Skip to main content
Top
Published in: Journal of Neuroinflammation 1/2024

Open Access 01-12-2024 | Macular Degeneration | Review

The contribution of pattern recognition receptor signalling in the development of age related macular degeneration: the role of toll-like-receptors and the NLRP3-inflammasome

Authors: Alice Brandli, Kirstan A. Vessey, Erica L. Fletcher

Published in: Journal of Neuroinflammation | Issue 1/2024

Login to get access

Abstract

Age-related macular degeneration (AMD) is a leading cause of irreversible vision loss, characterised by the dysfunction and death of the photoreceptors and retinal pigment epithelium (RPE). Innate immune cell activation and accompanying para-inflammation have been suggested to contribute to the pathogenesis of AMD, although the exact mechanism(s) and signalling pathways remain elusive. Pattern recognition receptors (PRRs) are essential activators of the innate immune system and drivers of para-inflammation. Of these PRRs, the two most prominent are (1) Toll-like receptors (TLR) and (2) NOD-, LRR- and pyrin domain-containing protein 3 (NLRP3)-inflammasome have been found to modulate the progression of AMD. Mutations in TLR2 have been found to be associated with an increased risk of developing AMD. In animal models of AMD, inhibition of TLR and NLRP3 has been shown to reduce RPE cell death, inflammation and angiogenesis signalling, offering potential novel treatments for advanced AMD. Here, we examine the evidence for PRRs, TLRs2/3/4, and NLRP3-inflammasome pathways in macular degeneration pathogenesis.
Literature
1.
go back to reference Flaxman SR, Bourne RRA, Resnikoff S, Ackland P, Braithwaite T, Cicinelli MV, et al. Global causes of blindness and distance vision impairment 1990–2020: a systematic review and meta-analysis. Lancet Global Health. 2017;5(12):e1221–e34.PubMedCrossRef Flaxman SR, Bourne RRA, Resnikoff S, Ackland P, Braithwaite T, Cicinelli MV, et al. Global causes of blindness and distance vision impairment 1990–2020: a systematic review and meta-analysis. Lancet Global Health. 2017;5(12):e1221–e34.PubMedCrossRef
2.
go back to reference Wong WL, Su X, Li X, Cheung CM, Klein R, Cheng CY, et al. Global prevalence of age-related macular degeneration and disease burden projection for 2020 and 2040: a systematic review and meta-analysis. Lancet Global Health. 2014;2(2):e106–16.PubMedCrossRef Wong WL, Su X, Li X, Cheung CM, Klein R, Cheng CY, et al. Global prevalence of age-related macular degeneration and disease burden projection for 2020 and 2040: a systematic review and meta-analysis. Lancet Global Health. 2014;2(2):e106–16.PubMedCrossRef
3.
4.
go back to reference Solomon SD, Lindsley K, Vedula SS, Krzystolik MG, Hawkins BS. Anti-vascular endothelial growth factor for neovascular age-related macular degeneration. Cochrane Database Syst Rev. 2014;8(8):Cd005139.PubMed Solomon SD, Lindsley K, Vedula SS, Krzystolik MG, Hawkins BS. Anti-vascular endothelial growth factor for neovascular age-related macular degeneration. Cochrane Database Syst Rev. 2014;8(8):Cd005139.PubMed
5.
go back to reference Rosenfeld PJ, Brown DM, Heier JS, Boyer DS, Kaiser PK, Chung CY, et al. Ranibizumab for neovascular age-related macular degeneration. N Engl J Med. 2006;355(14):1419–31.PubMedCrossRef Rosenfeld PJ, Brown DM, Heier JS, Boyer DS, Kaiser PK, Chung CY, et al. Ranibizumab for neovascular age-related macular degeneration. N Engl J Med. 2006;355(14):1419–31.PubMedCrossRef
6.
go back to reference Heier JS, Khanani AM, Quezada Ruiz C, Basu K, Ferrone PJ, Brittain C, et al. Efficacy, durability, and safety of intravitreal faricimab up to every 16 weeks for neovascular age-related macular degeneration (TENAYA and LUCERNE): two randomised, double-masked, phase 3, non-inferiority trials. Lancet (London England). 2022;399(10326):729–40.PubMedCrossRef Heier JS, Khanani AM, Quezada Ruiz C, Basu K, Ferrone PJ, Brittain C, et al. Efficacy, durability, and safety of intravitreal faricimab up to every 16 weeks for neovascular age-related macular degeneration (TENAYA and LUCERNE): two randomised, double-masked, phase 3, non-inferiority trials. Lancet (London England). 2022;399(10326):729–40.PubMedCrossRef
7.
go back to reference Rofagha S, Bhisitkul RB, Boyer DS, Sadda SR, Zhang K. Seven-year outcomes in ranibizumab-treated patients in ANCHOR, MARINA, and HORIZON: a multicenter cohort study (SEVEN-UP). Ophthalmology. 2013;120(11):2292–9.PubMedCrossRef Rofagha S, Bhisitkul RB, Boyer DS, Sadda SR, Zhang K. Seven-year outcomes in ranibizumab-treated patients in ANCHOR, MARINA, and HORIZON: a multicenter cohort study (SEVEN-UP). Ophthalmology. 2013;120(11):2292–9.PubMedCrossRef
8.
go back to reference Daniel E, Pan W, Ying G-s, Kim BJ, Grunwald JE, Ferris FL, et al. Development and Course of scars in the comparison of age-related Macular Degeneration treatments trials. Ophthalmology. 2018;125(7):1037–46.PubMedCrossRef Daniel E, Pan W, Ying G-s, Kim BJ, Grunwald JE, Ferris FL, et al. Development and Course of scars in the comparison of age-related Macular Degeneration treatments trials. Ophthalmology. 2018;125(7):1037–46.PubMedCrossRef
9.
go back to reference Park YG, Park YS, Kim IB. Complement system and potential therapeutics in age-related Macular Degeneration. Int J Mol Sci. 2021;22(13). Park YG, Park YS, Kim IB. Complement system and potential therapeutics in age-related Macular Degeneration. Int J Mol Sci. 2021;22(13).
10.
go back to reference DeMaio A, Mehrotra S, Sambamurti K, Husain S. The role of the adaptive immune system and T cell dysfunction in neurodegenerative diseases. J Neuroinflamm. 2022;19(1):251.CrossRef DeMaio A, Mehrotra S, Sambamurti K, Husain S. The role of the adaptive immune system and T cell dysfunction in neurodegenerative diseases. J Neuroinflamm. 2022;19(1):251.CrossRef
11.
go back to reference Killick J, Morisse G, Sieger D, Astier AL. Complement as a regulator of adaptive immunity. Semin Immunopathol. 2018;40(1):37–48.PubMedCrossRef Killick J, Morisse G, Sieger D, Astier AL. Complement as a regulator of adaptive immunity. Semin Immunopathol. 2018;40(1):37–48.PubMedCrossRef
12.
go back to reference Xu H, Chen M, Forrester JV. Para-inflammation in the aging retina. Prog Retin Eye Res. 2009;28(5):348–68.PubMedCrossRef Xu H, Chen M, Forrester JV. Para-inflammation in the aging retina. Prog Retin Eye Res. 2009;28(5):348–68.PubMedCrossRef
13.
go back to reference Nita M, Grzybowski A, Ascaso FJ, Huerva V. Age-related macular degeneration in the aspect of chronic low-grade inflammation (pathophysiological parainflammation). Mediat Inflamm. 2014;2014:930671.CrossRef Nita M, Grzybowski A, Ascaso FJ, Huerva V. Age-related macular degeneration in the aspect of chronic low-grade inflammation (pathophysiological parainflammation). Mediat Inflamm. 2014;2014:930671.CrossRef
14.
go back to reference Yates JR, Sepp T, Matharu BK, Khan JC, Thurlby DA, Shahid H, et al. Complement C3 variant and the risk of age-related macular degeneration. N Engl J Med. 2007;357(6):553–61.PubMedCrossRef Yates JR, Sepp T, Matharu BK, Khan JC, Thurlby DA, Shahid H, et al. Complement C3 variant and the risk of age-related macular degeneration. N Engl J Med. 2007;357(6):553–61.PubMedCrossRef
15.
go back to reference Fritsche LG, Igl W, Bailey JN, Grassmann F, Sengupta S, Bragg-Gresham JL, et al. A large genome-wide association study of age-related macular degeneration highlights contributions of rare and common variants. Nat Genet. 2016;48(2):134–43.PubMedCrossRef Fritsche LG, Igl W, Bailey JN, Grassmann F, Sengupta S, Bragg-Gresham JL, et al. A large genome-wide association study of age-related macular degeneration highlights contributions of rare and common variants. Nat Genet. 2016;48(2):134–43.PubMedCrossRef
16.
go back to reference Magnusson KP, Duan S, Sigurdsson H, Petursson H, Yang Z, Zhao Y, et al. CFH Y402H confers similar risk of soft drusen and both forms of advanced AMD. PLoS Med. 2006;3(1):e5.PubMedCrossRef Magnusson KP, Duan S, Sigurdsson H, Petursson H, Yang Z, Zhao Y, et al. CFH Y402H confers similar risk of soft drusen and both forms of advanced AMD. PLoS Med. 2006;3(1):e5.PubMedCrossRef
17.
go back to reference Nozaki M, Raisler BJ, Sakurai E, Sarma JV, Barnum SR, Lambris JD, et al. Drusen complement components C3a and C5a promote choroidal neovascularization. Proc Natl Acad Sci USA. 2006;103(7):2328–33.ADSPubMedPubMedCentralCrossRef Nozaki M, Raisler BJ, Sakurai E, Sarma JV, Barnum SR, Lambris JD, et al. Drusen complement components C3a and C5a promote choroidal neovascularization. Proc Natl Acad Sci USA. 2006;103(7):2328–33.ADSPubMedPubMedCentralCrossRef
18.
go back to reference Anderson DH, Mullins RF, Hageman GS, Johnson LV. A role for local inflammation in the formation of drusen in the aging eye. Am J Ophthalmol. 2002;134(3):411–31.PubMedCrossRef Anderson DH, Mullins RF, Hageman GS, Johnson LV. A role for local inflammation in the formation of drusen in the aging eye. Am J Ophthalmol. 2002;134(3):411–31.PubMedCrossRef
19.
go back to reference Johnson LV, Ozaki S, Staples MK, Erickson PA, Anderson DH. A potential role for Immune Complex Pathogenesis in Drusen formation. Exp Eye Res. 2000;70(4):441–9.PubMedCrossRef Johnson LV, Ozaki S, Staples MK, Erickson PA, Anderson DH. A potential role for Immune Complex Pathogenesis in Drusen formation. Exp Eye Res. 2000;70(4):441–9.PubMedCrossRef
20.
go back to reference Crabb JW. The proteomics of drusen. Cold Spring Harbor Perspect Med. 2014;4(7):a017194.CrossRef Crabb JW. The proteomics of drusen. Cold Spring Harbor Perspect Med. 2014;4(7):a017194.CrossRef
21.
go back to reference Nittala MG, Metlapally R, Ip M, Chakravarthy U, Holz FG, Staurenghi G, et al. Association of Pegcetacoplan with Progression of Incomplete retinal pigment epithelium and outer retinal atrophy in Age-Related Macular Degeneration: a Post Hoc Analysis of the FILLY Randomized Clinical Trial. JAMA Ophthalmol. 2022;140(3):243–9.PubMedPubMedCentralCrossRef Nittala MG, Metlapally R, Ip M, Chakravarthy U, Holz FG, Staurenghi G, et al. Association of Pegcetacoplan with Progression of Incomplete retinal pigment epithelium and outer retinal atrophy in Age-Related Macular Degeneration: a Post Hoc Analysis of the FILLY Randomized Clinical Trial. JAMA Ophthalmol. 2022;140(3):243–9.PubMedPubMedCentralCrossRef
22.
go back to reference Goldberg R, Heier JS, Wykoff CC, Staurenghi G, Singh RP, Steinle N, et al. Efficacy of intravitreal pegcetacoplan in patients with geographic atrophy (GA): 12-month results from the phase 3 OAKS and DERBY studies. Investig Ophthalmol Vis Sci. 2022;63(7):1500. Goldberg R, Heier JS, Wykoff CC, Staurenghi G, Singh RP, Steinle N, et al. Efficacy of intravitreal pegcetacoplan in patients with geographic atrophy (GA): 12-month results from the phase 3 OAKS and DERBY studies. Investig Ophthalmol Vis Sci. 2022;63(7):1500.
