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Published in: Acta Neuropathologica 6/2016

Open Access 01-12-2016 | Review

Ocular indicators of Alzheimer’s: exploring disease in the retina

Authors: Nadav J. Hart, Yosef Koronyo, Keith L. Black, Maya Koronyo-Hamaoui

Published in: Acta Neuropathologica | Issue 6/2016

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Abstract

Although historically perceived as a disorder confined to the brain, our understanding of Alzheimer’s disease (AD) has expanded to include extra-cerebral manifestation, with mounting evidence of abnormalities in the eye. Among ocular tissues, the retina, a developmental outgrowth of the brain, is marked by an array of pathologies in patients suffering from AD, including nerve fiber layer thinning, degeneration of retinal ganglion cells, and changes to vascular parameters. While the hallmark pathological signs of AD, amyloid β-protein (Aβ) plaques and neurofibrillary tangles (NFT) comprising hyperphosphorylated tau (pTau) protein, have long been described in the brain, identification of these characteristic biomarkers in the retina has only recently been reported. In particular, Aβ deposits were discovered in post-mortem retinas of advanced and early stage cases of AD, in stark contrast to non-AD controls. Subsequent studies have reported elevated Aβ42/40 peptides, morphologically diverse Aβ plaques, and pTau in the retina. In line with the above findings, animal model studies have reported retinal Aβ deposits and tauopathy, often correlated with local inflammation, retinal ganglion cell degeneration, and functional deficits. This review highlights the converging evidence that AD manifests in the eye, especially in the retina, which can be imaged directly and non-invasively. Visual dysfunction in AD patients, traditionally attributed to well-documented cerebral pathology, can now be reexamined as a direct outcome of retinal abnormalities. As we continue to study the disease in the brain, the emerging field of ocular AD warrants further investigation of how the retina may faithfully reflect the neurological disease. Indeed, detection of retinal AD pathology, particularly the early presenting amyloid biomarkers, using advanced high-resolution imaging techniques may allow large-scale screening and monitoring of at-risk populations.
Literature
1.
go back to reference Alexandrov PN, Pogue A, Bhattacharjee S, Lukiw WJ (2011) Retinal amyloid peptides and complement factor H in transgenic models of Alzheimer’s disease. NeuroReport 22:623–627PubMedPubMedCentralCrossRef Alexandrov PN, Pogue A, Bhattacharjee S, Lukiw WJ (2011) Retinal amyloid peptides and complement factor H in transgenic models of Alzheimer’s disease. NeuroReport 22:623–627PubMedPubMedCentralCrossRef
5.
go back to reference Antes R, Ezra-Elia R, Weinberger D, Solomon A, Ofri R, Michaelson DM (2013) ApoE4 induces synaptic and ERG impairments in the retina of young targeted replacement apoE4 mice. PLoS One 8:e64949PubMedPubMedCentralCrossRef Antes R, Ezra-Elia R, Weinberger D, Solomon A, Ofri R, Michaelson DM (2013) ApoE4 induces synaptic and ERG impairments in the retina of young targeted replacement apoE4 mice. PLoS One 8:e64949PubMedPubMedCentralCrossRef
6.
go back to reference Antes R, Salomon-Zimri S, Beck SC, Garcia Garrido M, Livnat T, Maharshak I, Kadar T, Seeliger M, Weinberger D, Michaelson DM (2015) VEGF mediates ApoE4-induced neovascularization and synaptic pathology in the choroid and retina. Curr Alzheimer Res 12:323–334PubMedCrossRef Antes R, Salomon-Zimri S, Beck SC, Garcia Garrido M, Livnat T, Maharshak I, Kadar T, Seeliger M, Weinberger D, Michaelson DM (2015) VEGF mediates ApoE4-induced neovascularization and synaptic pathology in the choroid and retina. Curr Alzheimer Res 12:323–334PubMedCrossRef
8.
go back to reference Ardiles AO, Tapia-Rojas CC, Mandal M, Alexandre F, Kirkwood A, Inestrosa NC, Palacios AG (2012) Postsynaptic dysfunction is associated with spatial and object recognition memory loss in a natural model of Alzheimer’s disease. Proc Natl Acad Sci USA 109:13835–13840. doi:10.1073/pnas.1201209109 PubMedPubMedCentralCrossRef Ardiles AO, Tapia-Rojas CC, Mandal M, Alexandre F, Kirkwood A, Inestrosa NC, Palacios AG (2012) Postsynaptic dysfunction is associated with spatial and object recognition memory loss in a natural model of Alzheimer’s disease. Proc Natl Acad Sci USA 109:13835–13840. doi:10.​1073/​pnas.​1201209109 PubMedPubMedCentralCrossRef
10.
go back to reference Ascaso FJ, Cruz N, Modrego PJ, Lopez-Anton R, Santabarbara J, Pascual LF, Lobo A, Cristobal JA (2014) Retinal alterations in mild cognitive impairment and Alzheimer’s disease: an optical coherence tomography study. J Neurol 261:1522–1530. doi:10.1007/s00415-014-7374-z PubMedCrossRef Ascaso FJ, Cruz N, Modrego PJ, Lopez-Anton R, Santabarbara J, Pascual LF, Lobo A, Cristobal JA (2014) Retinal alterations in mild cognitive impairment and Alzheimer’s disease: an optical coherence tomography study. J Neurol 261:1522–1530. doi:10.​1007/​s00415-014-7374-z PubMedCrossRef
11.
12.
go back to reference Bach-Holm D, Kessing SV, Mogensen U, Forman JL, Andersen PK, Kessing LV (2002) Normal tension glaucoma and Alzheimer disease: comorbidity? Acta Ophthalmol 90:683–685CrossRef Bach-Holm D, Kessing SV, Mogensen U, Forman JL, Andersen PK, Kessing LV (2002) Normal tension glaucoma and Alzheimer disease: comorbidity? Acta Ophthalmol 90:683–685CrossRef
14.
go back to reference Bambo MP, Garcia-Martin E, Otin S, Pinilla J, Larrosa JM, Polo V, Pablo LE (2015) Visual function and retinal nerve fibre layer degeneration in patients with Alzheimer disease: correlations with severity of dementia. Acta Ophthalmol 93:e507–e508. doi:10.1111/aos.12635 PubMedCrossRef Bambo MP, Garcia-Martin E, Otin S, Pinilla J, Larrosa JM, Polo V, Pablo LE (2015) Visual function and retinal nerve fibre layer degeneration in patients with Alzheimer disease: correlations with severity of dementia. Acta Ophthalmol 93:e507–e508. doi:10.​1111/​aos.​12635 PubMedCrossRef
15.
go back to reference Baumgart M, Snyder HM, Carrillo MC, Fazio S, Kim H, Johns H (2015) Summary of the evidence on modifiable risk factors for cognitive decline and dementia: a population-based perspective. Alzheimer’s Dement J Alzheimer’s Assoc 11:718–726. doi:10.1016/j.jalz.2015.05.016 CrossRef Baumgart M, Snyder HM, Carrillo MC, Fazio S, Kim H, Johns H (2015) Summary of the evidence on modifiable risk factors for cognitive decline and dementia: a population-based perspective. Alzheimer’s Dement J Alzheimer’s Assoc 11:718–726. doi:10.​1016/​j.​jalz.​2015.​05.​016 CrossRef
16.
go back to reference Bayer AU, Ferrari F, Erb C (2002) High occurrence rate of glaucoma among patients with Alzheimer’s disease. Eur Neurol 47:165–168PubMedCrossRef Bayer AU, Ferrari F, Erb C (2002) High occurrence rate of glaucoma among patients with Alzheimer’s disease. Eur Neurol 47:165–168PubMedCrossRef
17.
go back to reference Bayhan HA, Aslan Bayhan S, Celikbilek A, Tanik N, Gurdal C (2015) Evaluation of the chorioretinal thickness changes in Alzheimer’s disease using spectral-domain optical coherence tomography. Clin Exp Ophthalmol 43:145–151. doi:10.1111/ceo.12386 PubMedCrossRef Bayhan HA, Aslan Bayhan S, Celikbilek A, Tanik N, Gurdal C (2015) Evaluation of the chorioretinal thickness changes in Alzheimer’s disease using spectral-domain optical coherence tomography. Clin Exp Ophthalmol 43:145–151. doi:10.​1111/​ceo.​12386 PubMedCrossRef
18.
