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Allport, J. R., Ding, H., Collins, T., Gerritsen, M. E. and Luscinskas, F. W (1997). Endothelial-dependent mechanisms regulate leukocyte transmigration: a process involving the proteasome and disruption of the vascular endothelial-cadherin complex at endothelial cell-to-cell junctions. J. Exp. Med 186, 517-527.[Abstract/Free Full Text]

Anderson, J. M. and Van Itallie, C. M (1995). Tight junctions and the molecular basis for regulation of paracellular permeability. Am. J. Physiol 269, 467-475.

Barnstable, C. J., Bodmer, W. F., Brown, G., Galfre, G., Milstein, C., Williams, A. F. and Ziegler, A (1978). Production of monoclonal antibodies to group A erythrocytes, HLA and other human cell surface antigens-new tools for genetic analysis. Cell 14, 9-20.[Medline]

Bianchi, E., Bender, J. R., Blasi, F. and Pardi, R (1997). Through and beyond the wall: late steps in leukocyte transendothelial migration. Immunol. Today 18, 586-591.[Medline]

Burns, A. R., Simon, S. I., Kukielka, G. L., Rowen, J. L., Lu, H., Mendoza, L. H., Brown, E. S., Entman, M. L. and Smith, C. W (1996). Chemotactic factors stimulate CD18-dependent canine neutrophil adherence and motility on lung fibroblasts. J. Immunol 156, 3389-3401.[Abstract]

Burns, A. R., Walker, D. C., Brown, E. S., Thurmon, L. T., Bowden, R. A., Keese, C. R., Simon, S. I., Entman, M. L. and Smith, C. W (1997). Neutrophil transendothelial migration is independent of tight junctions and occurs preferentially at tricellular corners. J. Immunol 159, 2893-2903.[Abstract]

Burns, A. R., Bowden, R. A., Abe, Y., Walker, D. C., Simon, S. I., Entman, M. L. and Smith, C. W (1999). P-selectin mediates neutrophil adhesion to endothelial cell borders. J. Leukoc. Biol 65, 299-306.[Abstract]

Dejana, E. and Del Maschio, A (1995). Molecular organization and functional regulation of cell to cell junctions in the endothelium. Thromb. Haemost 74, 309-312.[Medline]

Dejana, E., Corada, M. and Lampugnani, M. G (1995). Endothelial cell-to-cell junctions. FASEB J 9, 910-918.[Abstract]

Del Maschio, A., Zanetti, A., Corada, M., Rival, Y., Ruco, L., Lampugnani, M. G. and Dejana, E (1996). Polymorphonuclear leukocyte adhesiontriggers the disorganization of endothelial cell-to-cell adherens junctions. J. Cell Biol 135, 497-510.[Abstract/Free Full Text]

Elgjo, R. F., Henriksen, T. and Evensen, S. A (1975). Ultrastructural identification of umbilical cord vein endothelium in situ and in culture. Cell Tissue Res 162, 49-59.[Medline]

Farquhar, M. G. and Palade, G. E (1963). Junctional complexes in various epithelia. J. Cell Biol 17, 375-412.[Abstract/Free Full Text]

Feng, D., Nagy, J. A., Pyne, K., Dvorak, H. F. and Dvorak, A. M (1998). Neutrophils emigrate from venules by a transendothelial cell pathway in response to FMLP. J. Exp. Med 187, 903-915.[Abstract/Free Full Text]

Furuse, M., Hirase, T., Itoh, M., Nagafuchi, A., Yonemura, S. and Tsukita, S (1993). Occludin: a novel integral membrane protein localizing at tight junctions. J. Cell Biol 123, 1777-1788.[Abstract/Free Full Text]

Furuse, M., Fujita, K., Hiiragi, T., Fujimoto, K. and Tsukita, S (1998). Claudin-1 and-2: novel integral membrane proteins localizing at tight junctions with no sequence similarity to occludin. J. Cell Biol 141, 1539-1550.[Abstract/Free Full Text]

Giaever, I. and Keese, C. R (1984). Monitoring fibroblast behavior in tissue culture with an applied electric field. Proc. Nat. Acad. Sci. USA 81, 3761-3764.[Abstract/Free Full Text]

Giaever, I. and Keese, C. R (1991). Micromotion of mammalian cells measured electrically. Proc. Nat. Acad. Sci. USA 88, 7896-7900.[Abstract/Free Full Text]

Ginzberg, H. and Downey, G (1999). Artifactual degradation of epithelial junctional proteins using standard fixation protocols. FASEB J 13, 670-.