23.
go back to reference Guillonneau X, Eandi CM, Paques M, Sahel JA, Sapieha P, Sennlaub F. On phagocytes and macular degeneration. Prog Retin Eye Res. 2017;61:98–128.PubMedCrossRef Guillonneau X, Eandi CM, Paques M, Sahel JA, Sapieha P, Sennlaub F. On phagocytes and macular degeneration. Prog Retin Eye Res. 2017;61:98–128.PubMedCrossRef
24.
go back to reference Grossniklaus HE, Ling JX, Wallace TM, Dithmar S, Lawson DH, Cohen C, et al. Macrophage and retinal pigment epithelium expression of angiogenic cytokines in choroidal neovascularization. Mol Vis. 2002;8:119–26.PubMed Grossniklaus HE, Ling JX, Wallace TM, Dithmar S, Lawson DH, Cohen C, et al. Macrophage and retinal pigment epithelium expression of angiogenic cytokines in choroidal neovascularization. Mol Vis. 2002;8:119–26.PubMed
25.
go back to reference Grossniklaus HE, Martinez JA, Brown VB, Lambert HM, Sternberg P Jr., Capone A Jr., et al. Immunohistochemical and histochemical properties of surgically excised subretinal neovascular membranes in age-related macular degeneration. Am J Ophthalmol. 1992;114(4):464–72.PubMedCrossRef Grossniklaus HE, Martinez JA, Brown VB, Lambert HM, Sternberg P Jr., Capone A Jr., et al. Immunohistochemical and histochemical properties of surgically excised subretinal neovascular membranes in age-related macular degeneration. Am J Ophthalmol. 1992;114(4):464–72.PubMedCrossRef
26.
go back to reference Combadière C, Feumi C, Raoul W, Keller N, Rodéro M, Pézard A, et al. CX3CR1-dependent subretinal microglia cell accumulation is associated with cardinal features of age-related macular degeneration. J Clin Investig. 2007;117(10):2920–8.PubMedPubMedCentralCrossRef Combadière C, Feumi C, Raoul W, Keller N, Rodéro M, Pézard A, et al. CX3CR1-dependent subretinal microglia cell accumulation is associated with cardinal features of age-related macular degeneration. J Clin Investig. 2007;117(10):2920–8.PubMedPubMedCentralCrossRef
27.
go back to reference Gupta N, Brown KE, Milam AH. Activated microglia in human retinitis pigmentosa, late-onset retinal degeneration, and age-related macular degeneration. Exp Eye Res. 2003;76(4):463–71.PubMedCrossRef Gupta N, Brown KE, Milam AH. Activated microglia in human retinitis pigmentosa, late-onset retinal degeneration, and age-related macular degeneration. Exp Eye Res. 2003;76(4):463–71.PubMedCrossRef
28.
go back to reference Lad EM, Cousins SW, Van Arnam JS, Proia AD. Abundance of infiltrating CD163 + cells in the retina of postmortem eyes with dry and neovascular age-related macular degeneration. Graefe’s archive for clinical and experimental ophthalmology = Albrecht von Graefes Archiv fur klinische und experimentelle Ophthalmologie. 2015;253(11):1941–5. Lad EM, Cousins SW, Van Arnam JS, Proia AD. Abundance of infiltrating CD163 + cells in the retina of postmortem eyes with dry and neovascular age-related macular degeneration. Graefe’s archive for clinical and experimental ophthalmology = Albrecht von Graefes Archiv fur klinische und experimentelle Ophthalmologie. 2015;253(11):1941–5.
29.
go back to reference Cherepanoff S, McMenamin P, Gillies MC, Kettle E, Sarks SH. Bruch’s membrane and choroidal macrophages in early and advanced age-related macular degeneration. Br J Ophthalmol. 2010;94(7):918–25.PubMedCrossRef Cherepanoff S, McMenamin P, Gillies MC, Kettle E, Sarks SH. Bruch’s membrane and choroidal macrophages in early and advanced age-related macular degeneration. Br J Ophthalmol. 2010;94(7):918–25.PubMedCrossRef
30.
go back to reference McLeod DS, Bhutto I, Edwards MM, Silver RE, Seddon JM, Lutty GA. Distribution and quantification of Choroidal macrophages in human eyes with age-related Macular Degeneration. Invest Ophthalmol Vis Sci. 2016;57(14):5843–55.PubMedPubMedCentralCrossRef McLeod DS, Bhutto I, Edwards MM, Silver RE, Seddon JM, Lutty GA. Distribution and quantification of Choroidal macrophages in human eyes with age-related Macular Degeneration. Invest Ophthalmol Vis Sci. 2016;57(14):5843–55.PubMedPubMedCentralCrossRef
31.
go back to reference Greferath U, Guymer RH, Vessey KA, Brassington K, Fletcher EL. Correlation of Histologic Features with in vivo imaging of reticular pseudodrusen. Ophthalmology. 2016;123(6):1320–31.PubMedCrossRef Greferath U, Guymer RH, Vessey KA, Brassington K, Fletcher EL. Correlation of Histologic Features with in vivo imaging of reticular pseudodrusen. Ophthalmology. 2016;123(6):1320–31.PubMedCrossRef
32.
go back to reference Hagbi-Levi S, Grunin M, Jaouni T, Tiosano L, Rinsky B, Elbaz-Hayoun S, et al. Proangiogenic characteristics of activated macrophages from patients with age-related macular degeneration. Neurobiol Aging. 2017;51:71–82.PubMedCrossRef Hagbi-Levi S, Grunin M, Jaouni T, Tiosano L, Rinsky B, Elbaz-Hayoun S, et al. Proangiogenic characteristics of activated macrophages from patients with age-related macular degeneration. Neurobiol Aging. 2017;51:71–82.PubMedCrossRef
33.
go back to reference Sennlaub F, Auvynet C, Calippe B, Lavalette S, Poupel L, Hu SJ, et al. CCR2(+) monocytes infiltrate atrophic lesions in age-related macular disease and mediate photoreceptor degeneration in experimental subretinal inflammation in Cx3cr1 deficient mice. EMBO Mol Med. 2013;5(11):1775–93.PubMedPubMedCentralCrossRef Sennlaub F, Auvynet C, Calippe B, Lavalette S, Poupel L, Hu SJ, et al. CCR2(+) monocytes infiltrate atrophic lesions in age-related macular disease and mediate photoreceptor degeneration in experimental subretinal inflammation in Cx3cr1 deficient mice. EMBO Mol Med. 2013;5(11):1775–93.PubMedPubMedCentralCrossRef
34.
go back to reference Kaarniranta K, Salminen A. Age-related macular degeneration: activation of innate immunity system via pattern recognition receptors. J Mol Med. 2009;87(2):117–23.PubMedCrossRef Kaarniranta K, Salminen A. Age-related macular degeneration: activation of innate immunity system via pattern recognition receptors. J Mol Med. 2009;87(2):117–23.PubMedCrossRef
35.
go back to reference Winkler BS, Boulton ME, Gottsch JD, Sternberg P. Oxidative damage and age-related macular degeneration. Mol Vis. 1999;5:32.PubMed Winkler BS, Boulton ME, Gottsch JD, Sternberg P. Oxidative damage and age-related macular degeneration. Mol Vis. 1999;5:32.PubMed
36.
go back to reference Ishibashi T, Murata T, Hangai M, Nagai R, Horiuchi S, Lopez P, et al. Advanced glycation end products in age-related macular degeneration. Archives Ophthalmol (Chicago Ill: 1960). 1998;116(12):1629–32.CrossRef Ishibashi T, Murata T, Hangai M, Nagai R, Horiuchi S, Lopez P, et al. Advanced glycation end products in age-related macular degeneration. Archives Ophthalmol (Chicago Ill: 1960). 1998;116(12):1629–32.CrossRef
37.
go back to reference Golestaneh N, Chu Y, Xiao Y-Y, Stoleru GL, Theos AC. Dysfunctional autophagy in RPE, a contributing factor in age-related macular degeneration. Cell Death Dis. 2018;8(1):e2537–e.CrossRef Golestaneh N, Chu Y, Xiao Y-Y, Stoleru GL, Theos AC. Dysfunctional autophagy in RPE, a contributing factor in age-related macular degeneration. Cell Death Dis. 2018;8(1):e2537–e.CrossRef
38.
go back to reference Kaneko H, Dridi S, Tarallo V, Gelfand BD, Fowler BJ, Cho WG, et al. DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration. Nature. 2011;471(7338):325–30.ADSPubMedPubMedCentralCrossRef Kaneko H, Dridi S, Tarallo V, Gelfand BD, Fowler BJ, Cho WG, et al. DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration. Nature. 2011;471(7338):325–30.ADSPubMedPubMedCentralCrossRef
39.
go back to reference Karunadharma PP, Nordgaard CL, Olsen TW, Ferrington DA. Mitochondrial DNA damage as a potential mechanism for age-related macular degeneration. Invest Ophthalmol Vis Sci. 2010;51(11):5470–9.PubMedPubMedCentralCrossRef Karunadharma PP, Nordgaard CL, Olsen TW, Ferrington DA. Mitochondrial DNA damage as a potential mechanism for age-related macular degeneration. Invest Ophthalmol Vis Sci. 2010;51(11):5470–9.PubMedPubMedCentralCrossRef
40.
go back to reference Halle A, Hornung V, Petzold GC, Stewart CR, Monks BG, Reinheckel T, et al. The NALP3 inflammasome is involved in the innate immune response to amyloid-beta. Nat Immunol. 2008;9(8):857–65.PubMedPubMedCentralCrossRef Halle A, Hornung V, Petzold GC, Stewart CR, Monks BG, Reinheckel T, et al. The NALP3 inflammasome is involved in the innate immune response to amyloid-beta. Nat Immunol. 2008;9(8):857–65.PubMedPubMedCentralCrossRef
41.
go back to reference Cao X. Self-regulation and cross-regulation of pattern-recognition receptor signalling in health and disease. Nat Rev Immunol. 2016;16(1):35–50.PubMedCrossRef Cao X. Self-regulation and cross-regulation of pattern-recognition receptor signalling in health and disease. Nat Rev Immunol. 2016;16(1):35–50.PubMedCrossRef
43.
go back to reference Hanus J, Anderson C, Sarraf D, Ma J, Wang S. Retinal pigment epithelial cell necroptosis in response to sodium iodate. Cell Death Discovery. 2016;2(1):16054.PubMedPubMedCentralCrossRef Hanus J, Anderson C, Sarraf D, Ma J, Wang S. Retinal pigment epithelial cell necroptosis in response to sodium iodate. Cell Death Discovery. 2016;2(1):16054.PubMedPubMedCentralCrossRef
44.
go back to reference Feng L, Ju M, Lee KYV, Mackey A, Evangelista M, Iwata D, et al. A proinflammatory function of toll-like receptor 2 in the retinal pigment epithelium as a Novel Target for reducing Choroidal Neovascularization in Age-Related Macular Degeneration. Am J Pathol. 2017;187(10):2208–21.PubMedPubMedCentralCrossRef Feng L, Ju M, Lee KYV, Mackey A, Evangelista M, Iwata D, et al. A proinflammatory function of toll-like receptor 2 in the retinal pigment epithelium as a Novel Target for reducing Choroidal Neovascularization in Age-Related Macular Degeneration. Am J Pathol. 2017;187(10):2208–21.PubMedPubMedCentralCrossRef
45.
go back to reference Anderson DH, Talaga KC, Rivest AJ, Barron E, Hageman GS, Johnson LV. Characterization of beta amyloid assemblies in drusen: the deposits associated with aging and age-related macular degeneration. Exp Eye Res. 2004;78(2):243–56.PubMedCrossRef Anderson DH, Talaga KC, Rivest AJ, Barron E, Hageman GS, Johnson LV. Characterization of beta amyloid assemblies in drusen: the deposits associated with aging and age-related macular degeneration. Exp Eye Res. 2004;78(2):243–56.PubMedCrossRef
46.
go back to reference Wang K, Yao Y, Zhu X, Zhang K, Zhou F, Zhu L. Amyloid β induces NLRP3 inflammasome activation in retinal pigment epithelial cells via NADPH oxidase- and mitochondria-dependent ROS production. J Biochem Mol Toxicol. 2017;31(6). Wang K, Yao Y, Zhu X, Zhang K, Zhou F, Zhu L. Amyloid β induces NLRP3 inflammasome activation in retinal pigment epithelial cells via NADPH oxidase- and mitochondria-dependent ROS production. J Biochem Mol Toxicol. 2017;31(6).
47.
go back to reference Gao J, Cui JZ, To E, Cao S, Matsubara JA. Evidence for the activation of pyroptotic and apoptotic pathways in RPE cells associated with NLRP3 inflammasome in the rodent eye. J Neuroinflamm. 2018;15(1):15.CrossRef Gao J, Cui JZ, To E, Cao S, Matsubara JA. Evidence for the activation of pyroptotic and apoptotic pathways in RPE cells associated with NLRP3 inflammasome in the rodent eye. J Neuroinflamm. 2018;15(1):15.CrossRef
48.
go back to reference Gong T, Liu L, Jiang W, Zhou R. DAMP-sensing receptors in sterile inflammation and inflammatory diseases. Nat Rev Immunol. 2020;20(2):95–112.PubMedCrossRef Gong T, Liu L, Jiang W, Zhou R. DAMP-sensing receptors in sterile inflammation and inflammatory diseases. Nat Rev Immunol. 2020;20(2):95–112.PubMedCrossRef
49.
go back to reference Di Virgilio F, Dal Ben D, Sarti AC, Giuliani AL, Falzoni S. The P2X7 Receptor in Infection and Inflammation. Immunity. 2017;47(1):15–31.PubMedCrossRef Di Virgilio F, Dal Ben D, Sarti AC, Giuliani AL, Falzoni S. The P2X7 Receptor in Infection and Inflammation. Immunity. 2017;47(1):15–31.PubMedCrossRef
50.
go back to reference Kawasaki T, Kawai T. Toll-like receptor signaling pathways. Front Immunol. 2014;5. Kawasaki T, Kawai T. Toll-like receptor signaling pathways. Front Immunol. 2014;5.
51.
go back to reference O’Neill LA, Bowie AG. The family of five: TIR-domain-containing adaptors in toll-like receptor signalling. Nat Rev Immunol. 2007;7(5):353–64.PubMedCrossRef O’Neill LA, Bowie AG. The family of five: TIR-domain-containing adaptors in toll-like receptor signalling. Nat Rev Immunol. 2007;7(5):353–64.PubMedCrossRef
52.
go back to reference Gay NJ, Symmons MF, Gangloff M, Bryant CE. Assembly and localization of toll-like receptor signalling complexes. Nat Rev Immunol. 2014;14(8):546–58.PubMedCrossRef Gay NJ, Symmons MF, Gangloff M, Bryant CE. Assembly and localization of toll-like receptor signalling complexes. Nat Rev Immunol. 2014;14(8):546–58.PubMedCrossRef
54.