go back to reference Bei L, Shui YB, Bai F, Nelson SK, Van Stavern GP, Beebe DC (2015) A test of lens opacity as an indicator of preclinical Alzheimer Disease. Exp Eye Res 140:117–123PubMedPubMedCentralCrossRef Bei L, Shui YB, Bai F, Nelson SK, Van Stavern GP, Beebe DC (2015) A test of lens opacity as an indicator of preclinical Alzheimer Disease. Exp Eye Res 140:117–123PubMedPubMedCentralCrossRef
19.
go back to reference Berisha F, Feke GT, Trempe CL, McMeel JW, Schepens CL (2007) Retinal abnormalities in early Alzheimer’s disease. Invest Ophthalmol Vis Sci 48:2285–2289PubMedCrossRef Berisha F, Feke GT, Trempe CL, McMeel JW, Schepens CL (2007) Retinal abnormalities in early Alzheimer’s disease. Invest Ophthalmol Vis Sci 48:2285–2289PubMedCrossRef
20.
go back to reference Blanks JC, Hinton DR, Sadun AA, Miller CA (1989) Retinal ganglion cell degeneration in Alzheimer’s disease. Brain Res 501:364–372PubMedCrossRef Blanks JC, Hinton DR, Sadun AA, Miller CA (1989) Retinal ganglion cell degeneration in Alzheimer’s disease. Brain Res 501:364–372PubMedCrossRef
21.
go back to reference Blanks JC, Schmidt SY, Torigoe Y, Porrello KV, Hinton DR, Blanks RH (1996) Retinal pathology in Alzheimer’s disease. II. Regional neuron loss and glial changes in GCL. Neurobiol Aging 17:385–395PubMedCrossRef Blanks JC, Schmidt SY, Torigoe Y, Porrello KV, Hinton DR, Blanks RH (1996) Retinal pathology in Alzheimer’s disease. II. Regional neuron loss and glial changes in GCL. Neurobiol Aging 17:385–395PubMedCrossRef
22.
go back to reference Blanks JC, Torigoe Y, Hinton DR, Blanks RH (1996) Retinal pathology in Alzheimer’s disease. I. Ganglion cell loss in foveal/parafoveal retina. Neurobiol Aging 17:377–384PubMedCrossRef Blanks JC, Torigoe Y, Hinton DR, Blanks RH (1996) Retinal pathology in Alzheimer’s disease. I. Ganglion cell loss in foveal/parafoveal retina. Neurobiol Aging 17:377–384PubMedCrossRef
26.
28.
go back to reference Cao L, Wang H, Wang F, Xu D, Liu F, Liu C (2013) Abeta-induced senescent retinal pigment epithelial cells create a proinflammatory microenvironment in AMD. Invest Ophthalmol Vis Sci 54:3738–3750. doi:10.1167/iovs.13-11612 PubMedCrossRef Cao L, Wang H, Wang F, Xu D, Liu F, Liu C (2013) Abeta-induced senescent retinal pigment epithelial cells create a proinflammatory microenvironment in AMD. Invest Ophthalmol Vis Sci 54:3738–3750. doi:10.​1167/​iovs.​13-11612 PubMedCrossRef
30.
31.
go back to reference Chang LY, Lowe J, Ardiles A, Lim J, Grey AC, Robertson K, Danesh-Meyer H, Palacios AG, Acosta ML (2014) Alzheimer’s disease in the human eye. Clinical tests that identify ocular and visual information processing deficit as biomarkers. Alzheimer’s Dement J Alzheimer’s Assoc 10:251–261. doi:10.1016/j.jalz.2013.06.004 CrossRef Chang LY, Lowe J, Ardiles A, Lim J, Grey AC, Robertson K, Danesh-Meyer H, Palacios AG, Acosta ML (2014) Alzheimer’s disease in the human eye. Clinical tests that identify ocular and visual information processing deficit as biomarkers. Alzheimer’s Dement J Alzheimer’s Assoc 10:251–261. doi:10.​1016/​j.​jalz.​2013.​06.​004 CrossRef
32.
go back to reference Cheung CY, Ong YT, Ikram MK, Ong SY, Li X, Hilal S, Catindig JA, Venketasubramanian N, Yap P, Seow D et al (2014) Microvascular network alterations in the retina of patients with Alzheimer’s disease. Alzheimer’s Dement J Alzheimer’s Assoc 10:135–142CrossRef Cheung CY, Ong YT, Ikram MK, Ong SY, Li X, Hilal S, Catindig JA, Venketasubramanian N, Yap P, Seow D et al (2014) Microvascular network alterations in the retina of patients with Alzheimer’s disease. Alzheimer’s Dement J Alzheimer’s Assoc 10:135–142CrossRef
33.
38.
go back to reference Curcio CA, Drucker DN (1993) Retinal ganglion cells in Alzheimer’s disease and aging. Ann Neurol 33:248–257PubMedCrossRef Curcio CA, Drucker DN (1993) Retinal ganglion cells in Alzheimer’s disease and aging. Ann Neurol 33:248–257PubMedCrossRef
39.
go back to reference Cutler T, Sarkar A, Moran M, Steffensmeier A, Puli OR, Mancini G, Tare M, Gogia N, Singh A (2015) Drosophila eye model to study neuroprotective role of CREB binding protein (CBP) in Alzheimer’s disease. PLoS One 10:e0137691PubMedPubMedCentralCrossRef Cutler T, Sarkar A, Moran M, Steffensmeier A, Puli OR, Mancini G, Tare M, Gogia N, Singh A (2015) Drosophila eye model to study neuroprotective role of CREB binding protein (CBP) in Alzheimer’s disease. PLoS One 10:e0137691PubMedPubMedCentralCrossRef
40.
go back to reference Danesh-Meyer HV, Birch H, Ku JY, Carroll S, Gamble G (2006) Reduction of optic nerve fibers in patients with Alzheimer disease identified by laser imaging. Neurology 67:1852–1854PubMedCrossRef Danesh-Meyer HV, Birch H, Ku JY, Carroll S, Gamble G (2006) Reduction of optic nerve fibers in patients with Alzheimer disease identified by laser imaging. Neurology 67:1852–1854PubMedCrossRef
42.
go back to reference Dentchev T, Milam AH, Lee VM, Trojanowski JQ, Dunaief JL (2003) Amyloid-beta is found in drusen from some age-related macular degeneration retinas, but not in drusen from normal retinas. Mol Vis 9:184–190PubMed Dentchev T, Milam AH, Lee VM, Trojanowski JQ, Dunaief JL (2003) Amyloid-beta is found in drusen from some age-related macular degeneration retinas, but not in drusen from normal retinas. Mol Vis 9:184–190PubMed
44.
go back to reference Ding JD, Johnson LV, Herrmann R, Farsiu S, Smith SG, Groelle M, Mace BE, Sullivan P, Jamison JA, Kelly U et al (2011) Anti-amyloid therapy protects against retinal pigmented epithelium damage and vision loss in a model of age-related macular degeneration. Proc Natl Acad Sci USA 108:E279–E287. doi:10.1073/pnas.1100901108 PubMedPubMedCentralCrossRef Ding JD, Johnson LV, Herrmann R, Farsiu S, Smith SG, Groelle M, Mace BE, Sullivan P, Jamison JA, Kelly U et al (2011) Anti-amyloid therapy protects against retinal pigmented epithelium damage and vision loss in a model of age-related macular degeneration. Proc Natl Acad Sci USA 108:E279–E287. doi:10.​1073/​pnas.​1100901108 PubMedPubMedCentralCrossRef
45.
