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Your search keyword '"Asbestos, Crocidolite pharmacology"' showing total 39 results

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1. Free radical scavenging and formation by multi-walled carbon nanotubes in cell free conditions and in human bronchial epithelial cells.

2. Extracellular signal-regulated kinase 5: a potential therapeutic target for malignant mesotheliomas.

3. Crocidolite asbestos-induced signal pathway dysregulation in mesothelial cells.

4. Asbestos induces doxorubicin resistance in MM98 mesothelioma cells via HIF-1alpha.

5. Cancer incidence among women and girls environmentally and occupationally exposed to blue asbestos at Wittenoom, Western Australia.

6. Apoptosis induced by crocidolite asbestos in human lung epithelial cells involves inactivation of Akt and MAPK pathways.

7. Analysis of asbestos-induced gene expression changes in bronchiolar epithelial cells using laser capture microdissection and quantitative reverse transcriptase-polymerase chain reaction.

8. Yeast cells long-term interaction with asbestos fibers.

9. Asbestos induces tissue factor in Beas-2B cells via PI3 kinase-PKC-mediated signaling.

10. Activation of p38 MAP kinase by asbestos in rat mesothelial cells is mediated by oxidative stress.

11. [CD59 mutation and DNA oxidative damage in A(L) cells induced by crocidolite fibers].

12. Asbestos inhalation induces tyrosine nitration associated with extracellular signal-regulated kinase 1/2 activation in the rat lung.

13. Crocidolite asbestos inhibits pentose phosphate oxidative pathway and glucose 6-phosphate dehydrogenase activity in human lung epithelial cells.

14. Iron inhibits the nitric oxide synthesis elicited by asbestos in murine macrophages.

15. Asbestos exposure induces MCP-1 secretion by pleural mesothelial cells.

16. Mesothelial cell apoptosis is confirmed in vivo by morphological change in cytokeratin distribution.

17. Asbestos upregulates expression of the urokinase-type plasminogen activator receptor on mesothelial cells.

18. Asbestos-induced phosphorylation of epidermal growth factor receptor is linked to c-fos and apoptosis.

19. Asbestos exposure upregulates the adhesion of pleural leukocytes to pleural mesothelial cells via VCAM-1.

20. Asbestos induces activator protein-1 transactivation in transgenic mice.

21. Regulation of nitric oxide synthase induction by iron and glutathione in asbestos-treated human lung epithelial cells.

22. Asbestos increases mammalian AP-endonuclease gene expression, protein levels, and enzyme activity in mesothelial cells.

23. Analysis of cell cycle disruptions in cultures of rat pleural mesothelial cells exposed to asbestos fibers.

24. Role of extracellular signal-regulated protein kinases in apoptosis by asbestos and H2O2.

25. Molecular regulation of IL-6 activation by asbestos in lung epithelial cells: role of reactive oxygen species.

26. Novel cell imaging techniques show induction of apoptosis and proliferation in mesothelial cells by asbestos.

27. [Reactive oxygen species produced by the addition of sepiolite and vermiculite (expanded or not) to suspensions of human polymorphonuclear phagocytes and bovine alveolar macrophages].

28. Asbestos causes stimulation of the extracellular signal-regulated kinase 1 mitogen-activated protein kinase cascade after phosphorylation of the epidermal growth factor receptor.

29. Pulmonary and pleural leukocytes from F344 rats produce elevated levels of fibronectin following inhalation of refractory ceramic fibers.

31. Apoptosis is observed in mesothelial cells after exposure to crocidolite asbestos.

32. Elevated interleukin-8 in the alveolitis of individuals with asbestos exposure.

33. Induction of c-fos and c-jun proto-oncogene expression by asbestos is ameliorated by N-acetyl-L-cysteine in mesothelial cells.

34. Refractory ceramic fibers activate alveolar macrophage eicosanoid and cytokine release.

35. Asbestos fibers and interferon-gamma up-regulate nitric oxide production in rat alveolar macrophages.

36. Iron mobilization from crocidolite asbestos by human lung carcinoma cells.

37. Asbestos-induced nitric oxide production: synergistic effect with interferon-gamma.

38. DNA strand breaks following in vitro exposure to asbestos increase with surface-complexed [Fe3+].

39. The production of TNF-alpha and IL-1-like activity by bronchoalveolar leucocytes after intratracheal instillation of crocidolite asbestos.

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