55.
go back to reference Liu RT, Gao J, Cao S, Sandhu N, Cui JZ, Chou CL, et al. Inflammatory Mediators Induced by amyloid-Beta in the Retina and RPE in vivo: implications for Inflammasome activation in Age-Related Macular Degeneration. Investig Ophthalmol Vis Sci. 2013;54(3):2225–37.CrossRef Liu RT, Gao J, Cao S, Sandhu N, Cui JZ, Chou CL, et al. Inflammatory Mediators Induced by amyloid-Beta in the Retina and RPE in vivo: implications for Inflammasome activation in Age-Related Macular Degeneration. Investig Ophthalmol Vis Sci. 2013;54(3):2225–37.CrossRef
56.
go back to reference Pelegrin P. P2X7 receptor and the NLRP3 inflammasome: Partners in crime. Biochem Pharmacol. 2021;187:114385.PubMedCrossRef Pelegrin P. P2X7 receptor and the NLRP3 inflammasome: Partners in crime. Biochem Pharmacol. 2021;187:114385.PubMedCrossRef
57.
go back to reference Downs KP, Nguyen H, Dorfleutner A, Stehlik C. An overview of the non-canonical inflammasome. Mol Aspects Med. 2020;76:100924.PubMedCrossRef Downs KP, Nguyen H, Dorfleutner A, Stehlik C. An overview of the non-canonical inflammasome. Mol Aspects Med. 2020;76:100924.PubMedCrossRef
58.
go back to reference Rodríguez-Martínez S, Cancino-Díaz ME, Jiménez-Zamudio L, García-Latorre E, Cancino-Díaz JC. TLRs and NODs mRNA expression pattern in healthy mouse eye. Br J Ophthalmol. 2005;89(7):904–10.PubMedPubMedCentralCrossRef Rodríguez-Martínez S, Cancino-Díaz ME, Jiménez-Zamudio L, García-Latorre E, Cancino-Díaz JC. TLRs and NODs mRNA expression pattern in healthy mouse eye. Br J Ophthalmol. 2005;89(7):904–10.PubMedPubMedCentralCrossRef
59.
60.
go back to reference Chang JH, McCluskey P, Wakefield D. Expression of toll-like receptor 4 and its associated lipopolysaccharide receptor complex by resident antigen-presenting cells in the human uvea. Invest Ophthalmol Vis Sci. 2004;45(6):1871–8.PubMedCrossRef Chang JH, McCluskey P, Wakefield D. Expression of toll-like receptor 4 and its associated lipopolysaccharide receptor complex by resident antigen-presenting cells in the human uvea. Invest Ophthalmol Vis Sci. 2004;45(6):1871–8.PubMedCrossRef
61.
go back to reference Kumar MV, Nagineni CN, Chin MS, Hooks JJ, Detrick B. Innate immunity in the retina: toll-like receptor (TLR) signaling in human retinal pigment epithelial cells. J Neuroimmunol. 2004;153(1–2):7–15.PubMedPubMedCentralCrossRef Kumar MV, Nagineni CN, Chin MS, Hooks JJ, Detrick B. Innate immunity in the retina: toll-like receptor (TLR) signaling in human retinal pigment epithelial cells. J Neuroimmunol. 2004;153(1–2):7–15.PubMedPubMedCentralCrossRef
62.
go back to reference Kauppinen A, Niskanen H, Suuronen T, Kinnunen K, Salminen A, Kaarniranta K. Oxidative stress activates NLRP3 inflammasomes in ARPE-19 cells–implications for age-related macular degeneration (AMD). Immunol Lett. 2012;147(1–2):29–33.PubMedCrossRef Kauppinen A, Niskanen H, Suuronen T, Kinnunen K, Salminen A, Kaarniranta K. Oxidative stress activates NLRP3 inflammasomes in ARPE-19 cells–implications for age-related macular degeneration (AMD). Immunol Lett. 2012;147(1–2):29–33.PubMedCrossRef
63.
64.
go back to reference Lee MT, Hooper LC, Kump L, Hayashi K, Nussenblatt R, Hooks JJ, et al. Interferon-beta and adhesion molecules (E-selectin and s-intracellular adhesion molecule-1) are detected in sera from patients with retinal vasculitis and are induced in retinal vascular endothelial cells by toll-like receptor 3 signalling. Clin Exp Immunol. 2007;147(1):71–80.PubMedPubMedCentralCrossRef Lee MT, Hooper LC, Kump L, Hayashi K, Nussenblatt R, Hooks JJ, et al. Interferon-beta and adhesion molecules (E-selectin and s-intracellular adhesion molecule-1) are detected in sera from patients with retinal vasculitis and are induced in retinal vascular endothelial cells by toll-like receptor 3 signalling. Clin Exp Immunol. 2007;147(1):71–80.PubMedPubMedCentralCrossRef
65.
go back to reference Stewart EA, Wei R, Branch MJ, Sidney LE, Amoaku WM. Expression of toll-like receptors in human retinal and choroidal vascular endothelial cells. Exp Eye Res. 2015;138:114–23.PubMedCrossRef Stewart EA, Wei R, Branch MJ, Sidney LE, Amoaku WM. Expression of toll-like receptors in human retinal and choroidal vascular endothelial cells. Exp Eye Res. 2015;138:114–23.PubMedCrossRef
66.
go back to reference Noailles A, Kutsyr O, Maneu V, Ortuño-Lizarán I, Campello L, de Juan E, et al. The absence of toll-like receptor 4 mildly affects the structure and function in the Adult Mouse Retina. Front Cell Neurosci. 2019;13:59.PubMedPubMedCentralCrossRef Noailles A, Kutsyr O, Maneu V, Ortuño-Lizarán I, Campello L, de Juan E, et al. The absence of toll-like receptor 4 mildly affects the structure and function in the Adult Mouse Retina. Front Cell Neurosci. 2019;13:59.PubMedPubMedCentralCrossRef
67.
go back to reference Forrester JV, Xu H. Good news–bad news: the Yin and Yang of immune privilege in the eye. Front Immunol. 2012;3. Forrester JV, Xu H. Good news–bad news: the Yin and Yang of immune privilege in the eye. Front Immunol. 2012;3.
68.
go back to reference da Silva EZ, Jamur MC, Oliver C. Mast cell function: a new vision of an old cell. J Histochem Cytochemistry: Official J Histochem Soc. 2014;62(10):698–738.CrossRef da Silva EZ, Jamur MC, Oliver C. Mast cell function: a new vision of an old cell. J Histochem Cytochemistry: Official J Histochem Soc. 2014;62(10):698–738.CrossRef
69.
go back to reference Ferreira I, Liberal J, Martins JD, Silva A, Neves BM, Cruz MT. Inflammasome in dendritic cells immunobiology: implications to diseases and therapeutic strategies. Curr Drug Targets. 2017;18(9):1003–18.PubMed Ferreira I, Liberal J, Martins JD, Silva A, Neves BM, Cruz MT. Inflammasome in dendritic cells immunobiology: implications to diseases and therapeutic strategies. Curr Drug Targets. 2017;18(9):1003–18.PubMed
70.
go back to reference Chen W, Hu X, Zhao L, Li S, Lu H. Expression of toll-like receptor 4 in uvea-resident tissue macrophages during endotoxin-induced uveitis. Mol Vis. 2009;15:619–28.PubMedPubMedCentral Chen W, Hu X, Zhao L, Li S, Lu H. Expression of toll-like receptor 4 in uvea-resident tissue macrophages during endotoxin-induced uveitis. Mol Vis. 2009;15:619–28.PubMedPubMedCentral
71.
go back to reference Aluri J, Cooper MA, Schuettpelz LG. Toll-like receptor signaling in the establishment and function of the Immune System. Cells. 2021;10(6). Aluri J, Cooper MA, Schuettpelz LG. Toll-like receptor signaling in the establishment and function of the Immune System. Cells. 2021;10(6).
72.
go back to reference Yu F-SX, Hazlett LD. Toll-like receptors and the Eye. Investig Ophthalmol Vis Sci. 2006;47(4):1255–63.CrossRef Yu F-SX, Hazlett LD. Toll-like receptors and the Eye. Investig Ophthalmol Vis Sci. 2006;47(4):1255–63.CrossRef
73.
go back to reference Ginhoux F, Greter M, Leboeuf M, Nandi S, See P, Gokhan S, et al. Fate mapping analysis reveals that adult microglia derive from primitive macrophages. Volume 330. New York, NY: Science; 2010. pp. 841–5. 6005. Ginhoux F, Greter M, Leboeuf M, Nandi S, See P, Gokhan S, et al. Fate mapping analysis reveals that adult microglia derive from primitive macrophages. Volume 330. New York, NY: Science; 2010. pp. 841–5. 6005.
74.
go back to reference Dixon MA, Greferath U, Fletcher EL, Jobling AI. The contribution of Microglia to the development and maturation of the Visual System. Front Cell Neurosci. 2021;15. Dixon MA, Greferath U, Fletcher EL, Jobling AI. The contribution of Microglia to the development and maturation of the Visual System. Front Cell Neurosci. 2021;15.
75.
go back to reference Todd L, Palazzo I, Suarez L, Liu X, Volkov L, Hoang TV, et al. Reactive microglia and IL1β/IL-1R1-signaling mediate neuroprotection in excitotoxin-damaged mouse retina. J Neuroinflamm. 2019;16(1):118.CrossRef Todd L, Palazzo I, Suarez L, Liu X, Volkov L, Hoang TV, et al. Reactive microglia and IL1β/IL-1R1-signaling mediate neuroprotection in excitotoxin-damaged mouse retina. J Neuroinflamm. 2019;16(1):118.CrossRef
76.
go back to reference Kochan T, Singla A, Tosi J, Kumar A. Toll-like receptor 2 ligand pretreatment attenuates retinal microglial inflammatory response but enhances phagocytic activity toward Staphylococcus aureus. Infect Immun. 2012;80(6):2076–88.PubMedPubMedCentralCrossRef Kochan T, Singla A, Tosi J, Kumar A. Toll-like receptor 2 ligand pretreatment attenuates retinal microglial inflammatory response but enhances phagocytic activity toward Staphylococcus aureus. Infect Immun. 2012;80(6):2076–88.PubMedPubMedCentralCrossRef
77.
go back to reference Luo C, Yang X, Kain AD, Powell DW, Kuehn MH, Tezel G. Glaucomatous tissue stress and the regulation of immune response through glial toll-like receptor signaling. Invest Ophthalmol Vis Sci. 2010;51(11):5697–707.PubMedPubMedCentralCrossRef Luo C, Yang X, Kain AD, Powell DW, Kuehn MH, Tezel G. Glaucomatous tissue stress and the regulation of immune response through glial toll-like receptor signaling. Invest Ophthalmol Vis Sci. 2010;51(11):5697–707.PubMedPubMedCentralCrossRef
78.
go back to reference Huang Z, Zhou T, Sun X, Zheng Y, Cheng B, Li M, et al. Necroptosis in microglia contributes to neuroinflammation and retinal degeneration through TLR4 activation. Cell Death Differ. 2018;25(1):180–9.PubMedCrossRef Huang Z, Zhou T, Sun X, Zheng Y, Cheng B, Li M, et al. Necroptosis in microglia contributes to neuroinflammation and retinal degeneration through TLR4 activation. Cell Death Differ. 2018;25(1):180–9.PubMedCrossRef
79.
go back to reference Halder SK, Matsunaga H, Ishii KJ, Akira S, Miyake K, Ueda H. Retinal cell type-specific prevention of ischemia-induced damages by LPS-TLR4 signaling through microglia. J Neurochem. 2013;126(2):243–60.PubMedCrossRef Halder SK, Matsunaga H, Ishii KJ, Akira S, Miyake K, Ueda H. Retinal cell type-specific prevention of ischemia-induced damages by LPS-TLR4 signaling through microglia. J Neurochem. 2013;126(2):243–60.PubMedCrossRef
80.
go back to reference Ghosh F, Abdshill H, Arnér K, Voss U, Taylor L. Retinal neuroinflammatory induced neuronal degeneration - role of toll-like receptor-4 and relationship with gliosis. Exp Eye Res. 2018;169:99–110.PubMedCrossRef Ghosh F, Abdshill H, Arnér K, Voss U, Taylor L. Retinal neuroinflammatory induced neuronal degeneration - role of toll-like receptor-4 and relationship with gliosis. Exp Eye Res. 2018;169:99–110.PubMedCrossRef
81.
go back to reference Zhang Y, Xu Y, Sun Q, Xue S, Guan H, Ji M. Activation of P2X(7)R- NLRP3 pathway in Retinal microglia contribute to Retinal Ganglion Cells death in chronic ocular hypertension (COH). Exp Eye Res. 2019;188:107771.PubMedCrossRef Zhang Y, Xu Y, Sun Q, Xue S, Guan H, Ji M. Activation of P2X(7)R- NLRP3 pathway in Retinal microglia contribute to Retinal Ganglion Cells death in chronic ocular hypertension (COH). Exp Eye Res. 2019;188:107771.PubMedCrossRef
82.
go back to reference Mai K, Chui JJY, Di Girolamo N, McCluskey PJ, Wakefield D. Role of toll-like receptors in human iris pigment epithelial cells and their response to pathogen-associated molecular patterns. J Inflamm. 2014;11(1):20.CrossRef Mai K, Chui JJY, Di Girolamo N, McCluskey PJ, Wakefield D. Role of toll-like receptors in human iris pigment epithelial cells and their response to pathogen-associated molecular patterns. J Inflamm. 2014;11(1):20.CrossRef
83.
go back to reference Lo S-M, Hwang Y-S, Liu C-L, Shen C-N, Hong W-H, Yang W-C et al. Inhibiting TLR7 expression in the retinal pigment epithelium suppresses experimental autoimmune uveitis. Front Immunol. 2022;12. Lo S-M, Hwang Y-S, Liu C-L, Shen C-N, Hong W-H, Yang W-C et al. Inhibiting TLR7 expression in the retinal pigment epithelium suppresses experimental autoimmune uveitis. Front Immunol. 2022;12.