go back to reference Doraiswamy PM, Sperling RA, Johnson K, Reiman EM, Wong TZ, Sabbagh MN, Sadowsky CH, Fleisher AS, Carpenter A, Joshi AD et al (2014) Florbetapir F 18 amyloid PET and 36-month cognitive decline: a prospective multicenter study. Molecular Psychiatry 19:1044–1051. doi:10.1038/mp.2014.9 PubMedPubMedCentralCrossRef Doraiswamy PM, Sperling RA, Johnson K, Reiman EM, Wong TZ, Sabbagh MN, Sadowsky CH, Fleisher AS, Carpenter A, Joshi AD et al (2014) Florbetapir F 18 amyloid PET and 36-month cognitive decline: a prospective multicenter study. Molecular Psychiatry 19:1044–1051. doi:10.​1038/​mp.​2014.​9 PubMedPubMedCentralCrossRef
47.
go back to reference Dutescu RM, Li QX, Crowston J, Masters CL, Baird PN, Culvenor JG (2009) Amyloid precursor protein processing and retinal pathology in mouse models of Alzheimer’s disease. Graefes Arch Clin Exp Ophthalmol 247:1213–1221PubMedCrossRef Dutescu RM, Li QX, Crowston J, Masters CL, Baird PN, Culvenor JG (2009) Amyloid precursor protein processing and retinal pathology in mouse models of Alzheimer’s disease. Graefes Arch Clin Exp Ophthalmol 247:1213–1221PubMedCrossRef
48.
go back to reference Edwards MM, Rodriguez JJ, Gutierrez-Lanza R, Yates J, Verkhratsky A, Lutty GA (2014) Retinal macroglia changes in a triple transgenic mouse model of Alzheimer’s disease. Exp Eye Res 127:252–260PubMedPubMedCentralCrossRef Edwards MM, Rodriguez JJ, Gutierrez-Lanza R, Yates J, Verkhratsky A, Lutty GA (2014) Retinal macroglia changes in a triple transgenic mouse model of Alzheimer’s disease. Exp Eye Res 127:252–260PubMedPubMedCentralCrossRef
49.
go back to reference Einarsdottir AB, Hardarson SH, Kristjansdottir JV, Bragason DT, Snaedal J, Stefansson E (2015) Retinal oximetry imaging in alzheimer’s disease. J Alzheimer’s Dis JAD 49:79–83PubMedCrossRef Einarsdottir AB, Hardarson SH, Kristjansdottir JV, Bragason DT, Snaedal J, Stefansson E (2015) Retinal oximetry imaging in alzheimer’s disease. J Alzheimer’s Dis JAD 49:79–83PubMedCrossRef
50.
go back to reference Feke G, Hyman B, Stern R, Pasquale L (2015) Retinal blood flow in mild cognitive impairment and Alzheimer’s disease. Alzheimer’s Dementia 1:144–151PubMedPubMedCentral Feke G, Hyman B, Stern R, Pasquale L (2015) Retinal blood flow in mild cognitive impairment and Alzheimer’s disease. Alzheimer’s Dementia 1:144–151PubMedPubMedCentral
51.
go back to reference Ferri CP, Prince M, Brayne C, Brodaty H, Fratiglioni L, Ganguli M, Hall K, Hasegawa K, Hendrie H, Huang Y et al (2005) Global prevalence of dementia: a Delphi consensus study. Lancet (London, England) 366:2112–2117. doi:10.1016/s0140-6736(05)67889-0 Ferri CP, Prince M, Brayne C, Brodaty H, Fratiglioni L, Ganguli M, Hall K, Hasegawa K, Hendrie H, Huang Y et al (2005) Global prevalence of dementia: a Delphi consensus study. Lancet (London, England) 366:2112–2117. doi:10.​1016/​s0140-6736(05)67889-0
52.
go back to reference Finelli A, Kelkar A, Song HJ, Yang H, Konsolaki M (2004) A model for studying Alzheimer’s Abeta42-induced toxicity in Drosophila melanogaster. Mol Cell Neurosci 26:365–375PubMedCrossRef Finelli A, Kelkar A, Song HJ, Yang H, Konsolaki M (2004) A model for studying Alzheimer’s Abeta42-induced toxicity in Drosophila melanogaster. Mol Cell Neurosci 26:365–375PubMedCrossRef
54.
go back to reference Fox NC, Warrington EK, Rossor MN (1999) Serial magnetic resonance imaging of cerebral atrophy in preclinical Alzheimer’s disease. Lancet (London, England) 353:2125. doi:10.1016/s0140-6736(99)00496-1 Fox NC, Warrington EK, Rossor MN (1999) Serial magnetic resonance imaging of cerebral atrophy in preclinical Alzheimer’s disease. Lancet (London, England) 353:2125. doi:10.​1016/​s0140-6736(99)00496-1
56.
go back to reference Frederikse PH, Ren XO (2002) Lens defects and age-related fiber cell degeneration in a mouse model of increased AbetaPP gene dosage in Down syndrome. Am J Pathol 161:1985–1990PubMedPubMedCentralCrossRef Frederikse PH, Ren XO (2002) Lens defects and age-related fiber cell degeneration in a mouse model of increased AbetaPP gene dosage in Down syndrome. Am J Pathol 161:1985–1990PubMedPubMedCentralCrossRef
57.
go back to reference Frederikse PH, Zigler JS Jr (1998) Presenilin expression in the ocular lens. Curr Eye Res 17:947–952PubMedCrossRef Frederikse PH, Zigler JS Jr (1998) Presenilin expression in the ocular lens. Curr Eye Res 17:947–952PubMedCrossRef
58.
go back to reference Frost S, Guymer R, Aung KZ, Macaulay SL, Sohrabi HR, Bourgeat P, Salvado O, Rowe CC, Ames D, Masters CL et al (2016) Alzheimer`s disease and the early signs of age-related macular degeneration. Curr Alzheimer Res (Epub ahead of print) Frost S, Guymer R, Aung KZ, Macaulay SL, Sohrabi HR, Bourgeat P, Salvado O, Rowe CC, Ames D, Masters CL et al (2016) Alzheimer`s disease and the early signs of age-related macular degeneration. Curr Alzheimer Res (Epub ahead of print)
59.
go back to reference Frost S, Kanagasingam Y, Sohrabi H, Vignarajan J, Bourgeat P, Salvado O, Villemagne V, Rowe CC, Macaulay SL, Szoeke C et al (2013) Retinal vascular biomarkers for early detection and monitoring of Alzheimer’s disease. Transl Psychiatry 3:e233PubMedPubMedCentralCrossRef Frost S, Kanagasingam Y, Sohrabi H, Vignarajan J, Bourgeat P, Salvado O, Villemagne V, Rowe CC, Macaulay SL, Szoeke C et al (2013) Retinal vascular biomarkers for early detection and monitoring of Alzheimer’s disease. Transl Psychiatry 3:e233PubMedPubMedCentralCrossRef
63.
go back to reference Gharbiya M, Trebbastoni A, Parisi F, Manganiello S, Cruciani F, D’Antonio F, De Vico U, Imbriano L, Campanelli A, De Lena C (2014) Choroidal thinning as a new finding in Alzheimer’s disease: evidence from enhanced depth imaging spectral domain optical coherence tomography. J Alzheimer’s Dis JAD 40:907–917PubMed Gharbiya M, Trebbastoni A, Parisi F, Manganiello S, Cruciani F, D’Antonio F, De Vico U, Imbriano L, Campanelli A, De Lena C (2014) Choroidal thinning as a new finding in Alzheimer’s disease: evidence from enhanced depth imaging spectral domain optical coherence tomography. J Alzheimer’s Dis JAD 40:907–917PubMed
65.
go back to reference Gilmore GC, Wenk HE, Naylor LA, Koss E (1994) Motion perception and Alzheimer’s disease. J Gerontol 49:P52–P57PubMedCrossRef Gilmore GC, Wenk HE, Naylor LA, Koss E (1994) Motion perception and Alzheimer’s disease. J Gerontol 49:P52–P57PubMedCrossRef
66.
