134
Views
8
CrossRef citations to date
0
Altmetric
Original Research

Slowed Progression of Age-Related Geographic Atrophy Following Subthreshold Laser

ORCID Icon, ORCID Icon, ORCID Icon, &
Pages 2983-2993 | Published online: 01 Oct 2020

References

  • Age-Related Eye Disease Study Research Group. The age-related eye disease study system for classifying age-related macular degeneration from stereoscopic color fundus photographs: the Age-Related Eye Disease Study Report Number 6. Am J Ophthalmol. 2001;132(5):668–681.
  • Klein R, Meuer SM, Knudtson MD, Klein BE. The epidemiology of progression of pure geographic atrophy: the Beaver Dam Eye Study. Am Ophthalmol. 2008;146:692–699.
  • Rofagha S, Bhisitkul RB, Boyer DS, Sadda SR, Zhang K, SEVEN-UP Study Group. Seven-year outcomes in ranibizumab-treated patients in ANCHOR, MARINA, and HORIZON: a multicenter cohort study (SEVEN-UP). Ophthalmology. 2013;120:2292–2299.
  • Schmitz-Valckenberg S, Sadda S, Straugenghi G, et al. Geographic atrophy semantic considerations and literature review. Retina. 2016;36(12):2250–2264.
  • Boyers LN, Karimkhani C, Hilton J, Richheimer W, Dellaville RP. Global burden of eye and vision disease as reflected in the Cochrane Database of Systematic Reviews. JAMA Ophthalmol. 2015;133(1):25–31.
  • Luttrull JK, Musch MC, Mainster MA. Subthreshold diode micropulse photocoagulation for the treatment of clinically significant diabetic macular edema. Br J Ophthalmol. 2005;89(1):74–80.
  • Luttrull JK, Spink CJ. Serial optical coherence tomography of subthreshold diode laser micropulse photocoagulation for diabetic macular edema. Ophthalmic Surg Lasers Imag. 2006;37:370–377.
  • Luttrull JK, Spink CJ, Musch DA. Subthreshold diode micropulse panretinal photocoagulation for proliferative diabetic retinopathy. Eye. 2008;22(5):607–612.
  • Chhablani J, Roh YJ, Jobling AI, et al. Restorative retinal laser therapy: present state and future directions. Surv. Ophthalmol. 2017;4:pii: S0039-6257(17)30166–2. doi:10.1016/j.survophthal.2017.09.008
  • Luttrull JK, Chang DB, Margolis BWL, Dorin G, Luttrull DK. Laser re-sensitization of medically unresponsive neovascular age-related macular degeneration: efficacy and implications. Retina. 2015;35(6):1184–1194.
  • Luttrull JK, Margolis BWL. Functionally guided retinal protective therapy as prophylaxis for age-related and inherited retinal degenerations. A pilot study. Invest Ophthalmol Vis Sci. 2016;7(1):265–275. doi:10.1167/iovs.15-18163
  • Luttrull JK. Improved retinal and visual function following subthreshold diode micropulse laser (SDM) for retinitis pigmentosa. Eye. 2018. doi:10.1038/s41433-018-0017-3
  • Luttrull JK, Samples JR, Kent D, Lum BJ. Panmacular subthreshold diode micropulse laser (SDM) as neuroprotective therapy in primary open-angle glaucoma. Glaucoma Res. 2018;281–294.
  • Luttrull JK, Kent D. Modern retinal laser for neuroprotection in open-angle glaucoma. In: Samples JR, Ahmed IIK, editors. New Concepts in Glaucoma Surgery1. Amsterdam, Kugler Publications; 2017.
  • Luttrull JK, Sinclair SH, Elmann S, Glaser BM. Low incidence of choroidal neovascularization following subthreshold diode micropulse laser (SDM) for high-risk AMD. PLoS One. 2017;13(8):e0202097. doi:10.1371/journal.pone.0202097
  • Shen L, Liu F, Nardini HG, Del Priore LV. Natural history of geographic atrophy in untreated eyes with non exudative age-related macular degeneration. A systematic review and met-analysis. Ophthalmol Retina;2016. doi:10.1016/j.oret.2018.01.019
  • Keenan TD, Agrón E, Domalpally A, et al. Progression of geographic atrophy in age-related macular degeneration. AREDS report number 16. Ophthalmol. 2018;125(12):1913–1928.
