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2. Microglia in the Aging Retina

6. Polysialic acid blocks mononuclear phagocyte reactivity, inhibits complement activation, and protects from vascular damage in the retina

10. Nonsense mutations in FAM161A cause RP28-associated recessive retinitis pigmentosa

12. A mega-analysis of expression quantitative trait loci in retinal tissue

13. A Circulating MicroRNA Profile in a Laser-Induced Mouse Model of Choroidal Neovascularization

15. A mega-analysis of expression quantitative trait loci in retinal tissue

17. Inhibition of the Keap1-Nrf2 protein-protein interaction protects retinal cells and ameliorates retinal ischemia-reperfusion injury

18. Detection of Pro- and Antiangiogenic Factors in the Human Sclera

19. Correction: Luteolin triggers global changes in the microglial transcriptome leading to a unique anti-inflammatory and neuroprotective phenotype

20. Cystoid edema, neovascularization and inflammatory processes in the murine Norrin-deficient retina

21. Correction: Mapping the genomic landscape of inherited retinal disease genes prioritizes genes prone to coding and noncoding copy-number variations

22. Curcumin is a potent modulator of microglial gene expression and migration

23. Luteolin triggers global changes in the microglial transcriptome leading to a unique anti-inflammatory and neuroprotective phenotype

25. Mapping the genomic landscape of inherited retinal disease genes prioritizes genes prone to coding and noncoding copy-number variations

26. Leveraging consanguinity in inherited retinal diseases uncovers missing genetic variation: rare novel disease genes and a multitude of novel pathogenic variants in known disease genes

27. Transcriptional regulation of Translocator protein (18 kDa) (TSPO) in microglia requires Pu.1, Ap1 and Sp factors

28. Cystoid edema, neovascularization and inflammatory processes in the murine Norrin-deficient retina

30. Additional file 1: Figure S1. of Age-related macular degeneration associated polymorphism rs10490924 in ARMS2 results in deficiency of a complement activator

33. Mapping the genomic landscape of inherited retinal disease genes prioritizes genes prone to coding and noncoding copy-number variations

34. Age-related macular degeneration associated polymorphism rs10490924 in ARMS2 results in deficiency of a complement activator

35. Effect of hyaluronic acid-binding to lipoplexes on intravitreal drug delivery for retinal gene therapy

36. Microglia and immunomodulatory therapies for retinal degenerative diseases

39. Age-related macular degeneration associated polymorphism rs10490924 in ARMS2 results in deficiency of a complement activator

40. Autosomal recessive retinitis pigmentosa with homozygous rhodopsin mutation E150K and non-coding cis-regulatory variants in CRX-binding regions of SAMD7

41. Isolated and Syndromic Retinal Dystrophy Caused by Biallelic Mutations in RCBTB1, a Gene Implicated in Ubiquitination

42. Autosomal recessive retinitis pigmentosa with homozygous rhodopsin mutation E150K and non-coding cis-regulatory variants in CRX-binding regions of SAMD7

43. CRX ChIP-seq reveals the cis-regulatory architecture of mouse photoreceptors

44. Polysialic acid blocks mononuclear phagocyte reactivity, inhibits complement activation, and protects from vascular damage in the retina

45. Isolated and Syndromic Retinal Dystrophy Caused by Biallelic Mutations in RCBTB1 , a Gene Implicated in Ubiquitination

46. Autosomal recessive retinitis pigmentosa with homozygous rhodopsin mutation E150K and non-coding cis-regulatory variants in CRX-binding regions of SAMD7

48. SF3B2, a novel candidate gene for autosomal dominant retinitis pigmentosa, encodes a component of the U2 small nuclear ribonucleoprotein

49. Mutation of RCBTB1 in a severe syndromic retinal ciliopathy

50. Early-onset autosomal recessive cerebellar ataxia associated with retinal dystrophy: new human hotfoot phenotype caused by homozygous GRID2 deletion

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