84.
go back to reference Mulfaul K, Ozaki E, Fernando N, Brennan K, Chirco KR, Connolly E, et al. Toll-like receptor 2 facilitates oxidative damage-Induced Retinal Degeneration. Cell Rep. 2020;30(7):2209–24e5.PubMedPubMedCentralCrossRef Mulfaul K, Ozaki E, Fernando N, Brennan K, Chirco KR, Connolly E, et al. Toll-like receptor 2 facilitates oxidative damage-Induced Retinal Degeneration. Cell Rep. 2020;30(7):2209–24e5.PubMedPubMedCentralCrossRef
85.
go back to reference Singh PK, Guest JM, Kanwar M, Boss J, Gao N, Juzych MS, et al. Zika virus infects cells lining the blood-retinal barrier and causes chorioretinal atrophy in mouse eyes. JCI Insight. 2017;2(4):e92340.PubMedPubMedCentralCrossRef Singh PK, Guest JM, Kanwar M, Boss J, Gao N, Juzych MS, et al. Zika virus infects cells lining the blood-retinal barrier and causes chorioretinal atrophy in mouse eyes. JCI Insight. 2017;2(4):e92340.PubMedPubMedCentralCrossRef
86.
go back to reference Choi SJLK-H, Park SJ, Park HS, Kim J, Kim S-K. The expression pattern of toll-like receptor (TLR) and cytokine production to TLR agonists in human retinal pigment epithelial cells. J Bacteriol Virol. 2007;37(2):119–28.CrossRef Choi SJLK-H, Park SJ, Park HS, Kim J, Kim S-K. The expression pattern of toll-like receptor (TLR) and cytokine production to TLR agonists in human retinal pigment epithelial cells. J Bacteriol Virol. 2007;37(2):119–28.CrossRef
87.
go back to reference Terheyden L, Roider J, Klettner A. Basolateral activation with TLR agonists induces polarized cytokine release and reduces barrier function in RPE in vitro. Graefe’s Archive Clin Experimental Ophthalmol = Albrecht Von Graefes Archiv fur Klinische und Experimentelle Ophthalmologie. 2021;259(2):413–24.CrossRef Terheyden L, Roider J, Klettner A. Basolateral activation with TLR agonists induces polarized cytokine release and reduces barrier function in RPE in vitro. Graefe’s Archive Clin Experimental Ophthalmol = Albrecht Von Graefes Archiv fur Klinische und Experimentelle Ophthalmologie. 2021;259(2):413–24.CrossRef
88.
go back to reference Elner VM, Elner SG, Bian ZM, Kindezelskii AL, Yoshida A, Petty HR. RPE CD14 immunohistochemical, genetic, and functional expression. Exp Eye Res. 2003;76(3):321–31.PubMedCrossRef Elner VM, Elner SG, Bian ZM, Kindezelskii AL, Yoshida A, Petty HR. RPE CD14 immunohistochemical, genetic, and functional expression. Exp Eye Res. 2003;76(3):321–31.PubMedCrossRef
89.
go back to reference Elner SG, Petty HR, Elner VM, Yoshida A, Bian ZM, Yang D et al. TLR4 mediates human retinal pigment epithelial endotoxin binding and cytokine expression. Trans Am Ophthalmol Soc. 2005;103:126 – 35; discussion 35 – 7. Elner SG, Petty HR, Elner VM, Yoshida A, Bian ZM, Yang D et al. TLR4 mediates human retinal pigment epithelial endotoxin binding and cytokine expression. Trans Am Ophthalmol Soc. 2005;103:126 – 35; discussion 35 – 7.
90.
go back to reference Kindzelskii AL, Elner VM, Elner SG, Yang D, Hughes BA, Petty HR. Toll-like receptor 4 (TLR4) of retinal pigment epithelial cells participates in transmembrane signaling in response to photoreceptor outer segments. J Gen Physiol. 2004;124(2):139–49.PubMedPubMedCentralCrossRef Kindzelskii AL, Elner VM, Elner SG, Yang D, Hughes BA, Petty HR. Toll-like receptor 4 (TLR4) of retinal pigment epithelial cells participates in transmembrane signaling in response to photoreceptor outer segments. J Gen Physiol. 2004;124(2):139–49.PubMedPubMedCentralCrossRef
91.
go back to reference Collin J, Hasoon MSR, Zerti D, Hammadi S, Dorgau B, Clarke L, et al. Single-cell RNA sequencing reveals transcriptional changes of human choroidal and retinal pigment epithelium cells during fetal development, in healthy adult and intermediate age-related macular degeneration. Hum Mol Genet. 2023;32(10):1698–710.PubMedPubMedCentralCrossRef Collin J, Hasoon MSR, Zerti D, Hammadi S, Dorgau B, Clarke L, et al. Single-cell RNA sequencing reveals transcriptional changes of human choroidal and retinal pigment epithelium cells during fetal development, in healthy adult and intermediate age-related macular degeneration. Hum Mol Genet. 2023;32(10):1698–710.PubMedPubMedCentralCrossRef
92.
go back to reference Voigt AP, Mulfaul K, Mullin NK, Flamme-Wiese MJ, Giacalone JC, Stone EM, et al. Single-cell transcriptomics of the human retinal pigment epithelium and choroid in health and macular degeneration. Proc Natl Acad Sci USA. 2019;116(48):24100–7.ADSPubMedPubMedCentralCrossRef Voigt AP, Mulfaul K, Mullin NK, Flamme-Wiese MJ, Giacalone JC, Stone EM, et al. Single-cell transcriptomics of the human retinal pigment epithelium and choroid in health and macular degeneration. Proc Natl Acad Sci USA. 2019;116(48):24100–7.ADSPubMedPubMedCentralCrossRef
93.
go back to reference Kosmidou C, Efstathiou NE, Hoang MV, Notomi S, Konstantinou EK, Hirano M, et al. Issues with the specificity of Immunological reagents for NLRP3: implications for age-related Macular Degeneration. Sci Rep. 2018;8(1):461.ADSPubMedPubMedCentralCrossRef Kosmidou C, Efstathiou NE, Hoang MV, Notomi S, Konstantinou EK, Hirano M, et al. Issues with the specificity of Immunological reagents for NLRP3: implications for age-related Macular Degeneration. Sci Rep. 2018;8(1):461.ADSPubMedPubMedCentralCrossRef
94.
go back to reference Shi G, Chen S, Wandu WS, Ogbeifun O, Nugent LF, Maminishkis A, et al. Inflammasomes Induced by 7-Ketocholesterol and other Stimuli in RPE and in bone marrow-derived cells Differ markedly in their production of IL-1β and IL-18. Invest Ophthalmol Vis Sci. 2015;56(3):1658–64.PubMedPubMedCentralCrossRef Shi G, Chen S, Wandu WS, Ogbeifun O, Nugent LF, Maminishkis A, et al. Inflammasomes Induced by 7-Ketocholesterol and other Stimuli in RPE and in bone marrow-derived cells Differ markedly in their production of IL-1β and IL-18. Invest Ophthalmol Vis Sci. 2015;56(3):1658–64.PubMedPubMedCentralCrossRef
95.
go back to reference Piippo N, Korhonen E, Hytti M, Kinnunen K, Kaarniranta K, Kauppinen A. Oxidative stress is the principal contributor to Inflammasome activation in Retinal Pigment Epithelium cells with defunct proteasomes and Autophagy. Cell Physiol Biochemistry: Int J Experimental Cell Physiol Biochem Pharmacol. 2018;49(1):359–67.CrossRef Piippo N, Korhonen E, Hytti M, Kinnunen K, Kaarniranta K, Kauppinen A. Oxidative stress is the principal contributor to Inflammasome activation in Retinal Pigment Epithelium cells with defunct proteasomes and Autophagy. Cell Physiol Biochemistry: Int J Experimental Cell Physiol Biochem Pharmacol. 2018;49(1):359–67.CrossRef
96.
go back to reference Piippo N, Korhonen E, Hytti M, Skottman H, Kinnunen K, Josifovska N, et al. Hsp90 inhibition as a means to inhibit activation of the NLRP3 inflammasome. Sci Rep. 2018;8(1):6720.ADSPubMedPubMedCentralCrossRef Piippo N, Korhonen E, Hytti M, Skottman H, Kinnunen K, Josifovska N, et al. Hsp90 inhibition as a means to inhibit activation of the NLRP3 inflammasome. Sci Rep. 2018;8(1):6720.ADSPubMedPubMedCentralCrossRef
97.
go back to reference Tarallo V, Hirano Y, Gelfand BD, Dridi S, Kerur N, Kim Y, et al. DICER1 loss and Alu RNA induce age-related macular degeneration via the NLRP3 inflammasome and MyD88. Cell. 2012;149(4):847–59.PubMedPubMedCentralCrossRef Tarallo V, Hirano Y, Gelfand BD, Dridi S, Kerur N, Kim Y, et al. DICER1 loss and Alu RNA induce age-related macular degeneration via the NLRP3 inflammasome and MyD88. Cell. 2012;149(4):847–59.PubMedPubMedCentralCrossRef
98.
99.
go back to reference Gelfand BD, Wright CB, Kim Y, Yasuma T, Yasuma R, Li S, et al. Iron Toxicity in the retina requires Alu RNA and the NLRP3 inflammasome. Cell Rep. 2015;11(11):1686–93.PubMedPubMedCentralCrossRef Gelfand BD, Wright CB, Kim Y, Yasuma T, Yasuma R, Li S, et al. Iron Toxicity in the retina requires Alu RNA and the NLRP3 inflammasome. Cell Rep. 2015;11(11):1686–93.PubMedPubMedCentralCrossRef
100.
go back to reference Brandstetter C, Mohr LK, Latz E, Holz FG, Krohne TU. Light induces NLRP3 inflammasome activation in retinal pigment epithelial cells via lipofuscin-mediated photooxidative damage. J Mol Med. 2015;93(8):905–16.PubMedCrossRef Brandstetter C, Mohr LK, Latz E, Holz FG, Krohne TU. Light induces NLRP3 inflammasome activation in retinal pigment epithelial cells via lipofuscin-mediated photooxidative damage. J Mol Med. 2015;93(8):905–16.PubMedCrossRef
101.
go back to reference Schäfer N, Rasras A, Ormenisan DM, Amslinger S, Enzmann V, Jägle H, et al. Complement factor H-Related 3 enhanced inflammation and complement activation in human RPE cells. Front Immunol. 2021;12:769242.PubMedPubMedCentralCrossRef Schäfer N, Rasras A, Ormenisan DM, Amslinger S, Enzmann V, Jägle H, et al. Complement factor H-Related 3 enhanced inflammation and complement activation in human RPE cells. Front Immunol. 2021;12:769242.PubMedPubMedCentralCrossRef
102.
go back to reference Korhonen E, Piippo N, Hytti M, Hyttinen JMT, Kaarniranta K, Kauppinen A. Only IL-1β release is inflammasome-dependent upon ultraviolet B irradiation although IL-18 is also secreted. FASEB Journal: Official Publication Federation Am Soc Experimental Biology. 2020;34(5):6437–48.CrossRef Korhonen E, Piippo N, Hytti M, Hyttinen JMT, Kaarniranta K, Kauppinen A. Only IL-1β release is inflammasome-dependent upon ultraviolet B irradiation although IL-18 is also secreted. FASEB Journal: Official Publication Federation Am Soc Experimental Biology. 2020;34(5):6437–48.CrossRef
103.
go back to reference Alge CS, Hauck SM, Priglinger SG, Kampik A, Ueffing M. Differential protein profiling of primary versus immortalized human RPE cells identifies expression patterns associated with cytoskeletal remodeling and cell survival. J Proteome Res. 2006;5(4):862–78.PubMedCrossRef Alge CS, Hauck SM, Priglinger SG, Kampik A, Ueffing M. Differential protein profiling of primary versus immortalized human RPE cells identifies expression patterns associated with cytoskeletal remodeling and cell survival. J Proteome Res. 2006;5(4):862–78.PubMedCrossRef
104.
go back to reference Kleinman ME, Yamada K, Takeda A, Chandrasekaran V, Nozaki M, Baffi JZ, et al. Sequence- and target-independent angiogenesis suppression by siRNA via TLR3. Nature. 2008;452(7187):591–7.ADSPubMedPubMedCentralCrossRef Kleinman ME, Yamada K, Takeda A, Chandrasekaran V, Nozaki M, Baffi JZ, et al. Sequence- and target-independent angiogenesis suppression by siRNA via TLR3. Nature. 2008;452(7187):591–7.ADSPubMedPubMedCentralCrossRef
105.
go back to reference Seidel A, Liu L, Jiang Y, Steinle JJ. Loss of TLR4 in endothelial cells but not Müller cells protects the diabetic retina. Exp Eye Res. 2021;206:108557.PubMedPubMedCentralCrossRef Seidel A, Liu L, Jiang Y, Steinle JJ. Loss of TLR4 in endothelial cells but not Müller cells protects the diabetic retina. Exp Eye Res. 2021;206:108557.PubMedPubMedCentralCrossRef
106.
go back to reference Wang L, Wang J, Fang J, Zhou H, Liu X, Su SB. High glucose induces and activates toll-like receptor 4 in endothelial cells of diabetic retinopathy. Diabetol Metab Syndr. 2015;7:89.PubMedPubMedCentralCrossRef Wang L, Wang J, Fang J, Zhou H, Liu X, Su SB. High glucose induces and activates toll-like receptor 4 in endothelial cells of diabetic retinopathy. Diabetol Metab Syndr. 2015;7:89.PubMedPubMedCentralCrossRef
107.
go back to reference Cioanca AV, McCluskey PJ, Eamegdool SS, Madigan MC. Human choroidal melanocytes express functional toll-like receptors (TLRs). Exp Eye Res. 2018;173:73–84.PubMedCrossRef Cioanca AV, McCluskey PJ, Eamegdool SS, Madigan MC. Human choroidal melanocytes express functional toll-like receptors (TLRs). Exp Eye Res. 2018;173:73–84.PubMedCrossRef
108.
go back to reference Hu DN, Zhang R, Iacob CE, Yao S, Yang SF, Chan CC, et al. Toll-like receptor 2 and 6 agonist fibroblast-stimulating lipopeptide increases expression and secretion of CXCL1 and CXCL2 by uveal melanocytes. Exp Eye Res. 2022;216:108943.PubMedCrossRef Hu DN, Zhang R, Iacob CE, Yao S, Yang SF, Chan CC, et al. Toll-like receptor 2 and 6 agonist fibroblast-stimulating lipopeptide increases expression and secretion of CXCL1 and CXCL2 by uveal melanocytes. Exp Eye Res. 2022;216:108943.PubMedCrossRef
109.
go back to reference Bringmann A, Wiedemann P. Müller glial cells in retinal disease. Ophthalmol J Int D’ophtalmologie Int J Ophthalmol Z fur Augenheilkunde. 2012;227(1):1–19.CrossRef Bringmann A, Wiedemann P. Müller glial cells in retinal disease. Ophthalmol J Int D’ophtalmologie Int J Ophthalmol Z fur Augenheilkunde. 2012;227(1):1–19.CrossRef
110.
go back to reference Lin X, Fang D, Zhou H, Su SB. The expression of toll-like receptors in murine Müller cells, the glial cells in retina. Neurol Sciences: Official J Italian Neurol Soc Italian Soc Clin Neurophysiol. 2013;34(8):1339–46.CrossRef Lin X, Fang D, Zhou H, Su SB. The expression of toll-like receptors in murine Müller cells, the glial cells in retina. Neurol Sciences: Official J Italian Neurol Soc Italian Soc Clin Neurophysiol. 2013;34(8):1339–46.CrossRef
111.
