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244 related items for PubMed ID: 32387618
1. CXCR5/NRF2 double knockout mice develop retinal degeneration phenotype at early adult age. Huang H, Lennikov A. Exp Eye Res; 2020 Jul; 196():108061. PubMed ID: 32387618 [Abstract] [Full Text] [Related]
2. Autoimmune-Mediated Retinopathy in CXCR5-Deficient Mice as the Result of Age-Related Macular Degeneration Associated Proteins Accumulation. Lennikov A, Saddala MS, Mukwaya A, Tang S, Huang H. Front Immunol; 2019 Jul; 10():1903. PubMed ID: 31474986 [Abstract] [Full Text] [Related]
3. Age-related macular degeneration phenotypes are associated with increased tumor necrosis-alpha and subretinal immune cells in aged Cxcr5 knockout mice. Huang H, Liu Y, Wang L, Li W. PLoS One; 2017 Jul; 12(3):e0173716. PubMed ID: 28282423 [Abstract] [Full Text] [Related]
4. Inducible RPE-specific GPX4 knockout causes oxidative stress and retinal degeneration with features of age-related macular degeneration. Wojciechowski AM, Bell BA, Song Y, Anderson BD, Conomikes A, Petruconis C, Dunaief JL. Exp Eye Res; 2024 Oct; 247():110028. PubMed ID: 39128667 [Abstract] [Full Text] [Related]
5. Absence of DJ-1 causes age-related retinal abnormalities in association with increased oxidative stress. Bonilha VL, Bell BA, Rayborn ME, Samuels IS, King A, Hollyfield JG, Xie C, Cai H. Free Radic Biol Med; 2017 Mar; 104():226-237. PubMed ID: 28088625 [Abstract] [Full Text] [Related]
6. Retinal Phenotype following Combined Deletion of the Chemokine Receptor CCR2 and the Chemokine CX3CL1 in Mice. Hagbi-Levi S, Grunin M, Elbaz-Hayoun S, Tal D, Obolensky A, Hanhart J, Banin E, Burstyn-Cohen T, Chowers I. Ophthalmic Res; 2016 Mar; 55(3):126-34. PubMed ID: 26670885 [Abstract] [Full Text] [Related]
7. Wheel running exercise protects against retinal degeneration in the I307N rhodopsin mouse model of inducible autosomal dominant retinitis pigmentosa. Zhang X, Girardot PE, Sellers JT, Li Y, Wang J, Chrenek MA, Wu W, Skelton H, Nickerson JM, Pardue MT, Boatright JH. Mol Vis; 2019 Mar; 25():462-476. PubMed ID: 31523123 [Abstract] [Full Text] [Related]
8. Protection of retina by αB crystallin in sodium iodate induced retinal degeneration. Zhou P, Kannan R, Spee C, Sreekumar PG, Dou G, Hinton DR. PLoS One; 2014 Mar; 9(5):e98275. PubMed ID: 24874187 [Abstract] [Full Text] [Related]
9. Loss of NRF-2 and PGC-1α genes leads to retinal pigment epithelium damage resembling dry age-related macular degeneration. Felszeghy S, Viiri J, Paterno JJ, Hyttinen JMT, Koskela A, Chen M, Leinonen H, Tanila H, Kivinen N, Koistinen A, Toropainen E, Amadio M, Smedowski A, Reinisalo M, Winiarczyk M, Mackiewicz J, Mutikainen M, Ruotsalainen AK, Kettunen M, Jokivarsi K, Sinha D, Kinnunen K, Petrovski G, Blasiak J, Bjørkøy G, Koskelainen A, Skottman H, Urtti A, Salminen A, Kannan R, Ferrington DA, Xu H, Levonen AL, Tavi P, Kauppinen A, Kaarniranta K. Redox Biol; 2019 Jan; 20():1-12. PubMed ID: 30253279 [Abstract] [Full Text] [Related]
