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Microvascular Research|May 1, 1983
Anionic sites in basement membranes. Differences in their electrostatic properties in continuous and fenestrated capillariesA S Charonis, S L WissigDiabetes|October 1, 1992
Structural and functional changes of laminin and type IV collagen after nonenzymatic glycationA S Charonis, E C TsilbaryThe Journal of Cell Biology|December 1, 1986
The role of the main noncollagenous domain (NC1) in type IV collagen self-assemblyE C Tsilibary, A S CharonisThe Journal of Biological Chemistry|February 17, 1995
Matrix nonenzymatic glycosylation leads to altered cellular phenotype and intracellular tyrosine phosphorylationG Hasegawa, A J Hunter, A S CharonisThe Journal of Clinical Investigation|December 1, 1993
Nonenzymatic glycosylation-induced modifications of intact bovine kidney tubular basement membraneS S Anderson, E C Tsilibary, A S CharonisConnective Tissue Research|January 1, 1991
A melanoma cell surface laminin binding protein with apparent Mr 90,000G G Koliakos, E C Tsilibary, A S CharonisThe Journal of Cell Biology|November 1, 1986
Inhibition of laminin self-assembly and interaction with type IV collagen by antibodies to the terminal domain of the long armA S Charonis, E C Tsilibary, T Saku, et al.The Journal of Biological Chemistry|June 25, 1985
Laminin polymerization in vitro. Evidence for a two-step assembly with domain specificityP D Yurchenco, E C Tsilibary, A S Charonis, et al.The Journal of Biological Chemistry|June 25, 1992
Altered cellular interactions between endothelial cells and nonenzymatically glucosylated laminin/type IV collagenC S Haitoglou, E C Tsilibary, M Brownlee, et al.Microcirculation (New York, N.Y. : 1994)|September 1, 1995
Putrescine: a novel inhibitor of glycosylation-induced cross-links in lamininN E Tsopanoglou, C Zioudrou, E C Tsilibary, et al.Pageof 4