112.
go back to reference Rivera JC, Sitaras N, Noueihed B, Hamel D, Madaan A, Zhou T et al. Microglia and interleukin-1β in ischemic retinopathy elicit microvascular degeneration through neuronal semaphorin-3A. Arteriosclerosis, thrombosis, and vascular biology. 2013;33(8):1881–91. Rivera JC, Sitaras N, Noueihed B, Hamel D, Madaan A, Zhou T et al. Microglia and interleukin-1β in ischemic retinopathy elicit microvascular degeneration through neuronal semaphorin-3A. Arteriosclerosis, thrombosis, and vascular biology. 2013;33(8):1881–91.
113.
go back to reference Pronin A, Pham D, An W, Dvoriantchikova G, Reshetnikova G, Qiao J et al. Inflammasome Activation induces pyroptosis in the retina exposed to ocular hypertension Injury. Front Mol Neurosci. 2019;12. Pronin A, Pham D, An W, Dvoriantchikova G, Reshetnikova G, Qiao J et al. Inflammasome Activation induces pyroptosis in the retina exposed to ocular hypertension Injury. Front Mol Neurosci. 2019;12.
114.
go back to reference Qi Y, Zhao M, Bai Y, Huang L, Yu W, Bian Z, et al. Retinal ischemia/reperfusion injury is mediated by toll-like receptor 4 activation of NLRP3 inflammasomes. Invest Ophthalmol Vis Sci. 2014;55(9):5466–75.PubMedCrossRef Qi Y, Zhao M, Bai Y, Huang L, Yu W, Bian Z, et al. Retinal ischemia/reperfusion injury is mediated by toll-like receptor 4 activation of NLRP3 inflammasomes. Invest Ophthalmol Vis Sci. 2014;55(9):5466–75.PubMedCrossRef
115.
go back to reference Sauter MM, Kolb AW, Brandt CR. Toll-like receptors 4, 5, 6 and 7 are constitutively expressed in non-human primate retinal neurons. J Neuroimmunol. 2018;322:26–35.PubMedPubMedCentralCrossRef Sauter MM, Kolb AW, Brandt CR. Toll-like receptors 4, 5, 6 and 7 are constitutively expressed in non-human primate retinal neurons. J Neuroimmunol. 2018;322:26–35.PubMedPubMedCentralCrossRef
116.
go back to reference Singh PK, Kumar A. Retinal photoreceptor expresses toll-like receptors (TLRs) and elicits innate responses following TLR Ligand and bacterial challenge. PLoS ONE. 2015;10(3):e0119541.PubMedPubMedCentralCrossRef Singh PK, Kumar A. Retinal photoreceptor expresses toll-like receptors (TLRs) and elicits innate responses following TLR Ligand and bacterial challenge. PLoS ONE. 2015;10(3):e0119541.PubMedPubMedCentralCrossRef
117.
go back to reference Gao ML, Wu KC, Deng WL, Lei XL, Xiang L, Zhou GH, et al. Toll-like receptor 3 activation initiates photoreceptor cell death in vivo and in Vitro. Invest Ophthalmol Vis Sci. 2017;58(2):801–11.PubMedCrossRef Gao ML, Wu KC, Deng WL, Lei XL, Xiang L, Zhou GH, et al. Toll-like receptor 3 activation initiates photoreceptor cell death in vivo and in Vitro. Invest Ophthalmol Vis Sci. 2017;58(2):801–11.PubMedCrossRef
118.
go back to reference Yi H, Patel AK, Sodhi CP, Hackam DJ, Hackam AS. Novel role for the innate immune receptor toll-like receptor 4 (TLR4) in the regulation of the wnt signaling pathway and photoreceptor apoptosis. PLoS ONE. 2012;7(5):e36560.ADSPubMedPubMedCentralCrossRef Yi H, Patel AK, Sodhi CP, Hackam DJ, Hackam AS. Novel role for the innate immune receptor toll-like receptor 4 (TLR4) in the regulation of the wnt signaling pathway and photoreceptor apoptosis. PLoS ONE. 2012;7(5):e36560.ADSPubMedPubMedCentralCrossRef
119.
go back to reference Viringipurampeer IA, Metcalfe AL, Bashar AE, Sivak O, Yanai A, Mohammadi Z, et al. NLRP3 inflammasome activation drives bystander cone photoreceptor cell death in a P23H rhodopsin model of retinal degeneration. Hum Mol Genet. 2016;25(8):1501–16.PubMedPubMedCentralCrossRef Viringipurampeer IA, Metcalfe AL, Bashar AE, Sivak O, Yanai A, Mohammadi Z, et al. NLRP3 inflammasome activation drives bystander cone photoreceptor cell death in a P23H rhodopsin model of retinal degeneration. Hum Mol Genet. 2016;25(8):1501–16.PubMedPubMedCentralCrossRef
120.
go back to reference Albalawi F, Lu W, Beckel JM, Lim JC, McCaughey SA, Mitchell CH. The P2X7 Receptor Primes IL-1β and the NLRP3 Inflammasome in Astrocytes Exposed to Mechanical Strain. Front Cell Neurosci. 2017;11:227.PubMedPubMedCentralCrossRef Albalawi F, Lu W, Beckel JM, Lim JC, McCaughey SA, Mitchell CH. The P2X7 Receptor Primes IL-1β and the NLRP3 Inflammasome in Astrocytes Exposed to Mechanical Strain. Front Cell Neurosci. 2017;11:227.PubMedPubMedCentralCrossRef
121.
go back to reference Tseng WA, Thein T, Kinnunen K, Lashkari K, Gregory MS, D’Amore PA, et al. NLRP3 inflammasome activation in retinal pigment epithelial cells by lysosomal destabilization: implications for age-related macular degeneration. Invest Ophthalmol Vis Sci. 2013;54(1):110–20.PubMedPubMedCentralCrossRef Tseng WA, Thein T, Kinnunen K, Lashkari K, Gregory MS, D’Amore PA, et al. NLRP3 inflammasome activation in retinal pigment epithelial cells by lysosomal destabilization: implications for age-related macular degeneration. Invest Ophthalmol Vis Sci. 2013;54(1):110–20.PubMedPubMedCentralCrossRef
122.
go back to reference Jager RD, Mieler WF, Miller JW. Age-related Macular Degeneration. N Engl J Med. 2008;358(24):2606–17.PubMedCrossRef Jager RD, Mieler WF, Miller JW. Age-related Macular Degeneration. N Engl J Med. 2008;358(24):2606–17.PubMedCrossRef
123.
go back to reference Güven M, Batar B, Mutlu T, Bostancı M, Mete M, Aras C, et al. Toll-like receptors 2 and 4 polymorphisms in age-related Macular Degeneration. Curr Eye Res. 2016;41(6):856–61.PubMedCrossRef Güven M, Batar B, Mutlu T, Bostancı M, Mete M, Aras C, et al. Toll-like receptors 2 and 4 polymorphisms in age-related Macular Degeneration. Curr Eye Res. 2016;41(6):856–61.PubMedCrossRef
124.
go back to reference Yang Z, Stratton C, Francis PJ, Kleinman ME, Tan PL, Gibbs D, et al. Toll-like receptor 3 and geographic atrophy in age-related macular degeneration. N Engl J Med. 2008;359(14):1456–63.PubMedPubMedCentralCrossRef Yang Z, Stratton C, Francis PJ, Kleinman ME, Tan PL, Gibbs D, et al. Toll-like receptor 3 and geographic atrophy in age-related macular degeneration. N Engl J Med. 2008;359(14):1456–63.PubMedPubMedCentralCrossRef
125.
go back to reference Edwards AO, Chen D, Fridley BL, James KM, Wu Y, Abecasis G, et al. Toll-like receptor polymorphisms and age-related Macular Degeneration. Investig Ophthalmol Vis Sci. 2008;49(4):1652–9.CrossRef Edwards AO, Chen D, Fridley BL, James KM, Wu Y, Abecasis G, et al. Toll-like receptor polymorphisms and age-related Macular Degeneration. Investig Ophthalmol Vis Sci. 2008;49(4):1652–9.CrossRef
126.
go back to reference Bochud PY, Hawn TR, Aderem A. Cutting edge: a toll-like receptor 2 polymorphism that is associated with lepromatous leprosy is unable to mediate mycobacterial signaling. J Immunol (Baltimore Md: 1950). 2003;170(7):3451–4.CrossRef Bochud PY, Hawn TR, Aderem A. Cutting edge: a toll-like receptor 2 polymorphism that is associated with lepromatous leprosy is unable to mediate mycobacterial signaling. J Immunol (Baltimore Md: 1950). 2003;170(7):3451–4.CrossRef
127.
go back to reference Zhou P, Fan L, Yu KD, Zhao MW, Li XX. Toll-like receptor 3 C1234T may protect against geographic atrophy through decreased dsRNA binding capacity. FASEB Journal: Official Publication Federation Am Soc Experimental Biology. 2011;25(10):3489–95.CrossRef Zhou P, Fan L, Yu KD, Zhao MW, Li XX. Toll-like receptor 3 C1234T may protect against geographic atrophy through decreased dsRNA binding capacity. FASEB Journal: Official Publication Federation Am Soc Experimental Biology. 2011;25(10):3489–95.CrossRef
128.
go back to reference Sharma NK, Sharma K, Gupta A, Prabhakar S, Singh R, Gupta PK et al. Does toll-like receptor-3 (TLR-3) have any role in Indian AMD phenotype? Molecular and cellular biochemistry. 2014;393(1–2):1–8. Sharma NK, Sharma K, Gupta A, Prabhakar S, Singh R, Gupta PK et al. Does toll-like receptor-3 (TLR-3) have any role in Indian AMD phenotype? Molecular and cellular biochemistry. 2014;393(1–2):1–8.
129.
go back to reference Cheng Y, Li MW, Li HP, Zeng WT, Zhou P, Huang LZ, et al. Toll-like receptor 3 polymorphism is not associated with neovascular age-related macular degeneration and polypoidal choroidal vasculopathy in the Chinese. Genet Mol Research: GMR. 2014;13(1):302–9.PubMedCrossRef Cheng Y, Li MW, Li HP, Zeng WT, Zhou P, Huang LZ, et al. Toll-like receptor 3 polymorphism is not associated with neovascular age-related macular degeneration and polypoidal choroidal vasculopathy in the Chinese. Genet Mol Research: GMR. 2014;13(1):302–9.PubMedCrossRef
130.
go back to reference Sng CC, Cackett PD, Yeo IY, Thalamuthu A, Venkatraman A, Venkataraman D, et al. Toll-like receptor 3 polymorphism rs3775291 is not associated with choroidal neovascularization or polypoidal choroidal vasculopathy in Chinese subjects. Ophthalmic Res. 2011;45(4):191–6.PubMedCrossRef Sng CC, Cackett PD, Yeo IY, Thalamuthu A, Venkatraman A, Venkataraman D, et al. Toll-like receptor 3 polymorphism rs3775291 is not associated with choroidal neovascularization or polypoidal choroidal vasculopathy in Chinese subjects. Ophthalmic Res. 2011;45(4):191–6.PubMedCrossRef
131.
go back to reference Zareparsi S, Buraczynska M, Branham KE, Shah S, Eng D, Li M, et al. Toll-like receptor 4 variant D299G is associated with susceptibility to age-related macular degeneration. Hum Mol Genet. 2005;14(11):1449–55.PubMedCrossRef Zareparsi S, Buraczynska M, Branham KE, Shah S, Eng D, Li M, et al. Toll-like receptor 4 variant D299G is associated with susceptibility to age-related macular degeneration. Hum Mol Genet. 2005;14(11):1449–55.PubMedCrossRef
132.
go back to reference Sarli A, Skalidakis I, Velissari A, Koutsandrea C, Stefaniotou M, Petersen MB et al. Investigation of associations of ARMS2, CD14, and TLR4 gene polymorphisms with wet age-related macular degeneration in a Greek population. Clinical ophthalmology (Auckland, NZ). 2017;11:1347–58. Sarli A, Skalidakis I, Velissari A, Koutsandrea C, Stefaniotou M, Petersen MB et al. Investigation of associations of ARMS2, CD14, and TLR4 gene polymorphisms with wet age-related macular degeneration in a Greek population. Clinical ophthalmology (Auckland, NZ). 2017;11:1347–58.
