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Your search keyword '"Interleukin-8 physiology"' showing total 63 results

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63 results on '"Interleukin-8 physiology"'

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1. The monomer-dimer equilibrium and glycosaminoglycan interactions of chemokine CXCL8 regulate tissue-specific neutrophil recruitment.

2. The dual role of CXCL8 in human CNS stem cell function: multipotent neural stem cell death and oligodendrocyte progenitor cell chemotaxis.

3. Evidence that polymorphonuclear neutrophils infiltrate into the developing corpus luteum and promote angiogenesis with interleukin-8 in the cow.

4. IL8 and CXCL13 are potent chemokines for the recruitment of human neural precursor cells across brain endothelial cells.

5. Extracellular ATP and P2 receptors are required for IL-8 to induce neutrophil migration.

6. Synergy between coproduced CC and CXC chemokines in monocyte chemotaxis through receptor-mediated events.

7. Herpesvirus chemokine-binding glycoprotein G (gG) efficiently inhibits neutrophil chemotaxis in vitro and in vivo.

8. Interleukin 8 and cell migration to inflammatory sites: the regulation of focal adhesion kinase under conditions of migratory desensitization.

9. Granulocyte chemotactic activity in exhaled breath condensate of healthy subjects and patients with COPD.

10. Role of interleukin-8 and growth-regulated oncogene-alpha in the chemotactic migration of all-trans retinoic acid-treated promyelocytic leukemic cells toward alveolar epithelial cells.

11. Understanding another acute respiratory distress syndrome.

12. Beta-glucan affects leukocyte navigation in a complex chemotactic gradient.

13. Human neutrophil chemotaxis is modulated by capsule and O antigen from an extraintestinal pathogenic Escherichia coli strain.

14. Plasminogen activator inhibitor-1 supports IL-8-mediated neutrophil transendothelial migration by inhibition of the constitutive shedding of endothelial IL-8/heparan sulfate/syndecan-1 complexes.

15. Neutrophil chemotactic activity of sputum from patients with COPD: role of interleukin 8 and leukotriene B4.

16. COPD: is chemotaxis the key?

17. IL-8-induced migratory responses through CXCR1 and CXCR2: association with phosphorylation and cellular redistribution of focal adhesion kinase.

18. Evidence for the involvement of a macrophage-derived chemotactic mediator in the neutrophil recruitment induced by staphylococcal enterotoxin B in mice.

19. Decreased neutrophil function as a cause of retained placenta in dairy cattle.

20. Blockade of alpha 5 beta 1 integrins reverses the inhibitory effect of tenascin on chemotaxis of human monocytes and polymorphonuclear leukocytes through three-dimensional gels of extracellular matrix proteins.

21. Novel G protein-coupled responses in leukocytes elicited by a chemotactic bacteriophage displaying a cell type-selective binding peptide.

22. Neutrophil recruitment, chemokine receptors, and resistance to mucosal infection.

23. Sequential migration of neutrophils across monolayers of endothelial and epithelial cells.

24. Differential ability of exogenous chemotactic agents to disrupt transendothelial migration of flowing neutrophils.

25. Inhibition of interleukin-8-activated human neutrophil chemotaxis by thapsigargin in a calcium- and cyclic AMP-dependent way.

26. Meconium-stained amniotic fluid exhibits chemotactic activity for polymorphonuclear leukocytes in vitro.

27. MCP-1 and IL-8 trigger firm adhesion of monocytes to vascular endothelium under flow conditions.

28. The role of interleukin-5, interleukin-8 and RANTES in the chemotactic attraction of eosinophils to the allergic lung.

29. Amino-terminal processing of chemokine ENA-78 regulates biological activity.

30. Alveolar type II-like cells release G-CSF as neutrophil chemotactic activity.

31. Inhibition of leukocyte emigration induced during the systemic inflammatory reaction in vivo is not due to IL-8.

32. Identification of a potent, selective non-peptide CXCR2 antagonist that inhibits interleukin-8-induced neutrophil migration.

33. The chemotactic activity of sputum from patients with bronchiectasis.

34. The differential ability of IL-8 and neutrophil-activating peptide-2 to induce attenuation of chemotaxis is mediated by their divergent capabilities to phosphorylate CXCR2 (IL-8 receptor B).

35. Interleukin-1 beta primes interleukin-8-stimulated chemotaxis and elastase release in human neutrophils via its type I receptor.

37. Molecular factors associated with compartmentalization of gingival immune responses and transepithelial neutrophil migration.

38. Participation of interleukin-5 and interleukin-8 in the eosinophil migration induced by a large volume of saline.

39. Isolation technique alters eosinophil migration response to IL-8.

40. IL-8/NAP-1 is the major T-cell chemoattractant in synovial tissues of rheumatoid arthritis.

41. IL-8 induces T cell chemotaxis, suppresses IL-4, and up-regulates IL-8 production by CD4+ T cells.

42. Human intestinal intraepithelial lymphocytes have potent chemotactic activity.

43. Signals and receptors involved in recruitment of inflammatory cells.

44. Cytokine-stimulated chemotaxis of human neutrophils in a 3-D conjoined fibrin gel assay.

45. Chemokines and their role in human disease.

46. A novel leukocyte chemotactic and activating cytokine, interleukin-8 (IL-8).

47. Both interleukin-8 receptors independently mediate chemotaxis. Jurkat cells transfected with IL-8R1 or IL-8R2 migrate in response to IL-8, GRO alpha and NAP-2.

48. Neuroblastoma cell-mediated leukocyte chemotaxis: lineage-specific differentiation of interleukin-8 expression.

49. [Interleukin-8 and inflammation].

50. Interleukin-8: an important neutrophil chemotaxin in some cases of exudative pleural effusions.

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