In Vivo Imaging of Tight Junctions Using Claudin–EGFP Transgenic Medaka
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Publisher
Humana Press
Link
http://link.springer.com/content/pdf/10.1007/978-1-61779-185-7_12
Reference14 articles.
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3. Furuse M, Sasaki H, Fujimoto K, Tsukita S (1998) A single gene product, claudin-1 or -2, reconstitutes tight junction strands and recruits occludin in fibroblasts. J Cell Biol 143: 391–401.
4. Simon DB, Lu Y, Choate KA, Velazquez H, Al-Sabban E, Praga M, Casari G, Bettinelli A, Colussi G, Rodriguez-Soriano J, McCredie D, Milford D, Sanjad S, Lifton RP (1999) Paracellin-1, a renal tight junction protein required for paracellular Mg2+ resorption. Science 283: 103–6.
5. Konrad M, Schaller A, Seelow D, Pandey AV, Waldegger S, Lesslauer A, Vitzthum H, Suzuki Y, Luk JM, Becker C, Schlingmann KP, Schmid M, Rodriguez-Soriano J, Ariceta G, Cano F, Enriquez R, Juppner H, Bakkaloglu SA, Hediger MA, Gallati S, Neuhauss SC, Nurnberg P, Weber S (2006) Mutations in the tight-junction gene claudin 19 (CLDN19) are associated with renal magnesium wasting, renal failure, and severe ocular involvement. Am J Hum Genet 79(5): 949–57.
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1. Evaluation of red and near infrared fluorescent silver nanoclusters as potential in vivo indicators of tight junction opening;RSC Advances;2017
2. Exploring tight junction alteration using double fluorescent probe combination of lanthanide complex with gold nanoclusters;Scientific Reports;2016-08-30
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