133.
go back to reference Cho Y, Wang JJ, Chew EY, Ferris FL III, Mitchell P, Chan C-C, et al. Toll-like receptor polymorphisms and age-related Macular Degeneration: replication in three case–control samples. Investig Ophthalmol Vis Sci. 2009;50(12):5614–8.CrossRef Cho Y, Wang JJ, Chew EY, Ferris FL III, Mitchell P, Chan C-C, et al. Toll-like receptor polymorphisms and age-related Macular Degeneration: replication in three case–control samples. Investig Ophthalmol Vis Sci. 2009;50(12):5614–8.CrossRef
134.
go back to reference Despriet DD, Bergen AA, Merriam JE, Zernant J, Barile GR, Smith RT, et al. Comprehensive analysis of the candidate genes CCL2, CCR2, and TLR4 in age-related macular degeneration. Invest Ophthalmol Vis Sci. 2008;49(1):364–71.PubMedCrossRef Despriet DD, Bergen AA, Merriam JE, Zernant J, Barile GR, Smith RT, et al. Comprehensive analysis of the candidate genes CCL2, CCR2, and TLR4 in age-related macular degeneration. Invest Ophthalmol Vis Sci. 2008;49(1):364–71.PubMedCrossRef
135.
go back to reference Kaur I, Hussain A, Hussain N, Das T, Pathangay A, Mathai A, et al. Analysis of CFH, TLR4, and APOE polymorphism in India suggests the Tyr402His variant of CFH to be a global marker for age-related macular degeneration. Invest Ophthalmol Vis Sci. 2006;47(9):3729–35.PubMedCrossRef Kaur I, Hussain A, Hussain N, Das T, Pathangay A, Mathai A, et al. Analysis of CFH, TLR4, and APOE polymorphism in India suggests the Tyr402His variant of CFH to be a global marker for age-related macular degeneration. Invest Ophthalmol Vis Sci. 2006;47(9):3729–35.PubMedCrossRef
136.
go back to reference Roshanipour N, Shahriyari E, Ghaffari Laleh M, Vahedi L, Mirjand Gerami S, Khamaneh A. Associations of TLR4 and IL-8 genes polymorphisms with age-related macular degeneration (AMD): a systematic review and meta-analysis. Ophthalmic Genet. 2021;42(6):641–9.PubMedCrossRef Roshanipour N, Shahriyari E, Ghaffari Laleh M, Vahedi L, Mirjand Gerami S, Khamaneh A. Associations of TLR4 and IL-8 genes polymorphisms with age-related macular degeneration (AMD): a systematic review and meta-analysis. Ophthalmic Genet. 2021;42(6):641–9.PubMedCrossRef
137.
go back to reference Vacchelli E, Galluzzi L, Rousseau V, Rigoni A, Tesniere A, Delahaye N, et al. Loss-of-function alleles of P2RX7 and TLR4 fail to affect the response to chemotherapy in non-small cell lung cancer. Oncoimmunology. 2012;1(3):271–8.PubMedPubMedCentralCrossRef Vacchelli E, Galluzzi L, Rousseau V, Rigoni A, Tesniere A, Delahaye N, et al. Loss-of-function alleles of P2RX7 and TLR4 fail to affect the response to chemotherapy in non-small cell lung cancer. Oncoimmunology. 2012;1(3):271–8.PubMedPubMedCentralCrossRef
138.
go back to reference Asea A, Rehli M, Kabingu E, Boch JA, Bare O, Auron PE, et al. Novel signal transduction pathway utilized by extracellular HSP70: role of toll-like receptor (TLR) 2 and TLR4. J Biol Chem. 2002;277(17):15028–34.PubMedCrossRef Asea A, Rehli M, Kabingu E, Boch JA, Bare O, Auron PE, et al. Novel signal transduction pathway utilized by extracellular HSP70: role of toll-like receptor (TLR) 2 and TLR4. J Biol Chem. 2002;277(17):15028–34.PubMedCrossRef
139.
go back to reference Park JS, Gamboni-Robertson F, He Q, Svetkauskaite D, Kim JY, Strassheim D, et al. High mobility group box 1 protein interacts with multiple toll-like receptors. Am J Physiol Cell Physiol. 2006;290(3):C917–24.PubMedCrossRef Park JS, Gamboni-Robertson F, He Q, Svetkauskaite D, Kim JY, Strassheim D, et al. High mobility group box 1 protein interacts with multiple toll-like receptors. Am J Physiol Cell Physiol. 2006;290(3):C917–24.PubMedCrossRef
140.
go back to reference Midwood K, Sacre S, Piccinini AM, Inglis J, Trebaul A, Chan E, et al. Tenascin-C is an endogenous activator of toll-like receptor 4 that is essential for maintaining inflammation in arthritic joint disease. Nat Med. 2009;15(7):774–80.PubMedCrossRef Midwood K, Sacre S, Piccinini AM, Inglis J, Trebaul A, Chan E, et al. Tenascin-C is an endogenous activator of toll-like receptor 4 that is essential for maintaining inflammation in arthritic joint disease. Nat Med. 2009;15(7):774–80.PubMedCrossRef
141.
go back to reference Termeer C, Benedix F, Sleeman J, Fieber C, Voith U, Ahrens T, et al. Oligosaccharides of Hyaluronan activate dendritic cells via toll-like receptor 4. J Exp Med. 2002;195(1):99–111.PubMedPubMedCentralCrossRef Termeer C, Benedix F, Sleeman J, Fieber C, Voith U, Ahrens T, et al. Oligosaccharides of Hyaluronan activate dendritic cells via toll-like receptor 4. J Exp Med. 2002;195(1):99–111.PubMedPubMedCentralCrossRef
142.
go back to reference Johnson GB, Brunn GJ, Kodaira Y, Platt JL. Receptor-mediated monitoring of tissue well-being via detection of soluble heparan sulfate by Toll-like receptor 4. Journal of immunology (Baltimore, Md: 1950). 2002;168(10):5233-9. Johnson GB, Brunn GJ, Kodaira Y, Platt JL. Receptor-mediated monitoring of tissue well-being via detection of soluble heparan sulfate by Toll-like receptor 4. Journal of immunology (Baltimore, Md: 1950). 2002;168(10):5233-9.
143.
go back to reference Jiang K, Fairless E, Kanda A, Gotoh N, Cogliati T, Li T, et al. Divergent effects of HSP70 overexpression in photoreceptors during inherited retinal degeneration. Invest Ophthalmol Vis Sci. 2020;61(12):25.PubMedPubMedCentralCrossRef Jiang K, Fairless E, Kanda A, Gotoh N, Cogliati T, Li T, et al. Divergent effects of HSP70 overexpression in photoreceptors during inherited retinal degeneration. Invest Ophthalmol Vis Sci. 2020;61(12):25.PubMedPubMedCentralCrossRef
144.
go back to reference Arimura N, Ki-i Y, Hashiguchi T, Kawahara K, Biswas KK, Nakamura M, et al. Intraocular expression and release of high-mobility group box 1 protein in retinal detachment. Lab Invest. 2009;89(3):278–89.PubMedCrossRef Arimura N, Ki-i Y, Hashiguchi T, Kawahara K, Biswas KK, Nakamura M, et al. Intraocular expression and release of high-mobility group box 1 protein in retinal detachment. Lab Invest. 2009;89(3):278–89.PubMedCrossRef
145.
go back to reference Kobayashi Y, Yoshida S, Zhou Y, Nakama T, Ishikawa K, Kubo Y, et al. Tenascin-C secreted by transdifferentiated retinal pigment epithelial cells promotes choroidal neovascularization via integrin αV. Lab Invest. 2016;96(11):1178–88.PubMedCrossRef Kobayashi Y, Yoshida S, Zhou Y, Nakama T, Ishikawa K, Kubo Y, et al. Tenascin-C secreted by transdifferentiated retinal pigment epithelial cells promotes choroidal neovascularization via integrin αV. Lab Invest. 2016;96(11):1178–88.PubMedCrossRef
146.
go back to reference Kelly U, Yu L, Kumar P, Ding JD, Jiang H, Hageman GS et al. Heparan sulfate, including that in Bruch’s membrane, inhibits the complement alternative pathway: implications for age-related macular degeneration. Journal of immunology (Baltimore, Md: 1950). 2010;185(9):5486-94. Kelly U, Yu L, Kumar P, Ding JD, Jiang H, Hageman GS et al. Heparan sulfate, including that in Bruch’s membrane, inhibits the complement alternative pathway: implications for age-related macular degeneration. Journal of immunology (Baltimore, Md: 1950). 2010;185(9):5486-94.
147.
go back to reference Keenan TD, Clark SJ, Unwin RD, Ridge LA, Day AJ, Bishop PN. Mapping the differential distribution of proteoglycan core proteins in the adult human retina, choroid, and sclera. Invest Ophthalmol Vis Sci. 2012;53(12):7528–38.PubMedPubMedCentralCrossRef Keenan TD, Clark SJ, Unwin RD, Ridge LA, Day AJ, Bishop PN. Mapping the differential distribution of proteoglycan core proteins in the adult human retina, choroid, and sclera. Invest Ophthalmol Vis Sci. 2012;53(12):7528–38.PubMedPubMedCentralCrossRef
148.
go back to reference Yoshida H, Matsushita T, Kimura E, Fujita Y, Keany R, Ikeda T, et al. Systemic expression of Alu RNA in patients with geographic atrophy secondary to age-related macular degeneration. PLoS ONE. 2019;14(8):e0220887.PubMedPubMedCentralCrossRef Yoshida H, Matsushita T, Kimura E, Fujita Y, Keany R, Ikeda T, et al. Systemic expression of Alu RNA in patients with geographic atrophy secondary to age-related macular degeneration. PLoS ONE. 2019;14(8):e0220887.PubMedPubMedCentralCrossRef
149.
go back to reference Zhu Y, Liang L, Qian D, Yu H, Yang P, Lei B, et al. Increase in peripheral blood mononuclear cell toll-like receptor 2/3 expression and reactivity to their ligands in a cohort of patients with wet age-related macular degeneration. Mol Vis. 2013;19:1826–33.PubMedPubMedCentral Zhu Y, Liang L, Qian D, Yu H, Yang P, Lei B, et al. Increase in peripheral blood mononuclear cell toll-like receptor 2/3 expression and reactivity to their ligands in a cohort of patients with wet age-related macular degeneration. Mol Vis. 2013;19:1826–33.PubMedPubMedCentral
150.
go back to reference Maloney SC, Antecka E, Orellana ME, Fernandes BF, Odashiro AN, Eghtedari M, et al. Choroidal neovascular membranes express toll-like receptor 3. Ophthalmic Res. 2010;44(4):237–41.PubMedCrossRef Maloney SC, Antecka E, Orellana ME, Fernandes BF, Odashiro AN, Eghtedari M, et al. Choroidal neovascular membranes express toll-like receptor 3. Ophthalmic Res. 2010;44(4):237–41.PubMedCrossRef
151.
go back to reference Sánchez-Cruz A, Méndez AC, Lizasoain I, de la Villa P, de la Rosa EJ, Hernández-Sánchez C. Tlr2 Gene Deletion Delays Retinal Degeneration in Two Genetically Distinct Mouse Models of Retinitis Pigmentosa. International journal of molecular sciences. 2021;22(15). Sánchez-Cruz A, Méndez AC, Lizasoain I, de la Villa P, de la Rosa EJ, Hernández-Sánchez C. Tlr2 Gene Deletion Delays Retinal Degeneration in Two Genetically Distinct Mouse Models of Retinitis Pigmentosa. International journal of molecular sciences. 2021;22(15).
152.
go back to reference Syeda S, Patel AK, Lee T, Hackam AS. Reduced photoreceptor death and improved retinal function during retinal degeneration in mice lacking innate immunity adaptor protein MyD88. Exp Neurol. 2015;267:1–12.PubMedPubMedCentralCrossRef Syeda S, Patel AK, Lee T, Hackam AS. Reduced photoreceptor death and improved retinal function during retinal degeneration in mice lacking innate immunity adaptor protein MyD88. Exp Neurol. 2015;267:1–12.PubMedPubMedCentralCrossRef
153.
go back to reference Will-Orrego A, Qiu Y, Fassbender ES, Shen S, Aranda J, Kotagiri N, et al. Amount of mononuclear Phagocyte Infiltrate does not predict area of experimental Choroidal Neovascularization (CNV). J Ocular Pharmacol Therapeutics: Official J Association Ocular Pharmacol Ther. 2018;34(7):489–99.CrossRef Will-Orrego A, Qiu Y, Fassbender ES, Shen S, Aranda J, Kotagiri N, et al. Amount of mononuclear Phagocyte Infiltrate does not predict area of experimental Choroidal Neovascularization (CNV). J Ocular Pharmacol Therapeutics: Official J Association Ocular Pharmacol Ther. 2018;34(7):489–99.CrossRef
154.
go back to reference Fujimoto T, Sonoda KH, Hijioka K, Sato K, Takeda A, Hasegawa E, et al. Choroidal neovascularization enhanced by Chlamydia pneumoniae via toll-like receptor 2 in the retinal pigment epithelium. Invest Ophthalmol Vis Sci. 2010;51(9):4694–702.PubMedCrossRef Fujimoto T, Sonoda KH, Hijioka K, Sato K, Takeda A, Hasegawa E, et al. Choroidal neovascularization enhanced by Chlamydia pneumoniae via toll-like receptor 2 in the retinal pigment epithelium. Invest Ophthalmol Vis Sci. 2010;51(9):4694–702.PubMedCrossRef
155.
go back to reference Sun Y, Ni Y, Kong N, Huang C. TLR2 signaling contributes to the angiogenesis of oxygen-induced retinopathy. Exp Eye Res. 2021;210:108716.PubMedCrossRef Sun Y, Ni Y, Kong N, Huang C. TLR2 signaling contributes to the angiogenesis of oxygen-induced retinopathy. Exp Eye Res. 2021;210:108716.PubMedCrossRef
156.
go back to reference Guimaraes TAC, Georgiou M, Bainbridge JWB, Michaelides M. Gene therapy for neovascular age-related macular degeneration: rationale, clinical trials and future directions. Br J Ophthalmol. 2021;105(2):151–7.PubMedCrossRef Guimaraes TAC, Georgiou M, Bainbridge JWB, Michaelides M. Gene therapy for neovascular age-related macular degeneration: rationale, clinical trials and future directions. Br J Ophthalmol. 2021;105(2):151–7.PubMedCrossRef
157.