10. Increased susceptibility to fundus camera-delivered light-induced retinal degeneration in mice deficient in oxidative stress response proteins. Ding Y, Aredo B, Zhong X, Zhao CX, Ufret-Vincenty RL. Exp Eye Res; 2017 Jun; 159():58-68. PubMed ID: 28336262 [Abstract] [Full Text] [Related]
12. Aberrant Buildup of All-Trans-Retinal Dimer, a Nonpyridinium Bisretinoid Lipofuscin Fluorophore, Contributes to the Degeneration of the Retinal Pigment Epithelium. Zhao J, Liao Y, Chen J, Dong X, Gao Z, Zhang H, Wu X, Liu Z, Wu Y. Invest Ophthalmol Vis Sci; 2017 Feb 01; 58(2):1063-1075. PubMed ID: 28192797 [Abstract] [Full Text] [Related]
13. Irreversible Photoreceptors and RPE Cells Damage by Intravenous Sodium Iodate in Mice Is Related to Macrophage Accumulation. Moriguchi M, Nakamura S, Inoue Y, Nishinaka A, Nakamura M, Shimazawa M, Hara H. Invest Ophthalmol Vis Sci; 2018 Jul 02; 59(8):3476-3487. PubMed ID: 30025075 [Abstract] [Full Text] [Related]
14. Deficiency of C-X-C chemokine receptor type 5 (CXCR5) gene causes dysfunction of retinal pigment epithelium cells. Lennikov A, Mukwaya A, Saddala MS, Huang H. Lab Invest; 2021 Feb 02; 101(2):228-244. PubMed ID: 32994482 [Abstract] [Full Text] [Related]
15. Conditional Induction of Oxidative Stress in RPE: A Mouse Model of Progressive Retinal Degeneration. Biswal MR, Ildefonso CJ, Mao H, Seo SJ, Wang Z, Li H, Le YZ, Lewin AS. Adv Exp Med Biol; 2016 Feb 02; 854():31-7. PubMed ID: 26427390 [Abstract] [Full Text] [Related]
16. Nrf2 overexpression rescues the RPE in mouse models of retinitis pigmentosa. Wu DM, Ji X, Ivanchenko MV, Chung M, Piper M, Rana P, Wang SK, Xue Y, West E, Zhao SR, Xu H, Cicconet M, Xiong W, Cepko CL. JCI Insight; 2021 Jan 25; 6(2):. PubMed ID: 33491671 [Abstract] [Full Text] [Related]
17. Epithelial-Mesenchymal Transition and Senescence in the Retinal Pigment Epithelium of NFE2L2/PGC-1α Double Knock-Out Mice. Blasiak J, Koskela A, Pawlowska E, Liukkonen M, Ruuth J, Toropainen E, Hyttinen JMT, Viiri J, Eriksson JE, Xu H, Chen M, Felszeghy S, Kaarniranta K. Int J Mol Sci; 2021 Feb 08; 22(4):. PubMed ID: 33567500 [Abstract] [Full Text] [Related]
18. Mitochondrial oxidative stress in the retinal pigment epithelium (RPE) led to metabolic dysfunction in both the RPE and retinal photoreceptors. Brown EE, DeWeerd AJ, Ildefonso CJ, Lewin AS, Ash JD. Redox Biol; 2019 Jun 08; 24():101201. PubMed ID: 31039480 [Abstract] [Full Text] [Related]
19. Early AMD-like defects in the RPE and retinal degeneration in aged mice with RPE-specific deletion of Atg5 or Atg7. Zhang Y, Cross SD, Stanton JB, Marmorstein AD, Le YZ, Marmorstein LY. Mol Vis; 2017 Jun 08; 23():228-241. PubMed ID: 28465655 [Abstract] [Full Text] [Related]
20. The Anti-Inflammatory Effects of CXCR5 in the Mice Retina following Ischemia-Reperfusion Injury. Cao X, Li W, Liu Y, Huang H, Ye CH. Biomed Res Int; 2019 Jun 08; 2019():3487607. PubMed ID: 31355256 [Abstract] [Full Text] [Related] Page: [Next] [New Search]