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Low-Level Laser Therapy on Proliferation and Collagen Synthesis of Human Fibroblasts

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Low-Level Laser Therapy on Proliferation and Collagen Synthesis of Human Fibroblasts ( low-level-laser-therapy-proliferation-and-collagen-synthesis )

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Ma H et al. Laser therapy for wound healing References 1. You HJ, Namgoong S, Han SK, et al. Wound-healing poten- tial of human umbilical cord blood-derived mesenchymal stromal cells in vitro--a pilot study. Cytotherapy 2015;17(11): 1506-13. 2. Hehenberger K, Kratz G, Hansson A, et al. Fibroblasts de- rived from human chronic diabetic wounds have a de- creased proliferation rate, which is recovered by the addition of heparin. J Dermatol Sci 1998;16(2):144-51. 3. Shankaran V, Brooks M, Mostow E. Advanced therapies for chronic wounds: NPWT, engineered skin, growth factors, extracellular matrices. Dermatol Ther 2013;26(3):215-21. 4. Oh IY, Kim BJ, Kim MN, et al. Efficacy of light-emitting diode photomodulation in reducing erythema after fractional car- bon dioxide laser resurfacing: a pilot study. Dermatol Surg 2013;39(8):1171-6. 5. Yeh NG, Wu CH, Cheng TC. Light-emitting diodes-Their po- tential in biomedical applications. Renew Sust Energ Rev 2010;14(8):2161-66. 6. Chaves ME, Araujo AR, Piancastelli AC, et al. Effects of low- power light therapy on wound healing: LASER×LED. An Bras Dermatol 2014;89(4):616-23. 7. Moore P, Ridgway TD, Higbee RG, et al. Effect of wavelength on low-intensity laser irradiation-stimulated cell proliferation in vitro. Lasers Surg Med 2005;36(1):8-12. 8. Abrahamse H, Houreld N, Muller S, et al. Fluence and wavelength of low intensity laser irradiation affect activity and proliferation of human adipose derived stem cells: peer re- viewed original article. Medical Technology SA 2010;24(2): 15-20. 9. Pereira AN, Eduardo Cde P, Matson E, et al. Effect of low- power laser irradiation on cell growth and procollagen syn- thesis of cultured fibroblasts. Lasers Surg Med 2002;31(4): 263-7. 10. Hawkins D, Abrahamse H. Biological effects of helium-neon laser irradiation on normal and wounded human skin fibro- blasts. Photomed Laser Surg 2005;23(3):251-9. 11. Tada K, Ikeda K, Tomita K. Effect of polarized light emitting diode irradiation on wound healing. J Trauma 2009;67(5): 1073-9. 12. Yoo KH, Yeo IK, Hyun MY, et al. Efficacy of combination light-emitting diode (635 and 830 nm) therapy in treating lo- cal injection-site reactions after filler. Clin Exp Dermatol 2015;40(3):333-5. 13. Karu T. Photobiology of low-power laser effects. Health Phys 1989;56(5):691-704. 14. Karu T. Photobiological fundamentals of low-power laser therapy. IEEE J Quantum Elect 1987;23(10):1703-1717. 15. Wilden L, Karthein R. Import of radiation phenomena of electrons and therapeutic low-level laser in regard to the mi- tochondrial energy transfer. J Clin Laser Med Surg 1998; 16(3):159-65. 16. Karu T. Primary and Secondary Mechanisms of Action of Visible to near–IR Radiation on Cells. J Photochem Photobiol 1999 March [Epub]. https://doi.org/10.1016/S1011-1344 (98)00219-X. 17. Hawkins D, Abrahamse H. Effect of multiple exposures of low-level laser therapy on the cellular responses of wounded human skin fibroblasts. Photomed Laser Surg 2006;24(6): 705-14. 18. Lev-Tov H, Mamalis A, Brody N, et al. Inhibition of fibroblast proliferation in vitro using red light-emitting diodes. Dermatol Surg 2013;39(8):1167-70. 19. Almeida-Lopes L, Rigau J, Zangaro RA, et al. Comparison of the low level laser therapy effects on cultured human gingi- val fibroblasts proliferation using different irradiance and same fluence. Lasers Surg Med 2001;29(2):179-84. 20. Crisan B, Soritau O, Baciut M, et al. Influence of three laser wavelengths on human fibroblasts cell culture. Lasers Med Sci 2013;28(2):457-63. 21. Houreld N, Abrahamse H. Low-intensity laser irradiation stimulates wound healing in diabetic wounded fibroblast cells (WS1). Diabetes Technol Ther 2010;12(12):971-8. 22. Giese AC. Photosensitization of Organisms, with Special Ref- erence to Natural Photosensitizers. In: Hillenkamp F, Pratesi R, Sacchi CA, eds. Lasers in Biology and Medicine. Boston, MA: Springer US, 1980:299-314. 23. Gao X, Xing D. Molecular mechanisms of cell proliferation induced by low power laser irradiation. J Biomed Sci 2009; 16(1):4. 24. Saperia D, Glassberg E, Lyons RF, et al. Demonstration of el- evated type I and type III procollagen mRNA levels in cuta- neous wounds treated with helium-neon laser: proposed mechanism for enhanced wound healing. Biochem Biophys Res Commun 1986;138(3):1123-28. 6 www.jwmr.org https://doi.org/10.22467/jwmr.2018.00283

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