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Journal Abstract Search


207 related items for PubMed ID: 39128667

  • 21. Systemic treatment with a 5HT1a agonist induces anti-oxidant protection and preserves the retina from mitochondrial oxidative stress.
    Biswal MR, Ahmed CM, Ildefonso CJ, Han P, Li H, Jivanji H, Mao H, Lewin AS.
    Exp Eye Res; 2015 Nov; 140():94-105. PubMed ID: 26315784
    [Abstract] [Full Text] [Related]

  • 22. Sodium-iodate injection can replicate retinal and choroid degeneration in pigmented mice: Using multimodal imaging and label-free quantitative proteomics analysis.
    Wu S, Zheng F, Sui A, Wu D, Chen Z.
    Exp Eye Res; 2024 Oct; 247():110050. PubMed ID: 39151777
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  • 24. Evolution of oxidative stress, inflammation and neovascularization in the choroid and retina in a subretinal lipid induced age-related macular degeneration model.
    Kim SY, Kambhampati SP, Bhutto IA, McLeod DS, Lutty GA, Kannan RM.
    Exp Eye Res; 2021 Feb; 203():108391. PubMed ID: 33307075
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  • 25. 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 Feb; 10():1903. PubMed ID: 31474986
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  • 26. Sodium-Iodate Injection Can Replicate Retinal Degenerative Disease Stages in Pigmented Mice and Rats: Non-Invasive Follow-Up Using OCT and ERG.
    Koster C, van den Hurk KT, Ten Brink JB, Lewallen CF, Stanzel BV, Bharti K, Bergen AA.
    Int J Mol Sci; 2022 Mar 08; 23(6):. PubMed ID: 35328338
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  • 27. Progressive dysfunction of the retinal pigment epithelium and retina due to increased VEGF-A levels.
    Ablonczy Z, Dahrouj M, Marneros AG.
    FASEB J; 2014 May 08; 28(5):2369-79. PubMed ID: 24558195
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  • 28. CXCR5/NRF2 double knockout mice develop retinal degeneration phenotype at early adult age.
    Huang H, Lennikov A.
    Exp Eye Res; 2020 Jul 08; 196():108061. PubMed ID: 32387618
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  • 29. Replenishing IRAK-M expression in retinal pigment epithelium attenuates outer retinal degeneration.
    Liu J, Copland DA, Clare AJ, Gorski M, Richards BT, Scott L, Theodoropoulou S, Greferath U, Cox K, Shi G, Bell OH, Ou K, Powell JLB, Wu J, Robles LM, Li Y, Nicholson LB, Coffey PJ, Fletcher EL, Guymer R, Radeke MJ, Heid IM, Hageman GS, Chan YK, Dick AD.
    Sci Transl Med; 2024 Jun 05; 16(750):eadi4125. PubMed ID: 38838135
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  • 30. 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 Jun 05; 12(3):e0173716. PubMed ID: 28282423
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  • 31. Conditional loss of Kcnj13 in the retinal pigment epithelium causes photoreceptor degeneration.
    Roman D, Zhong H, Yaklichkin S, Chen R, Mardon G.
    Exp Eye Res; 2018 Nov 05; 176():219-226. PubMed ID: 30009826
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  • 34. Deletion of autophagy inducer RB1CC1 results in degeneration of the retinal pigment epithelium.
    Yao J, Jia L, Khan N, Lin C, Mitter SK, Boulton ME, Dunaief JL, Klionsky DJ, Guan JL, Thompson DA, Zacks DN.
    Autophagy; 2015 Nov 05; 11(6):939-53. PubMed ID: 26075877
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  • 35. Daily zeaxanthin supplementation prevents atrophy of the retinal pigment epithelium (RPE) in a mouse model of mitochondrial oxidative stress.
    Biswal MR, Justis BD, Han P, Li H, Gierhart D, Dorey CK, Lewin AS.
    PLoS One; 2018 Nov 05; 13(9):e0203816. PubMed ID: 30265681
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  • 37. Aberrant lipid accumulation and retinal pigment epithelium dysfunction in PRCD-deficient mice.
    Motipally SI, Kolson DR, Guan T, Kolandaivelu S.
    Exp Eye Res; 2024 Sep 05; 246():110016. PubMed ID: 39098587
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  • 38. Berberine protects against light-induced photoreceptor degeneration in the mouse retina.
    Song D, Song J, Wang C, Li Y, Dunaief JL.
    Exp Eye Res; 2016 Apr 05; 145():1-9. PubMed ID: 26475979
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