127
Views
9
CrossRef citations to date
0
Altmetric
ORIGINAL RESEARCH REPORTS

Biophotonic effect of diode laser irradiance on tensile strength of diabetic rats

, , , &
Pages 86-89 | Received 07 Aug 2014, Accepted 16 Sep 2014, Published online: 16 Oct 2014

References

  • Popp F-A, Beloussov LV. Integrative biophysics: biophotonics. New York: Springer; 2003.
  • Knappe V, Frank, F, Rohde, E. Principles of lasers and biophotonic effects. Photomed Laser Surg. 2004;22:411–417.
  • Yu Q, Proia M, Heikal AA. Integrated biophotonics approach for noninvasive and multiscale studies of biomolecular and cellular biophysics. J Biomed Opt. 2008;13:041315.
  • Suan LP, Bidin N, Cherng CJ, Hamid A. Light-based therapy on wound healing: a review. Laser Phys. 2014;24:083001.
  • Carroll JD. A 3D dose model for low level laser/led therapy biostimulation and bioinhibition. In Biomedical Optics (BiOS) 2008, International Society for Optics and Photonics. 2008. pp 684603.
  • Castro DJ, Ward PH, Saxton RE, Fetterman HR, Castro DJ. Bioinhibition of human fibroblast cultures sensitized to Q-switch II dye and treated with the Nd: YAG laser: A new technique of photodynamic therapy with lasers. Laryngoscope. 1989;99:421–428.
  • Conlan MJ, Rapley JW, Cobb CM. Biostimulation of wound healing by low‐energy laser irradiation A review. J Clin Periodontol. 1996;23:492–496.
  • Lipovsky A, Oron U, Gedanken A, Lubart R. Low-level visible light (LLVL) irradiation promotes proliferation of mesenchymal stem cells. Lasers Med Sci. 2012:1–5.
  • Mester A. Laser Biostimulation. Photomed Laser Surg. 2013;31:237–239.
  • Albertini R, Villaverde A, Aimbire F, Salgado M, Bjordal J, Alves L, et al. Anti-inflammatory effects of low-level laser therapy (LLLT) with two different red wavelengths (660nm and 684nm) in carrageenan-induced rat paw edema. J Photochem Photobiol B: Biology. 2007;89:50–55.
  • Bjordal JM, Couppé C, Chow RT, Turner J, Ljunggren EA. A systematic review of low level laser therapy with location-specific doses for pain from chronic joint disorders. Aust J Physiother. 2003;49:107–122.
  • Correa F, Lopes Martins RA, Correa JC, Iversen VV, Joenson J, Bjordal JM. Low-level laser therapy (GaAs λ = 904 nm) reduces inflammatory cell migration in mice with lipopolysaccharide-induced peritonitis. Photomed Laser Surg. 2007;25:245–249.
  • Stein A, Benayahu D, Maltz L, Oron U. Low-level laser irradiation promotes proliferation and differentiation of human osteoblasts in vitro. Photomed Laser Surg. 2005;23: 161–166.
  • Walsh L. The current status of low level laser therapy in dentistry, Part 1. Soft tissue applications. Aust Dent J. 1997;42:247–254.
  • Al-Watban FA, Zhang XY, Andres BL. Low-level laser therapy enhances wound healing in diabetic rats: a comparison of different lasers. Photomed Laser Surg. 2007;25:72–77.
  • Herascu N, Velciu B, Calin M, Savastru D, Talianu C. Low-level laser therapy (LLLT) efficacy in post-operative wounds. Photomed Laser Surg. 2005;23:70–73.
  • Hamblin MR, Demidova TN. Mechanisms of low level light therapy. In Biomedical Optics 2006, International Society for Optics and Photonics. 2006. pp 614001–614012.
  • Huang Y-Y, Chen AC-H, Carroll JD, Hamblin MR. Biphasic dose response in low level lightherapy. Dose-Response. 2009;7:358–383.
  • Hamblin MR, Demidova TN. Mechanisms of low level light therapy. Progress in Biomedical Optics and Imaging, Mechanisms for Low-Light Therapy, Dose-Response. 2006: Proc SPIE 6140, 614001-1-614001-11. February 2006.
  • Krishnan G, Bidin N. Determination of a stimulated emission cross section gradient on the basis of the performance of a diode-end-pumped Nd: YVO4 laser. Laser Phys Lett. 2013;10:055007.
