spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Coan, D. E.
Right arrow Articles by Sauvage, L. R.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Coan, D. E.
Right arrow Articles by Sauvage, L. R.
Ando, J., Momura, H. and Kamiya, A (1987). The effect of fluid shear stress on the migration and proliferation of cultured endothelial cells. Microvasc. Res 33, 62-70.[Medline]

Bergmann, J. E., Kupfer, A. and Singer, S. J (1983). Membrane insertion at the leading edge of motile fibroblasts. Proc. Nat. Acad. Sci. USA 80, 1367-1371.[Abstract/Free Full Text]

Brinkley, B. R (1985). Microtublule organizing centers. Annu. Rev. Cell Biol 1, 145-172.

Chiplonkar, J. M., Vandre, D. D. and Robinson, J. M (1992). Stimulus-dependent relocalization of the microtubule organizing center in human polymorphonuclear leukocytes. J. Cell Sci 102, 723-728.[Abstract/Free Full Text]

Dewey, C. F. Jr, Bussolari, S. R., Gimbrone, M. A. Jr and Davies, P. F (1981). The dynamic response of vascular endothelial cells to fluid shear stress. J. Biomech. Eng 103, 177-185.[Medline]

Eskin, S. G., Strickland, F. M. and Heath, J. P (1989). Effects of shear stress on the migration and cell-substratum adhesion of cultured endothelial cells. J. Cell Biol 109, 72-.

Euteneuer, U. and Schliwa, M (1984). Persistent, directional motility of cells and cytoplasmic fragments in the absence of microtubules. Nature 105, 58-61.

Farquhar, M. G. and Palade, G. E (1981). The golgi apparatus (complex)-(1954-1981)-from artifact to center stage. J. Cell Biol 91, 77-.[Abstract/Free Full Text]

Geiger, B., Avnur, Z., Rinnerthaler, G., Hinssen, H. and Small, V. J (1984). Microfilament-organizing centers in areas of cell contact: Cytoskeletal interactions during cell attachment and locomotion. J. Cell Biol 99, 83-.[Abstract/Free Full Text]

Gotlieb, A. I., McBurnie-May, L., Subrahmanyan, L. and Kalnins, V. I.D. E. Coan and others1153Shear stress effects on GA/MTOC localization (1981). Distribution of microtubule organizing centers in migrating sheets of endothelial cells. J. Cell Biol 91, 589-594.[Abstract/Free Full Text]

Gotlieb, A. I., Subrahmanyan, L. and Kalnins, V. I (1983). Microtubule-organizing centers and cell migration: Effect of inhibition of migration and microtubule disruption in endothelial cells. J. Cell Biol 96, 1266-1272.[Abstract/Free Full Text]

Hansson, G. K. and Schwartz, S. M (1983). Evidence for cell death in the vascular endothelium in vivo and in vitro. Amer. J. Pathol 112, 278-286.[Abstract]

Ho, W. C., Allan, V. J., van Meer, G., Berger, E. G. and Kreis, T. E (1989). Reclustering of scattered golgi elements occurs along microtubules. Eur. J. Cell Biol 48, 250-263.[Medline]

Kamiya, A., Ando, J., Shibata, M. and Masuda, H (1988). Roles of fluid shear stress in physiology regulation of vascular structure and function. Biorheology 25, 271-278.[Medline]

Kronebusch, P. J. and Singer, S. J (1987). The microtubule-organizing complex and golgi apparatus are co-localized around the entire nuclear envelope of interphase cardiac myocytes. J. Cell Sci 88, 25-34.[Abstract/Free Full Text]

Kupfer, A., Dennert, G. and Singer, S. J (1983). Polarization of the golgi apparatus and the microtubule-organizing center within cloned natural killer cells bound to their targets. Proc. Nat. Acad. Sci. USA 80, 7224-7228.[Abstract/Free Full Text]

Kupfer, A., Kronebusch, P. J., Rose, J. K. and Singer, S. J (1987). A critical role for the polarization of membrane recycling in cell motility. Cell Motil. Cytoskel 8, 182-189.[Medline]