go back to reference Chakraborty C, Sharma AR, Sharma G, Doss CGP, Lee SS. Therapeutic miRNA and siRNA: moving from Bench to Clinic as Next Generation Medicine. Mol Therapy Nucleic Acids. 2017;8:132–43.PubMedCrossRef Chakraborty C, Sharma AR, Sharma G, Doss CGP, Lee SS. Therapeutic miRNA and siRNA: moving from Bench to Clinic as Next Generation Medicine. Mol Therapy Nucleic Acids. 2017;8:132–43.PubMedCrossRef
158.
go back to reference Ashikari M, Tokoro M, Itaya M, Nozaki M, Ogura Y. Suppression of laser-induced choroidal neovascularization by nontargeted siRNA. Invest Ophthalmol Vis Sci. 2010;51(7):3820–4.PubMedCrossRef Ashikari M, Tokoro M, Itaya M, Nozaki M, Ogura Y. Suppression of laser-induced choroidal neovascularization by nontargeted siRNA. Invest Ophthalmol Vis Sci. 2010;51(7):3820–4.PubMedCrossRef
159.
go back to reference Shiose S, Chen Y, Okano K, Roy S, Kohno H, Tang J, et al. Toll-like receptor 3 is required for development of retinopathy caused by impaired all-trans-retinal clearance in mice. J Biol Chem. 2011;286(17):15543–55.PubMedPubMedCentralCrossRef Shiose S, Chen Y, Okano K, Roy S, Kohno H, Tang J, et al. Toll-like receptor 3 is required for development of retinopathy caused by impaired all-trans-retinal clearance in mice. J Biol Chem. 2011;286(17):15543–55.PubMedPubMedCentralCrossRef
161.
go back to reference Ma B, Dohle E, Li M, Kirkpatrick CJ. TLR4 stimulation by LPS enhances angiogenesis in a co-culture system consisting of primary human osteoblasts and outgrowth endothelial cells. J Tissue Eng Regen Med. 2017;11(6):1779–91.PubMedCrossRef Ma B, Dohle E, Li M, Kirkpatrick CJ. TLR4 stimulation by LPS enhances angiogenesis in a co-culture system consisting of primary human osteoblasts and outgrowth endothelial cells. J Tissue Eng Regen Med. 2017;11(6):1779–91.PubMedCrossRef
162.
go back to reference Xia S, Menden HL, Korfhagen TR, Kume T, Sampath V. Endothelial immune activation programmes cell-fate decisions and angiogenesis by inducing angiogenesis regulator DLL4 through TLR4-ERK-FOXC2 signalling. J Physiol. 2018;596(8):1397–417.PubMedPubMedCentralCrossRef Xia S, Menden HL, Korfhagen TR, Kume T, Sampath V. Endothelial immune activation programmes cell-fate decisions and angiogenesis by inducing angiogenesis regulator DLL4 through TLR4-ERK-FOXC2 signalling. J Physiol. 2018;596(8):1397–417.PubMedPubMedCentralCrossRef
163.
go back to reference He C, Sun Y, Ren X, Lin Q, Hu X, Huang X, et al. Angiogenesis mediated by toll-like receptor 4 in ischemic neural tissue. Arterioscler Thromb Vasc Biol. 2013;33(2):330–8.PubMedCrossRef He C, Sun Y, Ren X, Lin Q, Hu X, Huang X, et al. Angiogenesis mediated by toll-like receptor 4 in ischemic neural tissue. Arterioscler Thromb Vasc Biol. 2013;33(2):330–8.PubMedCrossRef
164.
go back to reference Lin Q, Yang XP, Fang D, Ren X, Zhou H, Fang J, et al. High-mobility group box-1 mediates toll-like receptor 4-dependent angiogenesis. Arterioscler Thromb Vasc Biol. 2011;31(5):1024–32.PubMedPubMedCentralCrossRef Lin Q, Yang XP, Fang D, Ren X, Zhou H, Fang J, et al. High-mobility group box-1 mediates toll-like receptor 4-dependent angiogenesis. Arterioscler Thromb Vasc Biol. 2011;31(5):1024–32.PubMedPubMedCentralCrossRef
165.
go back to reference Wu Q, Chen Z, Wu C, Zhang L, Wu Y, Liu X, et al. MD2 inhibits Choroidal Neovascularization via antagonizing TLR4/MD2 mediated signaling pathway. Curr Eye Res. 2023;48(5):474–84.PubMedCrossRef Wu Q, Chen Z, Wu C, Zhang L, Wu Y, Liu X, et al. MD2 inhibits Choroidal Neovascularization via antagonizing TLR4/MD2 mediated signaling pathway. Curr Eye Res. 2023;48(5):474–84.PubMedCrossRef
166.
go back to reference Hata M, Andriessen E, Hata M, Diaz-Marin R, Fournier F, Crespo-Garcia S, et al. Past history of obesity triggers persistent epigenetic changes in innate immunity and exacerbates neuroinflammation. Sci (New York NY). 2023;379(6627):45–62.ADSCrossRef Hata M, Andriessen E, Hata M, Diaz-Marin R, Fournier F, Crespo-Garcia S, et al. Past history of obesity triggers persistent epigenetic changes in innate immunity and exacerbates neuroinflammation. Sci (New York NY). 2023;379(6627):45–62.ADSCrossRef
167.
go back to reference Chan C-C, Shen D, Wang Y, Chu X, Abu-Asab M, Tuo J. Inflammasomes in human eyes with AMD and mouse retinas with focal retinal degeneration. Investig Ophthalmol Vis Sci. 2013;54(15):315. Chan C-C, Shen D, Wang Y, Chu X, Abu-Asab M, Tuo J. Inflammasomes in human eyes with AMD and mouse retinas with focal retinal degeneration. Investig Ophthalmol Vis Sci. 2013;54(15):315.
168.
go back to reference Doyle SL, Campbell M, Ozaki E, Salomon RG, Mori A, Kenna PF, et al. NLRP3 has a protective role in age-related macular degeneration through the induction of IL-18 by drusen components. Nat Med. 2012;18(5):791–8.PubMedPubMedCentralCrossRef Doyle SL, Campbell M, Ozaki E, Salomon RG, Mori A, Kenna PF, et al. NLRP3 has a protective role in age-related macular degeneration through the induction of IL-18 by drusen components. Nat Med. 2012;18(5):791–8.PubMedPubMedCentralCrossRef
169.
go back to reference Narendran S, Pereira F, Yerramothu P, Apicella I, Wang S-b, Ambati K, et al. Nucleoside reverse transcriptase inhibitors and Kamuvudines inhibit amyloid-β induced retinal pigmented epithelium degeneration. Signal Transduct Target Therapy. 2021;6(1):149.CrossRef Narendran S, Pereira F, Yerramothu P, Apicella I, Wang S-b, Ambati K, et al. Nucleoside reverse transcriptase inhibitors and Kamuvudines inhibit amyloid-β induced retinal pigmented epithelium degeneration. Signal Transduct Target Therapy. 2021;6(1):149.CrossRef
170.
go back to reference Wakx A, Dutot M, Massicot F, Mascarelli F, Limb GA, Rat P. Amyloid β Peptide Induces Apoptosis Through P2X7 Cell Death Receptor in Retinal Cells: Modulation by Marine Omega-3 Fatty Acid DHA and EPA. Appl Biochem Biotechnol. 2016;178(2):368–81.PubMedCrossRef Wakx A, Dutot M, Massicot F, Mascarelli F, Limb GA, Rat P. Amyloid β Peptide Induces Apoptosis Through P2X7 Cell Death Receptor in Retinal Cells: Modulation by Marine Omega-3 Fatty Acid DHA and EPA. Appl Biochem Biotechnol. 2016;178(2):368–81.PubMedCrossRef
171.
go back to reference Zhao M, Bai Y, Xie W, Shi X, Li F, Yang F, et al. Interleukin-1β level is increased in vitreous of patients with neovascular age-related Macular Degeneration (nAMD) and Polypoidal Choroidal Vasculopathy (PCV). PLoS ONE. 2015;10(5):e0125150.PubMedPubMedCentralCrossRef Zhao M, Bai Y, Xie W, Shi X, Li F, Yang F, et al. Interleukin-1β level is increased in vitreous of patients with neovascular age-related Macular Degeneration (nAMD) and Polypoidal Choroidal Vasculopathy (PCV). PLoS ONE. 2015;10(5):e0125150.PubMedPubMedCentralCrossRef
172.
go back to reference Nassar K, Grisanti S, Elfar E, Lüke J, Lüke M, Grisanti S. Serum cytokines as biomarkers for age-related macular degeneration. Graefe’s Archive Clin Experimental Ophthalmol. 2015;253(5):699–704.CrossRef Nassar K, Grisanti S, Elfar E, Lüke J, Lüke M, Grisanti S. Serum cytokines as biomarkers for age-related macular degeneration. Graefe’s Archive Clin Experimental Ophthalmol. 2015;253(5):699–704.CrossRef
173.
go back to reference Yildirim Z, Ucgun NI, Yildirim F, Sepici-Dincel A. Choroidal Neovascular Membrane in Age-Related Macular Degeneration is Associated with increased Interleukin-6. Int J Gerontol. 2012;6(2):101–4.CrossRef Yildirim Z, Ucgun NI, Yildirim F, Sepici-Dincel A. Choroidal Neovascular Membrane in Age-Related Macular Degeneration is Associated with increased Interleukin-6. Int J Gerontol. 2012;6(2):101–4.CrossRef
174.
go back to reference Krogh Nielsen M, Subhi Y, Molbech CR, Falk MK, Nissen MH, Sørensen TL. Systemic levels of Interleukin-6 correlate with Progression Rate of Geographic Atrophy secondary to age-related Macular Degeneration. Invest Ophthalmol Vis Sci. 2019;60(1):202–8.PubMedCrossRef Krogh Nielsen M, Subhi Y, Molbech CR, Falk MK, Nissen MH, Sørensen TL. Systemic levels of Interleukin-6 correlate with Progression Rate of Geographic Atrophy secondary to age-related Macular Degeneration. Invest Ophthalmol Vis Sci. 2019;60(1):202–8.PubMedCrossRef
175.
go back to reference Lyu Y, Zauhar R, Dana N, Strang CE, Hu J, Wang K, et al. Implication of specific retinal cell-type involvement and gene expression changes in AMD progression using integrative analysis of single-cell and bulk RNA-seq profiling. Sci Rep. 2021;11(1):15612.ADSPubMedPubMedCentralCrossRef Lyu Y, Zauhar R, Dana N, Strang CE, Hu J, Wang K, et al. Implication of specific retinal cell-type involvement and gene expression changes in AMD progression using integrative analysis of single-cell and bulk RNA-seq profiling. Sci Rep. 2021;11(1):15612.ADSPubMedPubMedCentralCrossRef
176.
go back to reference Kelley N, Jeltema D, Duan Y, He Y. The NLRP3 inflammasome: an overview of mechanisms of activation and regulation. Int J Mol Sci. 2019;20(13). Kelley N, Jeltema D, Duan Y, He Y. The NLRP3 inflammasome: an overview of mechanisms of activation and regulation. Int J Mol Sci. 2019;20(13).
177.
go back to reference Abais JM, Xia M, Zhang Y, Boini KM, Li PL. Redox regulation of NLRP3 inflammasomes: ROS as trigger or effector? Antioxid Redox Signal. 2015;22(13):1111–29.PubMedPubMedCentralCrossRef Abais JM, Xia M, Zhang Y, Boini KM, Li PL. Redox regulation of NLRP3 inflammasomes: ROS as trigger or effector? Antioxid Redox Signal. 2015;22(13):1111–29.PubMedPubMedCentralCrossRef
178.
go back to reference Beatty S, Koh H, Phil M, Henson D, Boulton M. The role of oxidative stress in the pathogenesis of age-related macular degeneration. Surv Ophthalmol. 2000;45(2):115–34.PubMedCrossRef Beatty S, Koh H, Phil M, Henson D, Boulton M. The role of oxidative stress in the pathogenesis of age-related macular degeneration. Surv Ophthalmol. 2000;45(2):115–34.PubMedCrossRef
179.
go back to reference Liao Y, Zhang H, He D, Wang Y, Cai B, Chen J, et al. Retinal pigment epithelium cell death is Associated with NLRP3 inflammasome activation by all-trans Retinal. Invest Ophthalmol Vis Sci. 2019;60(8):3034–45.PubMedCrossRef Liao Y, Zhang H, He D, Wang Y, Cai B, Chen J, et al. Retinal pigment epithelium cell death is Associated with NLRP3 inflammasome activation by all-trans Retinal. Invest Ophthalmol Vis Sci. 2019;60(8):3034–45.PubMedCrossRef
180.
go back to reference Gustin A, Kirchmeyer M, Koncina E, Felten P, Losciuto S, Heurtaux T, et al. NLRP3 inflammasome is expressed and functional in mouse brain Microglia but not in astrocytes. PLoS ONE. 2015;10(6):e0130624.PubMedPubMedCentralCrossRef Gustin A, Kirchmeyer M, Koncina E, Felten P, Losciuto S, Heurtaux T, et al. NLRP3 inflammasome is expressed and functional in mouse brain Microglia but not in astrocytes. PLoS ONE. 2015;10(6):e0130624.PubMedPubMedCentralCrossRef
181.
go back to reference Gong T, Yang Y, Jin T, Jiang W, Zhou R. Orchestration of NLRP3 inflammasome activation by Ion Fluxes. Trends Immunol. 2018;39(5):393–406.PubMedCrossRef Gong T, Yang Y, Jin T, Jiang W, Zhou R. Orchestration of NLRP3 inflammasome activation by Ion Fluxes. Trends Immunol. 2018;39(5):393–406.PubMedCrossRef
182.
