Le HénanffA., SandersA., LeguyadecJ., CrickxB., DescampsV.2006. Effect of neonatal phototherapy on melanocytic nevus count in children. Arch. Dermatol., 142:1599–1604.
4.
WieckerT.S., LutherH., BuettnerP, BauerJ., GarbeC.2003. Moderate sun exposure and nevus counts in parents are associated with development of melanocytic nevi in childhood. Cancer, 97:628–638.
5.
LiebowC., KingsburyJ.S., KaminerR., CecereW., BraunR.E., CarterM.J., SatchidinandS.1990. CO2 Laser surgery promotes healing and cancer growth through growth factor release. Lasers Surg. Med., 10,Suppl 2:41.
6.
KaminerR., LiebowC., KingsburyJ.S., SatchidinandS.1990. Promotional effects of carcinoma in situ lesions by the CO2 laser in hamsters. Lasers Surg. Med., 10,Suppl 2:42.
7.
FisherG.J., WangZ.Q., DattaS.C., VaraniJ., KangS., VoorheesJ.J.1997. Pathophysiology of premature aging induced by ultraviolet light. N. Engl. J. Med., 337:1419–1429.
AnandS., ChakrabartiE., KawamuraH., TaylorC.R., MaytinE.V.2005. Ultraviolet light (UVA and UVB) induces the damage transcription factor CHOP/gadd153 in murine and human epidermis: evidence for a mechanism specific to intact skin. J. Invest. Dermatol., 125:323–333.
10.
OuhtitA., MullerH.K., DavisD.W., UllrichS.E., McConkeyD., AnanthaswamyH.N.2000. Temporal events in skin injury and the early adaptive responses in ultraviolet-irradiated mouse skin. Am. J. Pathol., 156:201–207.
11.
KerbR., BrockmöllerJ., ReumT., RootsI.1997. Deficiency of glutathione S-transferases T1 and M1 as heritable factors of increased cutaneous UV sensitivity. J. Invest. Dermatol., 108:229–232.
Santana–BlankL.2004. Contraindications in noninvasive laser therapy: truth and fiction. Photomed. Laser Surg., 22Author reply 442.
14.
KaruT.2010. Mitochondrial mechanisms of photobiomodulation in context of new data about multiple roles of ATP. Photomed. Laser Surg., 28:159–160.
15.
Santana–BlankL.A., Rodríguez–SantanaE., VargasF., Santana–RodríguezK.E.2002. Photo-induced cytomorphologic changes in an advanced cancer clinical trial. Lasers Surg. Med., 30:18–25.
16.
MikhailovV.A., SkobelkinO.K., DenisovI.N.et al. 1993. Investigations on the influence of low level diode laser irradiation of the growth of experimental tumors. Laser Therapy, 5:33–38.
17.
ShabbirM., RytenM., ThompsonC., MikhailidisD., BurnstockG.2008. Purinergic receptor-mediated effects of ATP in high-grade bladder cancer. BJU Intl., 101:106–112.
18.
SommerA.P., ZhuD., ScharnweberT.2010. Laser modulated transmembrane convection: implementation in cancer chemotherapy. J. Control. Release10.1016/j.jconrel.2010.10.010