go back to reference Goedert M (2015) NEURODEGENERATION. Alzheimer’s and Parkinson’s diseases: the prion concept in relation to assembled Abeta, tau, and alpha-synuclein. Science (New York, NY) 349:1255555. doi:10.1126/science.1255555 CrossRef Goedert M (2015) NEURODEGENERATION. Alzheimer’s and Parkinson’s diseases: the prion concept in relation to assembled Abeta, tau, and alpha-synuclein. Science (New York, NY) 349:1255555. doi:10.​1126/​science.​1255555 CrossRef
68.
go back to reference Goldeck D, Witkowski JM, Fulop T, Pawelec G (2016) Peripheral Immune Signatures in Alzheimer Disease. Curr Alzheimer Res 13:739–749PubMedCrossRef Goldeck D, Witkowski JM, Fulop T, Pawelec G (2016) Peripheral Immune Signatures in Alzheimer Disease. Curr Alzheimer Res 13:739–749PubMedCrossRef
69.
go back to reference Goldstein LE, Muffat JA, Cherny RA, Moir RD, Ericsson MH, Huang X, Mavros C, Coccia JA, Faget KY, Fitch KA et al (2003) Cytosolic beta-amyloid deposition and supranuclear cataracts in lenses from people with Alzheimer’s disease. Lancet (London, England) 361:1258–1265 Goldstein LE, Muffat JA, Cherny RA, Moir RD, Ericsson MH, Huang X, Mavros C, Coccia JA, Faget KY, Fitch KA et al (2003) Cytosolic beta-amyloid deposition and supranuclear cataracts in lenses from people with Alzheimer’s disease. Lancet (London, England) 361:1258–1265
70.
go back to reference Grammenoudi S, Kosmidis S, Skoulakis EM (2006) Cell type-specific processing of human Tau proteins in Drosophila. FEBS Lett 580:4602–4606PubMedCrossRef Grammenoudi S, Kosmidis S, Skoulakis EM (2006) Cell type-specific processing of human Tau proteins in Drosophila. FEBS Lett 580:4602–4606PubMedCrossRef
71.
go back to reference Granholm E, Morris S, Galasko D, Shults C, Rogers E, Vukov B (2003) Tropicamide effects on pupil size and pupillary light reflexes in Alzheimer’s and Parkinson’s disease. Int J Psychophysiol 47:95–115PubMedCrossRef Granholm E, Morris S, Galasko D, Shults C, Rogers E, Vukov B (2003) Tropicamide effects on pupil size and pupillary light reflexes in Alzheimer’s and Parkinson’s disease. Int J Psychophysiol 47:95–115PubMedCrossRef
72.
go back to reference Greeve I, Kretzschmar D, Tschape JA, Beyn A, Brellinger C, Schweizer M, Nitsch RM, Reifegerste R (2004) Age-dependent neurodegeneration and Alzheimer-amyloid plaque formation in transgenic Drosophila. J Neurosci 24:3899–3906PubMedCrossRef Greeve I, Kretzschmar D, Tschape JA, Beyn A, Brellinger C, Schweizer M, Nitsch RM, Reifegerste R (2004) Age-dependent neurodegeneration and Alzheimer-amyloid plaque formation in transgenic Drosophila. J Neurosci 24:3899–3906PubMedCrossRef
73.
go back to reference Guo L, Duggan J, Cordeiro MF (2010) Alzheimer’s disease and retinal neurodegeneration. Curr Alzheimer Res 7:3–14PubMedCrossRef Guo L, Duggan J, Cordeiro MF (2010) Alzheimer’s disease and retinal neurodegeneration. Curr Alzheimer Res 7:3–14PubMedCrossRef
75.
go back to reference Gupta VK, Chitranshi N, Gupta VB, Golzan M, Dheer Y, Wall RV, Georgevsky D, King AE, Vickers JC, Chung R et al (2016) Amyloid beta accumulation and inner retinal degenerative changes in Alzheimer’s disease transgenic mouse. Neurosci Lett 623:52–56. doi:10.1016/j.neulet.2016.04.059 PubMedCrossRef Gupta VK, Chitranshi N, Gupta VB, Golzan M, Dheer Y, Wall RV, Georgevsky D, King AE, Vickers JC, Chung R et al (2016) Amyloid beta accumulation and inner retinal degenerative changes in Alzheimer’s disease transgenic mouse. Neurosci Lett 623:52–56. doi:10.​1016/​j.​neulet.​2016.​04.​059 PubMedCrossRef
78.
go back to reference He Y, Zhao H, Su G (2014) Ginsenoside Rg1 decreases neurofibrillary tangles accumulation in retina by regulating activities of neprilysin and PKA in retinal cells of AD mice model. J Mol Neurosci 52:101–106. doi:10.1007/s12031-013-0173-7 PubMedCrossRef He Y, Zhao H, Su G (2014) Ginsenoside Rg1 decreases neurofibrillary tangles accumulation in retina by regulating activities of neprilysin and PKA in retinal cells of AD mice model. J Mol Neurosci 52:101–106. doi:10.​1007/​s12031-013-0173-7 PubMedCrossRef
79.
go back to reference Hedges TR 3rd, Perez Galves R, Speigelman D, Barbas NR, Peli E, Yardley CJ (1996) Retinal nerve fiber layer abnormalities in Alzheimer’s disease. Acta Ophthalmol Scand 74:271–275PubMedCrossRef Hedges TR 3rd, Perez Galves R, Speigelman D, Barbas NR, Peli E, Yardley CJ (1996) Retinal nerve fiber layer abnormalities in Alzheimer’s disease. Acta Ophthalmol Scand 74:271–275PubMedCrossRef
80.
go back to reference Heurling K, Leuzy A, Zimmer ER, Lubberink M, Nordberg A (2016) Imaging beta-amyloid using [(18)F]flutemetamol positron emission tomography: from dosimetry to clinical diagnosis. Eur J Nucl Med Mol Imaging 43:362–373. doi:10.1007/s00259-015-3208-1 PubMedCrossRef Heurling K, Leuzy A, Zimmer ER, Lubberink M, Nordberg A (2016) Imaging beta-amyloid using [(18)F]flutemetamol positron emission tomography: from dosimetry to clinical diagnosis. Eur J Nucl Med Mol Imaging 43:362–373. doi:10.​1007/​s00259-015-3208-1 PubMedCrossRef
82.
go back to reference Ho CY, Troncoso JC, Knox D, Stark W, Eberhart CG (2014) Beta-amyloid, phospho-tau and alpha-synuclein deposits similar to those in the brain are not identified in the eyes of Alzheimer’s and Parkinson’s disease patients. Brain Pathol 24:25–32PubMedCrossRef Ho CY, Troncoso JC, Knox D, Stark W, Eberhart CG (2014) Beta-amyloid, phospho-tau and alpha-synuclein deposits similar to those in the brain are not identified in the eyes of Alzheimer’s and Parkinson’s disease patients. Brain Pathol 24:25–32PubMedCrossRef
83.
87.
go back to reference Iseri PK, Altinas O, Tokay T, Yuksel N (2006) Relationship between cognitive impairment and retinal morphological and visual functional abnormalities in Alzheimer disease. J Neuroophthalmol 26:18–24PubMedCrossRef Iseri PK, Altinas O, Tokay T, Yuksel N (2006) Relationship between cognitive impairment and retinal morphological and visual functional abnormalities in Alzheimer disease. J Neuroophthalmol 26:18–24PubMedCrossRef
88.
go back to reference Jack CR Jr, Albert MS, Knopman DS, McKhann GM, Sperling RA, Carrillo MC, Thies B, Phelps CH (2011) Introduction to the recommendations from the National Institute on Aging-Alzheimer’s Association workgroups on diagnostic guidelines for Alzheimer’s disease. Alzheimer’s Dement J Alzheimer’s Assoc 7:257–262. doi:10.1016/j.jalz.2011.03.004 CrossRef Jack CR Jr, Albert MS, Knopman DS, McKhann GM, Sperling RA, Carrillo MC, Thies B, Phelps CH (2011) Introduction to the recommendations from the National Institute on Aging-Alzheimer’s Association workgroups on diagnostic guidelines for Alzheimer’s disease. Alzheimer’s Dement J Alzheimer’s Assoc 7:257–262. doi:10.​1016/​j.​jalz.​2011.​03.​004 CrossRef
91.