go back to reference Beckel JM, Argall AJ, Lim JC, Xia J, Lu W, Coffey EE, et al. Mechanosensitive release of adenosine 5’-triphosphate through pannexin channels and mechanosensitive upregulation of pannexin channels in optic nerve head astrocytes: a mechanism for purinergic involvement in chronic strain. Glia. 2014;62(9):1486–501.PubMedPubMedCentralCrossRef Beckel JM, Argall AJ, Lim JC, Xia J, Lu W, Coffey EE, et al. Mechanosensitive release of adenosine 5’-triphosphate through pannexin channels and mechanosensitive upregulation of pannexin channels in optic nerve head astrocytes: a mechanism for purinergic involvement in chronic strain. Glia. 2014;62(9):1486–501.PubMedPubMedCentralCrossRef
183.
go back to reference Suzuki T, Hide I, Ido K, Kohsaka S, Inoue K, Nakata Y. Production and release of neuroprotective tumor necrosis factor by P2X7 receptor-activated microglia. J Neuroscience: Official J Soc Neurosci. 2004;24(1):1–7.CrossRef Suzuki T, Hide I, Ido K, Kohsaka S, Inoue K, Nakata Y. Production and release of neuroprotective tumor necrosis factor by P2X7 receptor-activated microglia. J Neuroscience: Official J Soc Neurosci. 2004;24(1):1–7.CrossRef
184.
go back to reference He Y, Taylor N, Fourgeaud L, Bhattacharya A. The role of microglial P2X7: modulation of cell death and cytokine release. J Neuroinflamm. 2017;14(1):135.CrossRef He Y, Taylor N, Fourgeaud L, Bhattacharya A. The role of microglial P2X7: modulation of cell death and cytokine release. J Neuroinflamm. 2017;14(1):135.CrossRef
185.
go back to reference Shieh CH, Heinrich A, Serchov T, van Calker D, Biber K. P2X7-dependent, but differentially regulated release of IL-6, CCL2, and TNF-α in cultured mouse microglia. Glia. 2014;62(4):592–607.PubMedCrossRef Shieh CH, Heinrich A, Serchov T, van Calker D, Biber K. P2X7-dependent, but differentially regulated release of IL-6, CCL2, and TNF-α in cultured mouse microglia. Glia. 2014;62(4):592–607.PubMedCrossRef
186.
go back to reference Kataoka A, Tozaki-Saitoh H, Koga Y, Tsuda M, Inoue K. Activation of P2X7 receptors induces CCL3 production in microglial cells through transcription factor NFAT. J Neurochem. 2009;108(1):115–25.PubMedCrossRef Kataoka A, Tozaki-Saitoh H, Koga Y, Tsuda M, Inoue K. Activation of P2X7 receptors induces CCL3 production in microglial cells through transcription factor NFAT. J Neurochem. 2009;108(1):115–25.PubMedCrossRef
187.
go back to reference Martinon F, Pétrilli V, Mayor A, Tardivel A, Tschopp J. Gout-associated uric acid crystals activate the NALP3 inflammasome. Nature. 2006;440(7081):237–41.ADSPubMedCrossRef Martinon F, Pétrilli V, Mayor A, Tardivel A, Tschopp J. Gout-associated uric acid crystals activate the NALP3 inflammasome. Nature. 2006;440(7081):237–41.ADSPubMedCrossRef
188.
go back to reference Jessop F, Hamilton RF Jr., Rhoderick JF, Fletcher P, Holian A. Phagolysosome acidification is required for silica and engineered nanoparticle-induced lysosome membrane permeabilization and resultant NLRP3 inflammasome activity. Toxicol Appl Pharmcol. 2017;318:58–68.CrossRef Jessop F, Hamilton RF Jr., Rhoderick JF, Fletcher P, Holian A. Phagolysosome acidification is required for silica and engineered nanoparticle-induced lysosome membrane permeabilization and resultant NLRP3 inflammasome activity. Toxicol Appl Pharmcol. 2017;318:58–68.CrossRef
189.
go back to reference Tsutsumi C, Sonoda KH, Egashira K, Qiao H, Hisatomi T, Nakao S, et al. The critical role of ocular-infiltrating macrophages in the development of choroidal neovascularization. J Leukoc Biol. 2003;74(1):25–32.PubMedCrossRef Tsutsumi C, Sonoda KH, Egashira K, Qiao H, Hisatomi T, Nakao S, et al. The critical role of ocular-infiltrating macrophages in the development of choroidal neovascularization. J Leukoc Biol. 2003;74(1):25–32.PubMedCrossRef
190.
go back to reference Kleinman ME, Kaneko H, Cho WG, Dridi S, Fowler BJ, Blandford AD, et al. Short-interfering RNAs induce retinal degeneration via TLR3 and IRF3. Mol Therapy: J Am Soc Gene Therapy. 2012;20(1):101–8.CrossRef Kleinman ME, Kaneko H, Cho WG, Dridi S, Fowler BJ, Blandford AD, et al. Short-interfering RNAs induce retinal degeneration via TLR3 and IRF3. Mol Therapy: J Am Soc Gene Therapy. 2012;20(1):101–8.CrossRef
193.
go back to reference Kerur N, Hirano Y, Tarallo V, Fowler BJ, Bastos-Carvalho A, Yasuma T, et al. TLR-independent and P2X7-dependent signaling mediate Alu RNA-induced NLRP3 inflammasome activation in geographic atrophy. Invest Ophthalmol Vis Sci. 2013;54(12):7395–401.PubMedPubMedCentralCrossRef Kerur N, Hirano Y, Tarallo V, Fowler BJ, Bastos-Carvalho A, Yasuma T, et al. TLR-independent and P2X7-dependent signaling mediate Alu RNA-induced NLRP3 inflammasome activation in geographic atrophy. Invest Ophthalmol Vis Sci. 2013;54(12):7395–401.PubMedPubMedCentralCrossRef
194.
go back to reference Kerur N, Fukuda S, Banerjee D, Kim Y, Fu D, Apicella I, et al. cGAS drives noncanonical-inflammasome activation in age-related macular degeneration. Nat Med. 2018;24(1):50–61.PubMedCrossRef Kerur N, Fukuda S, Banerjee D, Kim Y, Fu D, Apicella I, et al. cGAS drives noncanonical-inflammasome activation in age-related macular degeneration. Nat Med. 2018;24(1):50–61.PubMedCrossRef
195.
go back to reference Li J, Zhang F, Bian W, Chen Y, Liu J, Liu Z, et al. cGAS inhibition alleviates Alu RNA-induced immune responses and cytotoxicity in retinal pigmented epithelium. Cell Bioscience. 2022;12(1):116.ADSPubMedPubMedCentralCrossRef Li J, Zhang F, Bian W, Chen Y, Liu J, Liu Z, et al. cGAS inhibition alleviates Alu RNA-induced immune responses and cytotoxicity in retinal pigmented epithelium. Cell Bioscience. 2022;12(1):116.ADSPubMedPubMedCentralCrossRef
196.
go back to reference Evavold CL, Ruan J, Tan Y, Xia S, Wu H, Kagan JC. The pore-forming protein gasdermin D regulates Interleukin-1 secretion from living macrophages. Immunity. 2018;48(1):35–44e6.PubMedCrossRef Evavold CL, Ruan J, Tan Y, Xia S, Wu H, Kagan JC. The pore-forming protein gasdermin D regulates Interleukin-1 secretion from living macrophages. Immunity. 2018;48(1):35–44e6.PubMedCrossRef
197.
go back to reference Decout A, Katz JD, Venkatraman S, Ablasser A. The cGAS–STING pathway as a therapeutic target in inflammatory diseases. Nat Rev Immunol. 2021;21(9):548–69.PubMedPubMedCentralCrossRef Decout A, Katz JD, Venkatraman S, Ablasser A. The cGAS–STING pathway as a therapeutic target in inflammatory diseases. Nat Rev Immunol. 2021;21(9):548–69.PubMedPubMedCentralCrossRef
198.
go back to reference Jarrett SG, Lin H, Godley BF, Boulton ME. Mitochondrial DNA damage and its potential role in retinal degeneration. Prog Retin Eye Res. 2008;27(6):596–607.PubMedCrossRef Jarrett SG, Lin H, Godley BF, Boulton ME. Mitochondrial DNA damage and its potential role in retinal degeneration. Prog Retin Eye Res. 2008;27(6):596–607.PubMedCrossRef
199.
go back to reference Gupta U, Ghosh S, Wallace CT, Shang P, Xin Y, Nair AP, et al. Increased LCN2 (lipocalin 2) in the RPE decreases autophagy and activates inflammasome-ferroptosis processes in a mouse model of dry AMD. Autophagy. 2023;19(1):92–111.PubMedCrossRef Gupta U, Ghosh S, Wallace CT, Shang P, Xin Y, Nair AP, et al. Increased LCN2 (lipocalin 2) in the RPE decreases autophagy and activates inflammasome-ferroptosis processes in a mouse model of dry AMD. Autophagy. 2023;19(1):92–111.PubMedCrossRef
200.
go back to reference Sekar R, Wooff Y, Cioanca AV, Kurera M, Ngo C, Man SM, et al. Impairing gasdermin D-mediated pyroptosis is protective against retinal degeneration. J Neuroinflamm. 2023;20(1):239.CrossRef Sekar R, Wooff Y, Cioanca AV, Kurera M, Ngo C, Man SM, et al. Impairing gasdermin D-mediated pyroptosis is protective against retinal degeneration. J Neuroinflamm. 2023;20(1):239.CrossRef
201.
go back to reference Hirano Y, Yasuma T, Mizutani T, Fowler BJ, Tarallo V, Yasuma R, et al. IL-18 is not therapeutic for neovascular age-related macular degeneration. Nat Med. 2014;20(12):1372–5.PubMedPubMedCentralCrossRef Hirano Y, Yasuma T, Mizutani T, Fowler BJ, Tarallo V, Yasuma R, et al. IL-18 is not therapeutic for neovascular age-related macular degeneration. Nat Med. 2014;20(12):1372–5.PubMedPubMedCentralCrossRef
202.
go back to reference Doyle SL, Adamson P, López FJ, Humphries P, Campbell M. Reply to IL-18 is not therapeutic for neovascular age-related macular degeneration. Nat Med. 2014;20(12):1376–7.PubMedCrossRef Doyle SL, Adamson P, López FJ, Humphries P, Campbell M. Reply to IL-18 is not therapeutic for neovascular age-related macular degeneration. Nat Med. 2014;20(12):1376–7.PubMedCrossRef
203.
go back to reference Malsy J, Alvarado AC, Lamontagne JO, Strittmatter K, Marneros AG. Distinct effects of complement and of NLRP3- and non-NLRP3 inflammasomes for choroidal neovascularization. eLife. 2020;9:e60194.PubMedPubMedCentralCrossRef Malsy J, Alvarado AC, Lamontagne JO, Strittmatter K, Marneros AG. Distinct effects of complement and of NLRP3- and non-NLRP3 inflammasomes for choroidal neovascularization. eLife. 2020;9:e60194.PubMedPubMedCentralCrossRef
204.
go back to reference Zhang W, Ma Y, Zhang Y, Yang J, He G, Chen S. Photo-oxidative Blue-Light Stimulation in Retinal Pigment Epithelium cells promotes Exosome Secretion and increases the activity of the NLRP3 inflammasome. Curr Eye Res. 2019;44(1):67–75.PubMedCrossRef Zhang W, Ma Y, Zhang Y, Yang J, He G, Chen S. Photo-oxidative Blue-Light Stimulation in Retinal Pigment Epithelium cells promotes Exosome Secretion and increases the activity of the NLRP3 inflammasome. Curr Eye Res. 2019;44(1):67–75.PubMedCrossRef
205.
go back to reference Liu J, Copland DA, Theodoropoulou S, Chiu HA, Barba MD, Mak KW, et al. Impairing autophagy in retinal pigment epithelium leads to inflammasome activation and enhanced macrophage-mediated angiogenesis. Sci Rep. 2016;6:20639.ADSPubMedPubMedCentralCrossRef Liu J, Copland DA, Theodoropoulou S, Chiu HA, Barba MD, Mak KW, et al. Impairing autophagy in retinal pigment epithelium leads to inflammasome activation and enhanced macrophage-mediated angiogenesis. Sci Rep. 2016;6:20639.ADSPubMedPubMedCentralCrossRef
206.
go back to reference Fowler BJ, Gelfand BD, Kim Y, Kerur N, Tarallo V, Hirano Y, et al. Nucleoside reverse transcriptase inhibitors possess intrinsic anti-inflammatory activity. Sci (New York NY). 2014;346(6212):1000–3.ADSCrossRef Fowler BJ, Gelfand BD, Kim Y, Kerur N, Tarallo V, Hirano Y, et al. Nucleoside reverse transcriptase inhibitors possess intrinsic anti-inflammatory activity. Sci (New York NY). 2014;346(6212):1000–3.ADSCrossRef
207.
go back to reference Garces K, Carmy T, Illiano P, Brambilla R, Hackam AS. Increased neuroprotective microglia and photoreceptor survival in the Retina from a peptide inhibitor of myeloid differentiation factor 88 (MyD88). J Mol Neurosci. 2020;70(6):968–80.PubMedCrossRef Garces K, Carmy T, Illiano P, Brambilla R, Hackam AS. Increased neuroprotective microglia and photoreceptor survival in the Retina from a peptide inhibitor of myeloid differentiation factor 88 (MyD88). J Mol Neurosci. 2020;70(6):968–80.PubMedCrossRef
Metadata
Title
The contribution of pattern recognition receptor signalling in the development of age related macular degeneration: the role of toll-like-receptors and the NLRP3-inflammasome
Authors
Alice Brandli
Kirstan A. Vessey
Erica L. Fletcher
Publication date
01-12-2024
Publisher
BioMed Central
Published in
Journal of Neuroinflammation / Issue 1/2024
Electronic ISSN: 1742-2094
DOI
https://doi.org/10.1186/s12974-024-03055-1

Other articles of this Issue 1/2024

Journal of Neuroinflammation 1/2024 Go to the issue