  • Pau M, Moller PT, Kunzel SH, et al. Type 1 choroidal neovascularization is associated with localized progression of atrophy in age-related macular degeneration. Ophthalmol Retina. 2020;3:238–248.
  • Holz FG, Sadda SR, Busbee B, et al. Efficacy and Safety of Lampalizumab for geographic atrophy due to age-related macular degeneration: chroma and Spectri Phase 3 randomized clinical trials. JAMA Ophthalmol. 2018;136(6):666–677.
  • Uji A, Nittala NM, Hariri A, Velaga SB, Sadda SR. Directional kinetics analysis of the progression of geographic atrophy. Graefe’s Arch Clin Exp Ophthalmol;2010:1.
  • Monés J, Biarnés M. The rate of progression of geographic atrophy decreases with increasing baseline lesion size even after the square root transformation. Transl Vis Sci Technol. 2018;7(6):40.
  • Roider J, Brinkmann R, Wirbelauer C, Laqua H, Birngruber R. Subthreshold (retinal pigment epithelium) photocoagulation in macular diseases: a pilot study. Br J Ophthalmol. 2000;84:40–47.
  • Guymer RH, Wu Z, Hodgson LAB, et al. Subthreshold nanosecond laser intervention for age-related macular degeneration: the LEAD randomized controlled clinical trial. Ophthalmology. 2018;20:pii: S0161-6420(18)32135–3. doi:10.1016/j.ophtha.2018.09.015
  • Virgili G, Michelessi M, Parodi MB, Bacherini D, Evans JR. Laser treatment of drusen to prevent progression to advanced age-related macular degeneration. Syst Rev. 2015;10:CD006537. doi:10.1002/14651858.CD006537.pub3
  • Complications of Age-Related Macular Degeneration Prevention Trial Research Group. Laser treatment in patients with bilateral large drusen: the complications of age-related macular degeneration prevention trial. Ophthalmology. 2006;113(11):1974–1986.
  • Ho AC, Maguire MG, Yoken J, et al. Laser-induced drusen reduction improves visual function at 1 year. Choroidal Neovascularization Prevention Trial Research Group. Ophthalmology. 1999;106(7):1367–1373.
  • Owens SL, Bunce C, Brannon AJ, et al. Prophylactic laser treatment hastens choroidal neovascularization in unilateral age-related maculopathy: final results of the drusen laser study. Am J Ophthalmol. 2006;141(2):276–281.
  • Rodanant N, Friberg TR, Cheng L, et al. Predictors of drusen reduction after subthreshold infrared (810 nm) diode laser macular grid photocoagulation for nonexudative age-related macular degeneration. Am J Ophthalmol. 2002;134(4):577–585.
  • Kaiser RS, Berger JW, Maguire MG, Ho AC, Javornik NB. Choroidal Neovascularization Prevention Trial Study Group. Laser burn intensity and the risk for choroidal neovascularization in the CNVPT Fellow Eye Study. Arch Ophthalmol;2020.
  • Owens SL, Bunce C, Brannon AJ, Wormald R, Bird AC. Drusen Laser Study Group. Prophylactic laser treatment appears to promote choroidal neovascularisation in high-risk ARM: results of an interim analysis. Eye. 2003;17(5):623–627.
  • Luttrull JK, Dorin G. Subthreshold diode micropulse laser photocoagulation (SDM) as invisible retinal phototherapy for diabetic macular edema: a review. Curr Diabetes Rev. 2012;8:274–284.
  • Luttrull JK, Sinclair SH. Safety of transfoveal subthreshold diode micropulse laser for fovea-involving diabetic macular edema in eyes with good visual acuity. Retina. 2014;34:2010–2020.
  • Rosenfeld PJ, Feuer WJ. Warning: do not treat intermediate AMD with laser therapy. Am J Ophthalmol. 2019;125(6):839–840.
  • Kregel K. Invited Review: heat shock proteins: modifying factors in physiological stress responses and acquired thermotolerance. J Appl Physiol. 2002;5(92):2177–2186.