go back to reference Jentsch S, Schweitzer D, Schmidtke KU, Peters S, Dawczynski J, Bar KJ, Hammer M (2015) Retinal fluorescence lifetime imaging ophthalmoscopy measures depend on the severity of Alzheimer’s disease. Acta Ophthalmol 93:e241–e247. doi:10.1111/aos.12609 PubMedCrossRef Jentsch S, Schweitzer D, Schmidtke KU, Peters S, Dawczynski J, Bar KJ, Hammer M (2015) Retinal fluorescence lifetime imaging ophthalmoscopy measures depend on the severity of Alzheimer’s disease. Acta Ophthalmol 93:e241–e247. doi:10.​1111/​aos.​12609 PubMedCrossRef
97.
go back to reference Katz B, Rimmer S (1989) Ophthalmologic manifestations of Alzheimer’s disease. Surv Ophthalmol 34:31–43PubMedCrossRef Katz B, Rimmer S (1989) Ophthalmologic manifestations of Alzheimer’s disease. Surv Ophthalmol 34:31–43PubMedCrossRef
101.
go back to reference Kerbage C, Sadowsky CH, Jennings D, Cagle GD, Hartung PD (2013) Alzheimer’s disease diagnosis by detecting exogenous fluorescent signal of ligand bound to Beta amyloid in the lens of human eye: an exploratory study. Front Neurol 4:62PubMedPubMedCentralCrossRef Kerbage C, Sadowsky CH, Jennings D, Cagle GD, Hartung PD (2013) Alzheimer’s disease diagnosis by detecting exogenous fluorescent signal of ligand bound to Beta amyloid in the lens of human eye: an exploratory study. Front Neurol 4:62PubMedPubMedCentralCrossRef
102.
go back to reference Kerbage C, Sadowsky CH, Tariot PN, Agronin M, Alva G, Turner FD, Nilan D, Cameron A, Cagle GD, Hartung PD (2015) Detection of amyloid beta signature in the lens and its correlation in the brain to aid in the diagnosis of Alzheimer’s disease. Am J Alzheimers Dis Other Demen 30:738–745. doi:10.1177/1533317513520214 PubMedCrossRef Kerbage C, Sadowsky CH, Tariot PN, Agronin M, Alva G, Turner FD, Nilan D, Cameron A, Cagle GD, Hartung PD (2015) Detection of amyloid beta signature in the lens and its correlation in the brain to aid in the diagnosis of Alzheimer’s disease. Am J Alzheimers Dis Other Demen 30:738–745. doi:10.​1177/​1533317513520214​ PubMedCrossRef
103.
go back to reference Kergoat H, Kergoat MJ, Justino L, Chertkow H, Robillard A, Bergman H (2001) An evaluation of the retinal nerve fiber layer thickness by scanning laser polarimetry in individuals with dementia of the Alzheimer type. Acta Ophthalmol Scand 79:187–191PubMedCrossRef Kergoat H, Kergoat MJ, Justino L, Chertkow H, Robillard A, Bergman H (2001) An evaluation of the retinal nerve fiber layer thickness by scanning laser polarimetry in individuals with dementia of the Alzheimer type. Acta Ophthalmol Scand 79:187–191PubMedCrossRef
105.
go back to reference Kessing LV, Lopez AG, Andersen PK, Kessing SV (2007) No increased risk of developing Alzheimer disease in patients with glaucoma. J Glaucoma 16:47–51PubMedCrossRef Kessing LV, Lopez AG, Andersen PK, Kessing SV (2007) No increased risk of developing Alzheimer disease in patients with glaucoma. J Glaucoma 16:47–51PubMedCrossRef
107.
go back to reference Koronyo-Hamaoui M, Koronyo Y, Ljubimov AV, Miller CA, Ko MK, Black KL, Schwartz M, Farkas DL (2011) Identification of amyloid plaques in retinas from Alzheimer’s patients and noninvasive in vivo optical imaging of retinal plaques in a mouse model. Neuroimage 54(Suppl 1):S204–S217PubMedCrossRef Koronyo-Hamaoui M, Koronyo Y, Ljubimov AV, Miller CA, Ko MK, Black KL, Schwartz M, Farkas DL (2011) Identification of amyloid plaques in retinas from Alzheimer’s patients and noninvasive in vivo optical imaging of retinal plaques in a mouse model. Neuroimage 54(Suppl 1):S204–S217PubMedCrossRef
108.
go back to reference Koronyo Y, Salumbides BC, Black KL, Koronyo-Hamaoui M (2012) Alzheimer’s disease in the retina: imaging retinal abeta plaques for early diagnosis and therapy assessment. Neurodegener Dis 10:285–293. doi:10.1159/000335154 PubMedCrossRef Koronyo Y, Salumbides BC, Black KL, Koronyo-Hamaoui M (2012) Alzheimer’s disease in the retina: imaging retinal abeta plaques for early diagnosis and therapy assessment. Neurodegener Dis 10:285–293. doi:10.​1159/​000335154 PubMedCrossRef
110.
go back to reference Kromer R, Serbecic N, Hausner L, Froelich L, Aboul-Enein F, Beutelspacher SC (2014) Detection of retinal nerve fiber layer defects in Alzheimer’s disease using SD-OCT. Front Psychiatry 5:22PubMedPubMedCentralCrossRef Kromer R, Serbecic N, Hausner L, Froelich L, Aboul-Enein F, Beutelspacher SC (2014) Detection of retinal nerve fiber layer defects in Alzheimer’s disease using SD-OCT. Front Psychiatry 5:22PubMedPubMedCentralCrossRef
111.
go back to reference Kurna SA, Akar G, Altun A, Agirman Y, Gozke E, Sengor T (2014) Confocal scanning laser tomography of the optic nerve head on the patients with Alzheimer’s disease compared to glaucoma and control. Int Ophthalmol 34:1203–1211. doi:10.1007/s10792-014-0004-z PubMedCrossRef Kurna SA, Akar G, Altun A, Agirman Y, Gozke E, Sengor T (2014) Confocal scanning laser tomography of the optic nerve head on the patients with Alzheimer’s disease compared to glaucoma and control. Int Ophthalmol 34:1203–1211. doi:10.​1007/​s10792-014-0004-z PubMedCrossRef
113.
go back to reference La Morgia C, Ross-Cisneros FN, Koronyo Y, Hannibal J, Gallassi R, Cantalupo G, Sambati L, Pan BX, Tozer KR, Barboni P et al (2016) Melanopsin retinal ganglion cell loss in Alzheimer disease. Ann Neurol. doi:10.1002/ana.24548 PubMed La Morgia C, Ross-Cisneros FN, Koronyo Y, Hannibal J, Gallassi R, Cantalupo G, Sambati L, Pan BX, Tozer KR, Barboni P et al (2016) Melanopsin retinal ganglion cell loss in Alzheimer disease. Ann Neurol. doi:10.​1002/​ana.​24548 PubMed
114.
go back to reference Larrosa JM, Garcia-Martin E, Bambo MP, Pinilla J, Polo V, Otin S, Satue M, Herrero R, Pablo LE (2014) Potential new diagnostic tool for Alzheimer’s disease using a linear discriminant function for Fourier domain optical coherence tomography. Invest Ophthalmol Vis Sci 55:3043–3051. doi:10.1167/iovs.13-13629 PubMedCrossRef Larrosa JM, Garcia-Martin E, Bambo MP, Pinilla J, Polo V, Otin S, Satue M, Herrero R, Pablo LE (2014) Potential new diagnostic tool for Alzheimer’s disease using a linear discriminant function for Fourier domain optical coherence tomography. Invest Ophthalmol Vis Sci 55:3043–3051. doi:10.​1167/​iovs.​13-13629 PubMedCrossRef
117.
go back to reference Liu B, Rasool S, Yang Z, Glabe CG, Schreiber SS, Ge J, Tan Z (2009) Amyloid-peptide vaccinations reduce {beta}-amyloid plaques but exacerbate vascular deposition and inflammation in the retina of Alzheimer’s transgenic mice. Am J Pathol 175:2099–2110PubMedPubMedCentralCrossRef Liu B, Rasool S, Yang Z, Glabe CG, Schreiber SS, Ge J, Tan Z (2009) Amyloid-peptide vaccinations reduce {beta}-amyloid plaques but exacerbate vascular deposition and inflammation in the retina of Alzheimer’s transgenic mice. Am J Pathol 175:2099–2110PubMedPubMedCentralCrossRef
119.
go back to reference Loffler KU, Edward DP, Tso MO (1995) Immunoreactivity against tau, amyloid precursor protein, and beta-amyloid in the human retina. Invest Ophthalmol Vis Sci 36:24–31PubMed Loffler KU, Edward DP, Tso MO (1995) Immunoreactivity against tau, amyloid precursor protein, and beta-amyloid in the human retina. Invest Ophthalmol Vis Sci 36:24–31PubMed
122.