Kupfer, A., Louvard, D. and Singer, S. J (1982). Polarization of the golgi apparatus and the microtubule-organizing center in cultured fibroblasts at the edge of an experimental wound. Proc. Nat. Acad. Sci. USA 79, 2603-2607.[Abstract/Free Full Text]

Levesque, M. J. and Nerem, R. M (1985). The elongation and orientation of cultured endothelial cells in response to shear stress. J. Biomech. Eng 107, 341-347.[Medline]

Malech, H. L., Root, R. K. and Gallin, J. I (1977). Structural analysis of human neutrophil migration. J. Cell Biol 75, 666-693.[Abstract/Free Full Text]

Masuda, M. and Fujiwara, K (1988). Movement of cultured endothelial cells under fluid shear stress. J. Cell Biol 107, 219-.

Nemere, I., Kupfer, A. and Singer, S. J (1985). Reorientation of the golgi apparatus and the microtubule-organizing center inside macrophages subjected to a chemotactic gradient. Cell Motil 5, 17-29.[Medline]

Nerem, R. M. and Cornhill, J. F (1980). The role of fluid mechanics in atherogenesis. J. Biomech. Eng 102, 181-189.

Nerem, R. M. and Girard, P. R (1990). Hemodynamic influences on vascular endothelial biology. Toxicol. Pathol 18, 572-582.[Medline]

Reidy, M. A. and Schwartz, S. M (1981). Endothelial regeneration. III. Time course of intimal changes after small defined injury to rat aortic endothelium. Lab. Invest 44, 301-308.[Medline]

Reidy, M. A. and Silver, M (1985). Endothelial regeneration. VII. Lack of intimal proliferation after defined injury to rat aorta. Amer. J. Pathol 118, 173-177.[Abstract]

Roach, M. R. and Smith, N. B (1983). Does high shear stress induced by blood flow lead to atherosclerosis?. Perspect. Biol. Med 26, 287-303.[Medline]

Rogalski, A. A. and Singer, S. J (1984). Associations of elements of the golgi apparatus with microtubules. J. Cell Biol 99, 1092-1100.[Abstract/Free Full Text]

Rogers, K. A., Boden, P., Kalnins, V. I. and Gotlieb, A. I (1986). The distribution of centrosomes in endothelial cells of non-wounded and wounded aortic organ cultures. Cell Tiss. Res 243, 223-227.[Medline]

Rogers, K. A., McKee, N. H. and Kalnins, V. I (1985). Preferential orientation of centrioles towards the heart in endothelial cells of major blood vessels is reestablished after reversal of a segment. Proc. Nat. Acad. Sci. USA 82, 3272-3276.[Abstract/Free Full Text]

Ross, R. and Glomset, J. A (1976). The pathogenesis of atherosclerosis. N.Engl. J. Med 295, 369-377.[Medline]

Ross, R. and Glomset, J. A (1976). The pathogenesis of atherosclerosis. N. Eng. J. Med 295, 420-425.[Medline]

Ryan, U. S., Absher, M., Olazabal, B. M., Brown, L. M. and Ryan, J. W (1982). Proliferation of pulmonary endothelial cells: Time-lapse cinematography of growth to confluence and restitution of monolayer after wounding. Tissue & Cell 14, 637-649.[Medline]

Schutze, K., Maniotis, A. and Schliwa, M (1991). The position of the microtubule-organizing center in directionally migrating fibroblasts depends on the nature of the substratum. Proc. Nat. Acad. Sci. USA 88, 8367-8371.[Abstract/Free Full Text]

Schwartz, S. M., Haudenschild, C. C. and Eddy, E. M (1978). Endothelial regeneration. I. Quantitative analysis of initial stages of endothelial regeneration in rat aortic intima. Lab. Invest 38, 568-580.[Medline]

Schwartz, S. M., Stemerman, M. B. and Benditt, E. P (1975). The aortic intima. II. Repair of the aortic lining after mechanical denudation. Amer. J. Pathol 81, 15-42.[Abstract]