Gotsch, U., Borges, E., Bosse, R., Boggemeyer, E., Simon, M., Mossmann, H. and Vestweber, D (1997). VE-cadherin antibody accelerates neutrophil recruitment in vivo. J. Cell Sci 110, 583-588.[Abstract]

Haskins, J., Gu, L., Wittchen, E. S., Hibbard, J. and Stevenson, B. R (1998). ZO-3, a Novel member of the MAGUK protein family found at the tight junction, interacts with ZO-1 and occludin. J. Cell Biol 141, 199-208.[Abstract/Free Full Text]

Huang, A. J., Furie, M. B., Nicholson, S. C., Fischbarg, J., Liebovitch, L. S. and Silverstein, S. C (1988). Effects of human neutrophil chemotaxis across human endothelial cell monolayers on the permeability of these monolayers to ions and macromolecules. J. Cell Physiol 135, 355-366.[Medline]

Huang, A. J., Manning, J. E., Bandak, T. M., Ratau, M. C., Hanser, K. R. and Silverstein, S. C (1993). Endothelial cell cytosolic free calcium regulates neutrophil migration across monolayers of endothelial cells. J. Cell Biol 120, 1371-1380.[Abstract/Free Full Text]

Killackey, J. J., Johnston, M. G. and Movat, H. Z (1986). Increased permeability of microcarrier-cultured endothelial monolayers in response to histamine and thrombin. A model for the in vitro study of increased vasopermeability. Am J. Pathol 122, 50-61.[Abstract]

Laemmli, U. K (1970). Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227, 680-685.[Medline]

Majno, G., Shea, S. M. and Leventhal, M (1969). Endothelial contraction induced by histamine-type mediators: an electron microscopic study. J. Cell Biol 42, 647-672.[Abstract/Free Full Text]

Milton, S. G. and Knutson, V. P (1990). Comparison of the function of the tight junctions of endothelial cells and epithelial cells in regulating the movement of electrolytes and macromolecules across the cell monolayer. J. Cell. Physiol 144, 498-504.[Medline]

Moll, T., Dejana, E. and Vestweber, D (1998). In vitro degradation of endothelial catenins by a neutrophil protease. J. Cell Biol 140, 403-407.[Abstract/Free Full Text]

Nash, S., Stafford, J. and Madara, J. L (1987). Effects of polymorphonuclear leukocyte transmigration on the barrier function of cultured intestinal epithelial monolayers. J. Clin. Invest 80, 1104-1113.

Ochoa, L., Waypa, G., Mahoney, Jr., J. R., Rodriguez, L. and Minnear, F. L (1997). Contrasting effects of hypochlorous acid and hydrogen peroxide on endothelial permeability. Prevention with cAMP drugs. Am. J. Respir. Crit. Care Med 156, 1247-1255.[Abstract/Free Full Text]

Rotrosen, D. and Gallin, J. I (1986). Histamine type I receptor occupancy increases endothelial cytosolic calcium, reduces F-actin, and promotes albumin diffusion across cultured endothelial monolayers. J. Cell Biol 103, 2379-2387.[Abstract/Free Full Text]

Saitou, M., Fujimoto, K., Doi, Y., Itoh, M., Fujimoto, T., Furuse, M., Takano, H., Noda, T. and Tsukita, S (1998). Occludin-deficient embryonic stem cells can differentiate into polarized epithelial cells bearing tight junctions. J. Cell Biol 141, 397-408.[Abstract/Free Full Text]

Simionescu, M., Simionescu, N. and Palade, G. E (1976). Segmental differentiations of cell junctions in the vascular endothelium. Arteries and veins. J. Cell Biol 68, 705-723.[Abstract/Free Full Text]

Smith, C. W., Rothlein, R., Hughes, B. J., Mariscalco, M. M., Rudloff, H. E., Schmalstieg, F. C. and Anderson, D. C (1988). Recognition of an endothelial determinant for CD 18-dependent human neutrophil adherence and transendothelial migration. J. Clin. Invest 82, 1746-1756.

Smith, C. W., Marlin, S. D., Rothlein, R., Toman, C. and Anderson, D. C (1989). Cooperative interactions of LFA-1 and Mac-1 with intercellular adhesion molecule-1 in facilitating adherence and transendothelial migration of human neutrophils in vitro. J. Clin. Invest 83, 2008-2017.

Staehelin, L. A (1974). Structure and function of intercellular junctions. Int. Rev. Cytol 39, 191-283.[Medline]

Tio, S., Deenen, M. and Marani, E (1990). Astrocyte-mediated induction of alkaline phosphatase activity in human umbilical cord vein endothelium: an in vitro model. Eur. J. Morphol 28, 289-300.[Medline]

Walker, D. C., MacKenzie, A. and Hosford, S (1994). The structure of the tricellular region of endothelial tight junctions of pulmonary capillaries analyzed by freeze-fracture. Microvasc. Res 48, 259-281.[Medline]

Wallis, W. J., Hickstein, D. D., Schwartz, B. R., June, C. H., Ochs, H. D., Beatty, P. G., Klebanoff, S. J. and Harlan, J. M (1986). Monoclonal antibody-defined functional epitopes on the adhesion-promoting glycoprotein complex (CDw18) of human neutrophils. Blood 67, 1007-1013.[Abstract/Free Full Text]

Wolburg, H., Neuhaus, J., Kniesel, U., Krauss, B., Schmid, E. M., Ocalan, M., Farrell, C. and Risau, W (1994). Modulation of tight junction structure in blood-brain barrier endothelial cells. Effects of tissue culture, second messengers and cocultured astrocytes. J. Cell Sci 107, 1347-1357.[Abstract]




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