124.
go back to reference Marziani E, Pomati S, Ramolfo P, Cigada M, Giani A, Mariani C, Staurenghi G (2013) Evaluation of retinal nerve fiber layer and ganglion cell layer thickness in Alzheimer’s disease using spectral-domain optical coherence tomography. Invest Ophthalmol Vis Sci 54:5953–5958. doi:10.1167/iovs.13-12046 PubMedCrossRef Marziani E, Pomati S, Ramolfo P, Cigada M, Giani A, Mariani C, Staurenghi G (2013) Evaluation of retinal nerve fiber layer and ganglion cell layer thickness in Alzheimer’s disease using spectral-domain optical coherence tomography. Invest Ophthalmol Vis Sci 54:5953–5958. doi:10.​1167/​iovs.​13-12046 PubMedCrossRef
127.
go back to reference Mawuenyega KG, Sigurdson W, Ovod V, Munsell L, Kasten T, Morris JC, Yarasheski KE, Bateman RJ (2010) Decreased clearance of CNS beta-amyloid in Alzheimer’s disease. Science (New York, NY) 330:1774. doi:10.1126/science.1197623 CrossRef Mawuenyega KG, Sigurdson W, Ovod V, Munsell L, Kasten T, Morris JC, Yarasheski KE, Bateman RJ (2010) Decreased clearance of CNS beta-amyloid in Alzheimer’s disease. Science (New York, NY) 330:1774. doi:10.​1126/​science.​1197623 CrossRef
129.
go back to reference McKinnon SJ (2003) Glaucoma: ocular Alzheimer’s disease? Front Biosci J Virtual Libr 8:s1140–s1156CrossRef McKinnon SJ (2003) Glaucoma: ocular Alzheimer’s disease? Front Biosci J Virtual Libr 8:s1140–s1156CrossRef
130.
go back to reference Mendez MF, Mendez MA, Martin R, Smyth KA, Whitehouse PJ (1990) Complex visual disturbances in Alzheimer’s disease. Neurology 40:439–443PubMedCrossRef Mendez MF, Mendez MA, Martin R, Smyth KA, Whitehouse PJ (1990) Complex visual disturbances in Alzheimer’s disease. Neurology 40:439–443PubMedCrossRef
132.
go back to reference Michael R, Rosandic J, Montenegro GA, Lobato E, Tresserra F, Barraquer RI, Vrensen GF (2013) Absence of beta-amyloid in cortical cataracts of donors with and without Alzheimer’s disease. Exp Eye Res 106:5–13PubMedCrossRef Michael R, Rosandic J, Montenegro GA, Lobato E, Tresserra F, Barraquer RI, Vrensen GF (2013) Absence of beta-amyloid in cortical cataracts of donors with and without Alzheimer’s disease. Exp Eye Res 106:5–13PubMedCrossRef
133.
go back to reference Moncaster JA, Pineda R, Moir RD, Lu S, Burton MA, Ghosh JG, Ericsson M, Soscia SJ, Mocofanescu A, Folkerth RD et al (2010) Alzheimer’s disease amyloid-beta links lens and brain pathology in Down syndrome. PLoS One 5:e10659PubMedPubMedCentralCrossRef Moncaster JA, Pineda R, Moir RD, Lu S, Burton MA, Ghosh JG, Ericsson M, Soscia SJ, Mocofanescu A, Folkerth RD et al (2010) Alzheimer’s disease amyloid-beta links lens and brain pathology in Down syndrome. PLoS One 5:e10659PubMedPubMedCentralCrossRef
134.
go back to reference More SS, Vince R (2015) Hyperspectral imaging signatures detect amyloidopathy in Alzheimer’s mouse retina well before onset of cognitive decline. ACS Chem Neurosci 6:306–315PubMedCrossRef More SS, Vince R (2015) Hyperspectral imaging signatures detect amyloidopathy in Alzheimer’s mouse retina well before onset of cognitive decline. ACS Chem Neurosci 6:306–315PubMedCrossRef
135.
go back to reference Moreno-Ramos T, Benito-Leon J, Villarejo A, Bermejo-Pareja F (2013) Retinal nerve fiber layer thinning in dementia associated with Parkinson’s disease, dementia with Lewy bodies, and Alzheimer’s disease. J Alzheimer’s Dis JAD 34:659–664. doi:10.3233/jad-121975 PubMed Moreno-Ramos T, Benito-Leon J, Villarejo A, Bermejo-Pareja F (2013) Retinal nerve fiber layer thinning in dementia associated with Parkinson’s disease, dementia with Lewy bodies, and Alzheimer’s disease. J Alzheimer’s Dis JAD 34:659–664. doi:10.​3233/​jad-121975 PubMed
136.
go back to reference Morin PJ, Abraham CR, Amaratunga A, Johnson RJ, Huber G, Sandell JH, Fine RE (1993) Amyloid precursor protein is synthesized by retinal ganglion cells, rapidly transported to the optic nerve plasma membrane and nerve terminals, and metabolized. J Neurochem 61:464–473PubMedCrossRef Morin PJ, Abraham CR, Amaratunga A, Johnson RJ, Huber G, Sandell JH, Fine RE (1993) Amyloid precursor protein is synthesized by retinal ganglion cells, rapidly transported to the optic nerve plasma membrane and nerve terminals, and metabolized. J Neurochem 61:464–473PubMedCrossRef
137.
go back to reference Moschos MM, Markopoulos I, Chatziralli I, Rouvas A, Papageorgiou SG, Ladas I, Vassilopoulos D (2012) Structural and functional impairment of the retina and optic nerve in Alzheimer’s disease. Curr Alzheimer Res 9:782–788PubMedCrossRef Moschos MM, Markopoulos I, Chatziralli I, Rouvas A, Papageorgiou SG, Ladas I, Vassilopoulos D (2012) Structural and functional impairment of the retina and optic nerve in Alzheimer’s disease. Curr Alzheimer Res 9:782–788PubMedCrossRef
138.
go back to reference Ng S, Villemagne VL, Berlangieri S, Lee ST, Cherk M, Gong SJ, Ackermann U, Saunder T, Tochon-Danguy H, Jones G et al (2007) Visual assessment versus quantitative assessment of 11C-PIB PET and 18F-FDG PET for detection of Alzheimer’s disease. J Nucl Med Off Publ Soc Nucl Med 48:547–552 Ng S, Villemagne VL, Berlangieri S, Lee ST, Cherk M, Gong SJ, Ackermann U, Saunder T, Tochon-Danguy H, Jones G et al (2007) Visual assessment versus quantitative assessment of 11C-PIB PET and 18F-FDG PET for detection of Alzheimer’s disease. J Nucl Med Off Publ Soc Nucl Med 48:547–552
139.
go back to reference Ning A, Cui J, To E, Ashe KH, Matsubara J (2008) Amyloid-beta deposits lead to retinal degeneration in a mouse model of Alzheimer disease. Invest Ophthalmol Vis Sci 49:5136–5143PubMedPubMedCentralCrossRef Ning A, Cui J, To E, Ashe KH, Matsubara J (2008) Amyloid-beta deposits lead to retinal degeneration in a mouse model of Alzheimer disease. Invest Ophthalmol Vis Sci 49:5136–5143PubMedPubMedCentralCrossRef
140.