Selden S. C., III, Rabinovitch, P. S. and Schwartz, S. M (1981). Effects of cytoskeletal disrupting agents on replication of bovine endothelium. J. Cell. Physiol 108, 195-211.[Medline]

Tartakoff, A. M. and Vassalli, P (1983). Lectin-binding sites as markers of golgi subcompartments: Proximal-to-distal maturation of oligosaccharides. J. Cell Biol 97, 1243-1248.[Abstract/Free Full Text]

Tassin, A.-M., Maro, B. and Bornens, M (1985). Fate of microtubule-organizing centers during myogenesis in vitro. J. Cell Biol 100, 35-46.[Abstract/Free Full Text]

Viggers, R. F., Wechezak, A. R. and Sauvage, L. R (1986). An apparatus to study the response of cultured endothelium to shear stress. J. Biomech. Eng 108, 332-337.[Medline]

Wechezak, A. R., Viggers, R. F. and Sauvage, L. R (1985). Fibronectin and F-actin redistribution in cultured endothelial cells exposed to shear stress. Lab. Invest 53, 639-647.[Medline]

Wong, M. K. K. and Gotlieb, A. I (1988). The reorganization of microfilaments, centrosomes, and microtubules during in vitro small wound reendothelialization. J. Cell Biol 107, 1777-1783.[Abstract/Free Full Text]




This article has been cited by other articles:


Home page
J. Cell Sci.Home page
F. Pouthas, P. Girard, V. Lecaudey, T. B. N. Ly, D. Gilmour, C. Boulin, R. Pepperkok, and E. G. Reynaud
In migrating cells, the Golgi complex and the position of the centrosome depend on geometrical constraints of the substratum
J. Cell Sci., July 15, 2008; 121(14): 2406 - 2414.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Heart Circ. Physiol.Home page
P. Uttayarat, M. Chen, M. Li, F. D. Allen, R. J. Composto, and P. I. Lelkes
Microtopography and flow modulate the direction of endothelial cell migration
Am J Physiol Heart Circ Physiol, February 1, 2008; 294(2): H1027 - H1035.
[Abstract] [Full Text] [PDF]


Home page
Molecular Cancer TherapeuticsHome page
K. A. Hotchkiss, A. W. Ashton, R. Mahmood, R. G. Russell, J. A. Sparano, and E. L. Schwartz
Inhibition of Endothelial Cell Function in Vitro and Angiogenesis in Vivo by Docetaxel (Taxotere): Association with Impaired Repositioning of the Microtubule Organizing Center
Mol. Cancer Ther., November 1, 2002; 1(13): 1191 - 1200.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Heart Circ. Physiol.Home page
Y.-L. Hu, S. Li, J. Y.-J. Shyy, and S. Chien
Sustained JNK activation induces endothelial apoptosis: studies with colchicine and shear stress
Am J Physiol Heart Circ Physiol, October 1, 1999; 277(4): H1593 - H1599.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. P. Irigoyen, D. Besser, and Y. Nagamine
Cytoskeleton Reorganization Induces the Urokinase-type Plasminogen Activator Gene via the Ras/Extracellular Signal-regulated Kinase (ERK) Signaling Pathway
J. Biol. Chem., January 17, 1997; 272(3): 1904 - 1909.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
A. Malek and S Izumo
Mechanism of endothelial cell shape change and cytoskeletal remodeling in response to fluid shear stress
J. Cell Sci., January 4, 1996; 109(4): 713 - 726.
[Abstract] [PDF]


Home page
Arterioscler. Thromb. Vasc. Bio.Home page
D. S. Ettenson and A. I. Gotlieb
Basic Fibroblast Growth Factor Is a Signal for the Initiation of Centrosome Redistribution to the Front of Migrating Endothelial Cells at the Edge of an In Vitro Wound
Arterioscler. Thromb. Vasc. Biol., April 1, 1995; 15(4): 515 - 521.
[Abstract] [Full Text]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Coan, D. E.
Right arrow Articles by Sauvage, L. R.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Coan, D. E.
Right arrow Articles by Sauvage, L. R.