  • Hawkins D, Houreld N, Abrahamse H. Low level laser therapy (LLLT) as an effective therapeutic modality for delayed wound healing. Ann N Y Acad Sci. 2005;1056:486–493.
  • Güngörmüş M, Akyol UK. Effect of biostimulation on wound healing in diabetic rats. Photomed Laser Surg. 2009; 27:607–610.
  • Tohgi H, Takahashi H, Watanabe K, Kuki H, Shirasawa Y. Development of large platelet aggregates from small aggregates as determined by laser-light scattering: effects of aggregant concentration and antiplatelet medication. Thromb Haemost. 1996;75:838–843.
  • Oron U, Ilic S, De Taboada L, Streeter J. Ga-As (808 nm) laser irradiation enhances ATP production in human neuronal cells in culture. Photomed Laser Surg. 2007;25:180–182.
  • Passarella S, Ostuni A, Atlante A, Quagliariello E. Increase in the ADP/ATP exchange in rat liver mitochondria irradiated in vitro by helium-neon laser. Biochem Biophys Res Commun. 1988;156:978–986.
  • Weksler BB, Marcus AJ, Jaffe EA. Synthesis of prostaglandin I2 (prostacyclin) by cultured human and bovine endothelial cells. Proc Natl Acad Sci. 1977;74:3922–3926.
  • Murugappa S, Kunapuli SP. The role of ADP receptors in platelet function. Front Biosci. 2006;11:1977–1986.
  • Witte MB, Thornton FJ, Kiyama T, Efron DT, Schulz GS, Moldawer LL, Barbul A. Metalloproteinase inhibitors and wound healing: a novel enhancer of wound strength. Surg. 1998;124:464–470.
  • Vogel H. Correlation between tensile strength and collagen content in rat skin. Effect of age and cortisol treatment. Connect Tissue Res. 1974;2:177–182.
  • Fahey TJ III, Sadaty A, Jones II, WG, Barber A, Smoller B, Shires GT. Diabetes impairs the late inflammatory response to wound healing. J Surg Res. 1991;50:308–313.
  • Spanheimer RG, Umpierrez GE, Stumpf V. Decreased collagen production in diabetic rats, Diabetes. 1988;37:371–376.
  • Riou J-PA, Cohen JR, Johnson H Jr. Factors influencing wound dehiscence. Am J Surg. 1992;163:324–330.
  • Kang KP, Lee JE, Lee AS, Jung YJ, Lee S, Park SK, et al. Diabetes-Experimental. Nephrology Dialysis Transplantation. 2012;27:ii159–i166.
  • Santos NR, dos Santos JN, dos Reis Jr, JA, Oliveira PC, de Sousa APC, de Carvalho CM, et al. Influence of the Use of Laser Phototherapy (λ660 or 790 nm) on the Survival of Cutaneous Flaps on Diabetic Rats. Photomed Laser Surg. 2010;28:483–488.
  • Kaviani A, Djavid GE, Ataie-Fashtami L, Fateh M, Ghodsi M, Salami M, et al. A randomized clinical trial on the effect of low-level laser therapy on chronic diabetic foot wound healing: a preliminary report. Photomed Laser Surg. 2011;29:109–114.
  • Kawalec JS, Hetherington VJ, Pfennigwerth TC, Dockery DS, Dolce M. Effect of a diode laser on wound healing by using diabetic and nondiabetic mice. J Foot Ankle Surg. 2004;43: 214–220.
  • Stadler I, Lanzafame RJ, Evans R, Narayan V, Dailey B, Buehner N, Naim JO. 830‐nm irradiation increases the wound tensile strength in a diabetic murine model, Lasers Surg Med. 2001;28:220–226.
  • Skopin MD, Molitor SC. Effects of near‐infrared laser exposure in a cellular model of wound healing. Photodermatol Photoimmunol Photomed. 2009;25:75–80.
  • Do Nascimento PM, Pinheiro ALB, Ângelo Castilho Salgado M, Pedreira Ramalho LM. A preliminary report on the effect of laser therapy on the healing of cutaneous surgical wounds as a consequence of an inversely proportional relationship between wavelength and intensity: histological study in rats. Photomed Laser Surg. 2004;22:513–518.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.