go back to reference Nolan JM, Loskutova E, Howard AN, Moran R, Mulcahy R, Stack J, Bolger M, Dennison J, Akuffo KO, Owens N et al (2014) Macular pigment, visual function, and macular disease among subjects with Alzheimer’s disease: an exploratory study. J Alzheimer’s Dis JAD 42:1191–1202. doi:10.3233/jad-140507 PubMed Nolan JM, Loskutova E, Howard AN, Moran R, Mulcahy R, Stack J, Bolger M, Dennison J, Akuffo KO, Owens N et al (2014) Macular pigment, visual function, and macular disease among subjects with Alzheimer’s disease: an exploratory study. J Alzheimer’s Dis JAD 42:1191–1202. doi:10.​3233/​jad-140507 PubMed
142.
go back to reference Oktem EO, Derle E, Kibaroglu S, Oktem C, Akkoyun I, Can U (2015) The relationship between the degree of cognitive impairment and retinal nerve fiber layer thickness. Neurol Sci 36:1141–1146PubMedCrossRef Oktem EO, Derle E, Kibaroglu S, Oktem C, Akkoyun I, Can U (2015) The relationship between the degree of cognitive impairment and retinal nerve fiber layer thickness. Neurol Sci 36:1141–1146PubMedCrossRef
143.
145.
go back to reference Paquet C, Boissonnot M, Roger F, Dighiero P, Gil R, Hugon J (2007) Abnormal retinal thickness in patients with mild cognitive impairment and Alzheimer’s disease. Neurosci Lett 420:97–99PubMedCrossRef Paquet C, Boissonnot M, Roger F, Dighiero P, Gil R, Hugon J (2007) Abnormal retinal thickness in patients with mild cognitive impairment and Alzheimer’s disease. Neurosci Lett 420:97–99PubMedCrossRef
146.
go back to reference Parisi V (2003) Correlation between morphological and functional retinal impairment in patients affected by ocular hypertension, glaucoma, demyelinating optic neuritis and Alzheimer’s disease. Semin Ophthalmol 18:50–57PubMed Parisi V (2003) Correlation between morphological and functional retinal impairment in patients affected by ocular hypertension, glaucoma, demyelinating optic neuritis and Alzheimer’s disease. Semin Ophthalmol 18:50–57PubMed
147.
go back to reference Parisi V, Restuccia R, Fattapposta F, Mina C, Bucci MG, Pierelli F (2001) Morphological and functional retinal impairment in Alzheimer’s disease patients. Clin Neurophysiol 112:1860–1867PubMedCrossRef Parisi V, Restuccia R, Fattapposta F, Mina C, Bucci MG, Pierelli F (2001) Morphological and functional retinal impairment in Alzheimer’s disease patients. Clin Neurophysiol 112:1860–1867PubMedCrossRef
148.
go back to reference Park SW, Kim JH, Mook-Jung I, Kim KW, Park WJ, Park KH (2014) Intracellular amyloid beta alters the tight junction of retinal pigment epithelium in 5XFAD mice. Neurobiol Aging 35:2013–2020PubMedCrossRef Park SW, Kim JH, Mook-Jung I, Kim KW, Park WJ, Park KH (2014) Intracellular amyloid beta alters the tight junction of retinal pigment epithelium in 5XFAD mice. Neurobiol Aging 35:2013–2020PubMedCrossRef
151.
go back to reference Perez de Lara MJ, Pintor J (2015) Presence and release of ATP from the retina in an Alzheimer’s disease model. J Alzheimer’s Dis JAD 43:177–181. doi:10.3233/jad-141005 PubMed Perez de Lara MJ, Pintor J (2015) Presence and release of ATP from the retina in an Alzheimer’s disease model. J Alzheimer’s Dis JAD 43:177–181. doi:10.​3233/​jad-141005 PubMed
152.
go back to reference Perez SE, Lumayag S, Kovacs B, Mufson EJ, Xu S (2009) Beta-amyloid deposition and functional impairment in the retina of the APPswe/PS1DeltaE9 transgenic mouse model of Alzheimer’s disease. Invest Ophthalmol Vis Sci 50:793–800PubMedCrossRef Perez SE, Lumayag S, Kovacs B, Mufson EJ, Xu S (2009) Beta-amyloid deposition and functional impairment in the retina of the APPswe/PS1DeltaE9 transgenic mouse model of Alzheimer’s disease. Invest Ophthalmol Vis Sci 50:793–800PubMedCrossRef
155.
go back to reference Price DL, Rockenstein E, Mante M, Adame A, Overk C, Spencer B, Duong-Polk KX, Bonhaus D, Lindsey J, Masliah E (2016) Longitudinal live imaging of retinal alpha-synuclein:GFP deposits in a transgenic mouse model of Parkinson’s Disease/Dementia with Lewy Bodies. Sci Rep 6:29523. doi:10.1038/srep29523 PubMedPubMedCentralCrossRef Price DL, Rockenstein E, Mante M, Adame A, Overk C, Spencer B, Duong-Polk KX, Bonhaus D, Lindsey J, Masliah E (2016) Longitudinal live imaging of retinal alpha-synuclein:GFP deposits in a transgenic mouse model of Parkinson’s Disease/Dementia with Lewy Bodies. Sci Rep 6:29523. doi:10.​1038/​srep29523 PubMedPubMedCentralCrossRef
156.
go back to reference Ratnayaka JA, Serpell LC, Lotery AJ (2015) Dementia of the eye: the role of amyloid beta in retinal degeneration. Eye (London, England) 29:1013–1026. doi:10.1038/eye.2015.100 Ratnayaka JA, Serpell LC, Lotery AJ (2015) Dementia of the eye: the role of amyloid beta in retinal degeneration. Eye (London, England) 29:1013–1026. doi:10.​1038/​eye.​2015.​100
157.
go back to reference Risacher SL, Wudunn D, Pepin SM, MaGee TR, McDonald BC, Flashman LA, Wishart HA, Pixley HS, Rabin LA, Pare N et al (2013) Visual contrast sensitivity in Alzheimer’s disease, mild cognitive impairment, and older adults with cognitive complaints. Neurobiol Aging 34:1133–1144. doi:10.1016/j.neurobiolaging.2012.08.007 PubMedCrossRef Risacher SL, Wudunn D, Pepin SM, MaGee TR, McDonald BC, Flashman LA, Wishart HA, Pixley HS, Rabin LA, Pare N et al (2013) Visual contrast sensitivity in Alzheimer’s disease, mild cognitive impairment, and older adults with cognitive complaints. Neurobiol Aging 34:1133–1144. doi:10.​1016/​j.​neurobiolaging.​2012.​08.​007 PubMedCrossRef
158.
go back to reference Rizzo M, Anderson SW, Dawson J, Nawrot M (2000) Vision and cognition in Alzheimer’s disease. Neuropsychologia 38:1157–1169PubMedCrossRef Rizzo M, Anderson SW, Dawson J, Nawrot M (2000) Vision and cognition in Alzheimer’s disease. Neuropsychologia 38:1157–1169PubMedCrossRef
160.
