55 results on '"Plow, Edward F"'
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2. Parkin ubiquitination of Kindlin-2 enables mitochondria-associated metastasis suppression
3. A mechanism of platelet integrin αIIbβ3 outside-in signaling through a novel integrin αIIb subunit–filamin–actin linkage
4. Kindlin-3 deficiency leads to impaired erythropoiesis and erythrocyte cytoskeleton
5. Plasminogen‐induced foam cell formation by macrophages occurs through a histone 2B (H2B)‐PAR1 pathway and requires integrity of clathrin‐coated pits
6. The search for new antithrombotic mechanisms and therapies that may spare hemostasis
7. Kindlin-2 regulates hemostasis by controlling endothelial cell–surface expression of ADP/AMP catabolic enzymes via a clathrin-dependent mechanism
8. The integrin coactivator Kindlin-2 plays a critical role in angiogenesis in mice and zebrafish
9. Kindlins in FERM adhesion
10. Plasminogen and Its Receptors as Regulators of Cardiovascular Inflammatory Responses
11. Expression, activation, and function of integrin αMβ2 (Mac-1) on neutrophil-derived microparticles
12. 12 - Integrin αIIbβ3
13. Phase II trial of GM-CSF + thalidomide in patients with androgen-independent metastatic prostate cancer
14. P-selectin binding to P-selectin glycoprotein ligand-1 induces an intermediate state of αMβ2 activation and acts cooperatively with extracellular stimuli to support maximal adhesion of human neutrophils
15. The Functions of Plasminogen in Cardiovascular Disease
16. Convergence of the adhesive and fibrinolytic systems: recognition of urokinase by integrin αMβ2 as well as by the urokinase receptor regulates cell adhesion and migration
17. Regulation of plasminogen binding to neutrophils
18. Implicating ILK in inflammation
19. MAPkinaseQuest: novel roadway to αIIbβ3 activation
20. Contributors
21. Chapter 127 - Molecular Basis for Platelet Function
22. Chapter 12 - Integrin αIIbβ3
23. In Memoriam: Thomas S. Edgington, M.D.
24. Kindlin-2 Maintains Vascular Barrier Integrity By Stabilizing Endothelial Adherens Junctions
25. A new view of integrin αIIbβ3 bound to membrane
26. Contributors
27. List of Contributors
28. The role of RIAM in platelets put to a test
29. Distinct Role for Fyn-Kinase in αIIbß3-Mediated Signaling.
30. Detailed Mapping of the Binding Site within Platelet Glycoprotein Ibα for Leukocyte Integrin Mac-1 (αMβ2).
31. P-Selectin Activates Leukocyte Integrin alphaMbeta2 by Recruiting Phosphatidylinositol-3 Kinase to P-Selectin Glycoprotein Ligand-1 Cytoplasmic Domain through Adaptor Protein Naf1.
32. 1100-59 High-dose clopidogrel loading rapidly reduces both platelet inflammatory marker expression and aggregation
33. Identification and characterization of two cation binding sites in the integrin β3 subunit.
34. Enolase-1 as a plasminogen receptor
35. It's not size, it's substance
36. Location, location, location
37. The fibrinolytic system in man
38. 3 Receptors for plasminogen and t-PA: an update
39. Platelet Glycoprotein IIb-IIIa (αIIbβ3 Integrin) Confers Fibrinogen- and Activation-Dependent Aggregation on Heterologous Cells
40. Fibronectin Binding to Thrombin-Stimulated Platelets: Evidence for Fibrin(ogen) Independent and Dependent Pathways
41. Binding of Tissue Plasminogen Activator to Human Monocytes and Monocytoid Cells
42. Analysis of Platelet Aggregation Disorders Based on Flow Cytometric Analysis of Membrane Glycoprotein IIb-IIIa With Conformation-Specific Monoclonal Antibodies
43. The Interaction of Fibrinogen With Human Platelets in a Plasma Milieu
44. Evidence That Calpains and Elastase Do Not Produce the von Willebrand Factor Fragments Present in Normal Plasma and IIA von Willebrand Disease
45. Plasminogen Receptors, Urokinase Receptors, and Their Modulation on Human Endothelial Cells
46. Effects of OKM5, a Monoclonal Antibody to Glycoprotein IV, on Platelet Aggregation and Thrombospondin Surface Expression
47. Suppression of tyrosine transaminase activity by rat liver ribosomes
48. The Plasma Carboxypeptidases and the Regulation of the Plasminogen System
49. Fibrinogen, fibrinogen receptors, and the peptides that inhibit these interactions
50. CHAPTER 115 - THE MOLECULAR BASIS OF PLATELET FUNCTION
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