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Photobiomodulation Mediates Neuroprotection against Retinal

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Photobiomodulation Mediates Neuroprotection against Retinal ( photobiomodulation-mediates-neuroprotection-against-retinal )

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Int. J. Mol. Sci. 2020, 21, 2370 18 of 20 14. Osborne, N.N.; Nez-lvarez, C.; del Olmo-Aguado, S.; Merrayo-Lloves, J. Visual light effects on mitochondria: The potential implications in relation to glaucoma. Mitochondrion 2017, 36, 29–35. [CrossRef] 15. del Olmo-Aguado, S.; Nez-lvarez, C.; Osborne, N.N. Red light of the visual spectrum attenuates cell death in culture and retinal ganglion cell death in situ. Acta Ophthalmol. 2016, 94, e481–e491. [CrossRef] 16. Tang, J.; Du, Y.; Lee, C.A.; Talahalli, R.; Eells, J.T.; Kern, T.S. Low-Intensity Far-Red Light Inhibits Early Lesions That Contribute to Diabetic Retinopathy: In Vivo and In Vitro. Investig. Ophthalmol. Vis. Sci. 2013, 54, 3681–3690. [CrossRef] 17. Fuma, S.; Murase, H.; Kuse, Y.; Tsuruma, K.; Shimazawa, M.; Hara, H. Photobiomodulation with 670 nm light increased phagocytosis in human retinal pigment epithelial cells. Mol. Vis. 2015, 21, 883–892. 18. Rutar, M.; Natoli, R.; Albarracin, R.; Valter, K.; Provis, J. 670-nm light treatment reduces complement propagation following retinal degeneration. J. Neuroinflammation 2012, 9, 257. [CrossRef] 19. Albarracin, R.; Natoli, R.; Rutar, M.; Valter, K.; Provis, J. 670 nm light mitigates oxygen-induced degeneration in C57BL/6J mouse retina. BMC Neurosci. 2013, 14, 125. [CrossRef] 20. Albarracin, R.; Eells, J.; Valter, K. Photobiomodulation Protects the Retina from Light-Induced Photoreceptor Degeneration. Investig. Ophthalmol. Vis. Sci. 2011, 52, 3582–3592. [CrossRef] 21. Begum, R.; Powner, M.B.; Hudson, N.; Hogg, C.; Jeffery, G. Treatment with 670 nm Light Up Regulates Cytochrome C Oxidase Expression and Reduces Inflammation in an Age-Related Macular Degeneration Model. PLoS ONE 2013, 8, e57828. [CrossRef] [PubMed] 22. Kokkinopoulos, I. 670 nm LED ameliorates inflammation in the CFH-/- mouse neural retina. J. Photochem. Photobiol. B Biol. 2013, 122, 24–31. [CrossRef] [PubMed] 23. Natoli, R.; Valter, K.; Barbosa, M.; Dahlstrom, J.; Rutar, M.; Kent, A.; Provis, J. 670nm Photobiomodulation as a Novel Protection against Retinopathy of Prematurity: Evidence from Oxygen Induced Retinopathy Models. PLoS ONE 2013, 8, e72135. [CrossRef] [PubMed] 24. Gkotsi, D.; Begum, R.; Salt, T.; Lascaratos, G.; Hogg, C.; Chau, K.Y.; Schapira, A.H.V.; Jeffery, G. Recharging mitochondrial batteries in old eyes. Near infra-red increases ATP. Exp. Eye Res. 2014, 122, 50–53. [CrossRef] [PubMed] 25. Sivapathasuntharam, C.; Sivaprasad, S.; Hogg, C.; Jeffery, G. Aging retinal function is improved by near infrared light (670 nm) that is associated with corrected mitochondrial decline. Neurobiol. Aging 2017, 52, 66–70. [CrossRef] [PubMed] 26. Kokkinopoulos, I.; Colman, A.; Hogg, C.; Heckenlively, J.; Jeffery, G. Age-related retinal inflammation is reduced by 670 nm light via increased mitochondrial membrane potential. Neurobiol. Aging 2013, 34, 602–609. [CrossRef] [PubMed] 27. Ivandic, B.T.; Ivandic, T. Low-Level Laser Therapy Improves Vision in Patients with Age-Related Macular Degeneration. Photomed. Laser Surg. 2008, 26, 241–245. [CrossRef] [PubMed] 28. Kaynezhad, P.; Tachtsidis, I.; Jeffery, G. Optical monitoring of retinal respiration in real time: 670 nm light increases the redox state of mitochondria. Exp. Eye Res. 2016, 152, 88–93. [CrossRef] [PubMed] 29. Roehlecke, C.; Schumann, U.; Ader, M.; Knels, L.; Funk, R.H.W. Influence of blue light on photoreceptors in a live retinal explant system. Mol. Vis. 2011, 17, 876–884. 30. Roehlecke, C.; Schumann, U.; Ader, M.; Brunssen, C.; Bramke, S.; Morawietz, H.; Funk, R.H.W. Stress Reaction in Outer Segments of Photoreceptors after Blue Light Irradiation. PLoS ONE 2013, 8, e71570. [CrossRef] 31. Schäfer, P.; Karl, M.O. Prospective purification and characterization of Müller glia in the mouse retina regeneration assay. Glia 2017, 65, 828–847. [CrossRef] [PubMed] 32. Retinal cell death dependent reactive proliferative gliosis in the mouse retina. Sci. Rep. 2017, 7, 1–16. [CrossRef] 33. Krigel, A.; Berdugo, M.; Picard, E.; Levy-Boukris, R.; Jaadane, I.; Jonet, L.; Dernigoghossian, M.; Andrieu-Soler, C.; Torriglia, A.; Behar-Cohen, F. Light-induced retinal damage using different light sources, protocols and rat strains reveals LED phototoxicity. Neuroscience 2016, 339, 296–307. [CrossRef] [PubMed] 34. Calzia, D.; Garbarino, G.; Caicci, F.; Manni, L.; Candiani, S.; Ravera, S.; Morelli, A.; Traverso, C.E.; Panfoli, I. Functional expression of electron transport chain complexes in mouse rod outer segments. Biochimie 2014, 102, 78–82. [CrossRef] [PubMed] 35. Kannan, R.; Sreekumar, P.G.; Hinton, D.R. Novel roles for alpha-crystallins in retinal function and disease. Prog. Retin. Eye Res. 2012, 31, 576–604. [CrossRef]

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