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541 related items for PubMed ID: 16966147

  • 1. Characterization of barrier properties and inducible VEGF expression of several types of retinal pigment epithelium in medium-term culture.
    Geisen P, McColm JR, King BM, Hartnett ME.
    Curr Eye Res; 2006 Sep; 31(9):739-48. PubMed ID: 16966147
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  • 2. Stimulation of apical and basolateral VEGF-A and VEGF-C secretion by oxidative stress in polarized retinal pigment epithelial cells.
    Kannan R, Zhang N, Sreekumar PG, Spee CK, Rodriguez A, Barron E, Hinton DR.
    Mol Vis; 2006 Dec 22; 12():1649-59. PubMed ID: 17200665
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  • 3. A cell culture medium that supports the differentiation of human retinal pigment epithelium into functionally polarized monolayers.
    Hu J, Bok D.
    Mol Vis; 2001 Feb 07; 7():14-9. PubMed ID: 11182021
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  • 4. Minimal effects of VEGF and anti-VEGF drugs on the permeability or selectivity of RPE tight junctions.
    Peng S, Adelman RA, Rizzolo LJ.
    Invest Ophthalmol Vis Sci; 2010 Jun 07; 51(6):3216-25. PubMed ID: 20042644
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  • 5. Na,K-ATPase inhibition alters tight junction structure and permeability in human retinal pigment epithelial cells.
    Rajasekaran SA, Hu J, Gopal J, Gallemore R, Ryazantsev S, Bok D, Rajasekaran AK.
    Am J Physiol Cell Physiol; 2003 Jun 07; 284(6):C1497-507. PubMed ID: 12570983
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  • 6. Expression of JAM-A in the human corneal endothelium and retinal pigment epithelium: localization and evidence for role in barrier function.
    Mandell KJ, Berglin L, Severson EA, Edelhauser HF, Parkos CA.
    Invest Ophthalmol Vis Sci; 2007 Sep 07; 48(9):3928-36. PubMed ID: 17724169
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  • 7. Interleukin-1beta and barrier function of retinal pigment epithelial cells (ARPE-19): aberrant expression of junctional complex molecules.
    Abe T, Sugano E, Saigo Y, Tamai M.
    Invest Ophthalmol Vis Sci; 2003 Sep 07; 44(9):4097-104. PubMed ID: 12939333
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  • 8. PDGF-C and -D induced proliferation/migration of human RPE is abolished by inflammatory cytokines.
    Li R, Maminishkis A, Wang FE, Miller SS.
    Invest Ophthalmol Vis Sci; 2007 Dec 07; 48(12):5722-32. PubMed ID: 18055825
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  • 12. Fenofibric acid reduces fibronectin and collagen type IV overexpression in human retinal pigment epithelial cells grown in conditions mimicking the diabetic milieu: functional implications in retinal permeability.
    Trudeau K, Roy S, Guo W, Hernández C, Villarroel M, Simó R, Roy S.
    Invest Ophthalmol Vis Sci; 2011 Aug 11; 52(9):6348-54. PubMed ID: 21715349
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  • 17. Retinal pigment epithelium and endothelial cell interaction causes retinal pigment epithelial barrier dysfunction via a soluble VEGF-dependent mechanism.
    Hartnett ME, Lappas A, Darland D, McColm JR, Lovejoy S, D'Amore PA.
    Exp Eye Res; 2003 Nov 11; 77(5):593-9. PubMed ID: 14550401
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  • 18. ARPE-19, a human retinal pigment epithelial cell line with differentiated properties.
    Dunn KC, Aotaki-Keen AE, Putkey FR, Hjelmeland LM.
    Exp Eye Res; 1996 Feb 11; 62(2):155-69. PubMed ID: 8698076
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  • 19. Regulation of Na,K-ATPase β1-subunit in TGF-β2-mediated epithelial-to-mesenchymal transition in human retinal pigmented epithelial cells.
    Mony S, Lee SJ, Harper JF, Barwe SP, Langhans SA.
    Exp Eye Res; 2013 Oct 11; 115():113-22. PubMed ID: 23810808
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  • 20. LC-MS/MS Based Quantitation of ABC and SLC Transporter Proteins in Plasma Membranes of Cultured Primary Human Retinal Pigment Epithelium Cells and Immortalized ARPE19 Cell Line.
    Pelkonen L, Sato K, Reinisalo M, Kidron H, Tachikawa M, Watanabe M, Uchida Y, Urtti A, Terasaki T.
    Mol Pharm; 2017 Mar 06; 14(3):605-613. PubMed ID: 28112518
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