  • Karu T. Photobiology of low-power laser effects. Rev Health Phys. 1989;56(5):691–704.
  • Lund DJ, Sliney DH. A new understanding of multiple-pulsed laser-induced retinal injury thresholds. Health Phys. 2014;106(4):505–515.
  • Lavinsky D, Wang J, Huie P, et al. Nondamaging Retinal Laser Therapy: rationale and Applications to the Macula. Invest Ophthalmol Vis Sci. 2016;57(6):2488–2500.
  • Luttrull JK, Sramek C, Palanker D, Spink CJ, Musch DC. Long-term safety, high-resolution imaging, and tissue temperature modeling of subvisible diode micropulse photocoagulation for retinovascular macular edema. Retina. 2012;32(2):375–386.
  • Gao X, Xing D. Molecular mechanisms of cell proliferation induced by low power laser irradiation. J Biomed Sci. 2009;16:4.
  • Karu TI, Kolyakov SF. Exact action spectra for cellular responses relevant to phototherapy. Photomed Laser Surg. 2005;23:355–361.
  • Inagaki K, Shuo T, Katakura K, Ebihara N, Murakami A, Ohkoshi K. Sublethal Photothermal Stimulation with a Micropulse Laser Induces Heat Shock Protein Expression in ARPE-19 Cells. J Ophthalmol. 2015;2015:729792.
  • Chang DB, Luttrull JK. Comparison of subthreshold 577nm and 810nm micropulse laser effects on heat-shock protein activation kinetics: implications for treatment efficacy and safety. Trans Vis Sci Tech. 2020:1.
  • Midena E, Bini S, Martini F, et al. Changes of aqueous humor Muller cells’ biomarkers in human patients affected by diabetic macular edema after subthreshold micropulse laser treatment. Retina. 2018;8. doi:10.1097/IAE.0000000000002356.
  • Iwami H, Pruessner J, Shariaki K, Brinkmann R, Miura Y. Protective effect of a laser-induced sub-lethal temperature rise on RPE cells from oxidative stress. Exp Eye Res. 2014. doi:10.1016/j.exer.2014.04.014
  • Hattenbach LO, Beck KF, Pfeilschifter J, Koch F, Ohrloff C, Schake W. Pigment epithelium- derived factor is up regulated in photocoagulated human retinal pigment epithelial cells. Ophthalmic Res. 2005;37:341–346.
  • Caballero S, Kent DL, Sengupta N, et al. Bone Marrow-Derived Cell Recruitment to the Neurosensory Retina and Retinal Pigment Epithelial Cell Layer Following Subthreshold Retinal Phototherapy. Invest Ophthalmol Vis Sci. 2017;58(12):5164–5176. doi:10.1167/iovs.16-20736
  • De Cilla S, Vezzola D, Farruggio S, et al. The subthreshold micropulse laser treatment of the retina restores the oxidant/antioxidant balance and counteracts programmed forms of cell death in the mice eyes. Acta Ophthalmol. 2018. doi:10.1111/aos.13995
  • Flaxel C, Bradle J, Acott T, Samples JR. Retinal pigment epithelium produces matrix metalloproteinases after laser treatment. Retina. 2007;27:629–634.
  • Subrizi A, Toropainen E, Ramsay E, et al. Oxidative stress protection by exogenous delivery of rhHsp70 chaperone to the retinal pigment epithelium (RPE), a possible therapeutic strategy against RPE degeneration. Pharm Res. 2015;32(1):211–221.
  • Kannan R, Sreekumar PG, Hinton DR. Alpha crystallins in the retinal pigment epithelium and implications for the pathogenesis and treatment of age-related macular degeneration. Biochim Biophys Acta. 2016;1860(1 Pt B):258–268.
  • Kurihara T, Westenskow PD, Bravo S, et al. Targeted deletion of Vegfa in adult mice induces vision loss. J Clin Invest. 2012;122(11):4213–4217.
  • Bacon F. Novum Organnum. In: Devey J, editor. New York: P. F. Collier & Sons; 1902.
  • Nature Publishing; Policies: Availability of data, materials, code and protocols. https://www.nature.com/authors/policies/availability.html#data. Accessed August 17, 2020.