161.
go back to reference Sadun AA, Borchert M, DeVita E, Hinton DR, Bassi CJ (1987) Assessment of visual impairment in patients with Alzheimer’s disease. Am J Ophthalmol 104:113–120PubMedCrossRef Sadun AA, Borchert M, DeVita E, Hinton DR, Bassi CJ (1987) Assessment of visual impairment in patients with Alzheimer’s disease. Am J Ophthalmol 104:113–120PubMedCrossRef
162.
go back to reference Salobrar-Garcia E, de Hoz R, Rojas B, Ramirez AI, Salazar JJ, Yubero R, Gil P, Trivino A, Ramirez JM (2015) Ophthalmologic psychophysical tests support OCT findings in mild Alzheimer’s disease. J Ophthalmol 2015:736949. doi:10.1155/2015/736949 PubMedPubMedCentral Salobrar-Garcia E, de Hoz R, Rojas B, Ramirez AI, Salazar JJ, Yubero R, Gil P, Trivino A, Ramirez JM (2015) Ophthalmologic psychophysical tests support OCT findings in mild Alzheimer’s disease. J Ophthalmol 2015:736949. doi:10.​1155/​2015/​736949 PubMedPubMedCentral
163.
go back to reference Schon C, Hoffmann NA, Ochs SM, Burgold S, Filser S, Steinbach S, Seeliger MW, Arzberger T, Goedert M, Kretzschmar HA et al (2012) Long-term in vivo imaging of fibrillar tau in the retina of P301S transgenic mice. PLoS One 7:e53547PubMedPubMedCentralCrossRef Schon C, Hoffmann NA, Ochs SM, Burgold S, Filser S, Steinbach S, Seeliger MW, Arzberger T, Goedert M, Kretzschmar HA et al (2012) Long-term in vivo imaging of fibrillar tau in the retina of P301S transgenic mice. PLoS One 7:e53547PubMedPubMedCentralCrossRef
164.
go back to reference Schwartz M, Bukshpan S, Kunis G (2008) Application of glatiramer acetate to neurodegenerative diseases beyond multiple sclerosis: the need for disease-specific approaches. BioDrugs 22:293–299PubMedCrossRef Schwartz M, Bukshpan S, Kunis G (2008) Application of glatiramer acetate to neurodegenerative diseases beyond multiple sclerosis: the need for disease-specific approaches. BioDrugs 22:293–299PubMedCrossRef
167.
go back to reference Shi Z, Wu Y, Wang M, Cao J, Feng W, Cheng Y, Li C, Shen Y (2014) Greater attenuation of retinal nerve fiber layer thickness in Alzheimer’s disease patients. J Alzheimer’s Dis JAD 40:277–283. doi:10.3233/jad-131898 PubMed Shi Z, Wu Y, Wang M, Cao J, Feng W, Cheng Y, Li C, Shen Y (2014) Greater attenuation of retinal nerve fiber layer thickness in Alzheimer’s disease patients. J Alzheimer’s Dis JAD 40:277–283. doi:10.​3233/​jad-131898 PubMed
170.
go back to reference Surguchov A, McMahan B, Masliah E, Surgucheva I (2001) Synucleins in ocular tissues. J Neurosci Res 65:68–77PubMedCrossRef Surguchov A, McMahan B, Masliah E, Surgucheva I (2001) Synucleins in ocular tissues. J Neurosci Res 65:68–77PubMedCrossRef
171.
go back to reference Tamura H, Kawakami H, Kanamoto T, Kato T, Yokoyama T, Sasaki K, Izumi Y, Matsumoto M, Mishima HK (2006) High frequency of open-angle glaucoma in Japanese patients with Alzheimer’s disease. J Neurol Sci 246:79–83PubMedCrossRef Tamura H, Kawakami H, Kanamoto T, Kato T, Yokoyama T, Sasaki K, Izumi Y, Matsumoto M, Mishima HK (2006) High frequency of open-angle glaucoma in Japanese patients with Alzheimer’s disease. J Neurol Sci 246:79–83PubMedCrossRef
173.
go back to reference Tiepolt S, Hesse S, Patt M, Luthardt J, Schroeter ML, Hoffmann KT, Weise D, Gertz HJ, Sabri O, Barthel H (2016) Early [F]florbetaben and [C]PiB PET images are a surrogate biomarker of neuronal injury in Alzheimer’s disease. Eur J Nucl Med Mol Imaging. doi:10.1007/s00259-016-3353-1 Tiepolt S, Hesse S, Patt M, Luthardt J, Schroeter ML, Hoffmann KT, Weise D, Gertz HJ, Sabri O, Barthel H (2016) Early [F]florbetaben and [C]PiB PET images are a surrogate biomarker of neuronal injury in Alzheimer’s disease. Eur J Nucl Med Mol Imaging. doi:10.​1007/​s00259-016-3353-1
175.
go back to reference Trick GL, Trick LR, Morris P, Wolf M (1995) Visual field loss in senile dementia of the Alzheimer’s type. Neurology 45:68–74PubMedCrossRef Trick GL, Trick LR, Morris P, Wolf M (1995) Visual field loss in senile dementia of the Alzheimer’s type. Neurology 45:68–74PubMedCrossRef
177.
go back to reference Tsai CS, Ritch R, Schwartz B, Lee SS, Miller NR, Chi T, Hsieh FY (1991) Optic nerve head and nerve fiber layer in Alzheimer’s disease. Arch Ophthalmol 109:199–204PubMedCrossRef Tsai CS, Ritch R, Schwartz B, Lee SS, Miller NR, Chi T, Hsieh FY (1991) Optic nerve head and nerve fiber layer in Alzheimer’s disease. Arch Ophthalmol 109:199–204PubMedCrossRef
178.
go back to reference Tsai Y, Lu B, Ljubimov AV, Girman S, Ross-Cisneros FN, Sadun AA, Svendsen CN, Cohen RM, Wang S (2014) Ocular changes in TgF344-AD rat model of Alzheimer’s disease. Invest Ophthalmol Vis Sci 55:523–534PubMedPubMedCentralCrossRef Tsai Y, Lu B, Ljubimov AV, Girman S, Ross-Cisneros FN, Sadun AA, Svendsen CN, Cohen RM, Wang S (2014) Ocular changes in TgF344-AD rat model of Alzheimer’s disease. Invest Ophthalmol Vis Sci 55:523–534PubMedPubMedCentralCrossRef
182.
go back to reference Wegmann S, Maury EA, Kirk MJ, Saqran L, Roe A, DeVos SL, Nicholls S, Fan Z, Takeda S, Cagsal-Getkin O et al (2015) Removing endogenous tau does not prevent tau propagation yet reduces its neurotoxicity. EMBO J 34:3028–3041. doi:10.15252/embj.201592748 PubMedCrossRef Wegmann S, Maury EA, Kirk MJ, Saqran L, Roe A, DeVos SL, Nicholls S, Fan Z, Takeda S, Cagsal-Getkin O et al (2015) Removing endogenous tau does not prevent tau propagation yet reduces its neurotoxicity. EMBO J 34:3028–3041. doi:10.​15252/​embj.​201592748 PubMedCrossRef
183.
go back to reference Williams MA, McGowan AJ, Cardwell CR, Cheung CY, Craig D, Passmore P, Silvestri G, Maxwell AP, McKay GJ (2015) Retinal microvascular network attenuation in Alzheimer’s disease. Alzheimers Dement (Amst) 1:229–235. doi:10.1016/j.dadm.2015.04.001 Williams MA, McGowan AJ, Cardwell CR, Cheung CY, Craig D, Passmore P, Silvestri G, Maxwell AP, McKay GJ (2015) Retinal microvascular network attenuation in Alzheimer’s disease. Alzheimers Dement (Amst) 1:229–235. doi:10.​1016/​j.​dadm.​2015.​04.​001
185.
186.
188.
go back to reference Zhao H, Chang R, Che H, Wang J, Yang L, Fang W, Xia Y, Li N, Ma Q, Wang X (2013) Hyperphosphorylation of tau protein by calpain regulation in retina of Alzheimer’s disease transgenic mouse. Neurosci Lett 551:12–16PubMedCrossRef Zhao H, Chang R, Che H, Wang J, Yang L, Fang W, Xia Y, Li N, Ma Q, Wang X (2013) Hyperphosphorylation of tau protein by calpain regulation in retina of Alzheimer’s disease transgenic mouse. Neurosci Lett 551:12–16PubMedCrossRef
Metadata
Title
Ocular indicators of Alzheimer’s: exploring disease in the retina
Authors
Nadav J. Hart
Yosef Koronyo
Keith L. Black
Maya Koronyo-Hamaoui
Publication date
01-12-2016
Publisher
Springer Berlin Heidelberg
Published in
Acta Neuropathologica / Issue 6/2016
Print ISSN: 0001-6322
Electronic ISSN: 1432-0533
DOI
https://doi.org/10.1007/s00401-016-1613-6

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