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31. HIF-1α triggers ER stress and CHOP-mediated apoptosis in alveolar epithelial cells, a key event in pulmonary fibrosis

32. KCNK3 channel is important for the ventilatory response to hypoxia in rats.

33. Chronic pulmonary fibrosis alters the functioning of the respiratory neural network.

34. HIF and ER stress are involved in TGFβ1-mediated wound closure of alveolar epithelial cells.

35. A New Model of Acute Exacerbation of Experimental Pulmonary Fibrosis in Mice.

36. In Transgenic Erythropoietin Deficient Mice, an Increase in Respiratory Response to Hypercapnia Parallels Abnormal Distribution of CO 2 /H + -Activated Cells in the Medulla Oblongata.

37. Sleep Apnea in Idiopathic Pulmonary Fibrosis: A Molecular Investigation in an Experimental Model of Fibrosis and Intermittent Hypoxia.

38. Cytoprotective effects of erythropoietin: What about the lung?

39. ER Stress is Involved in Epithelial-To-Mesenchymal Transition of Alveolar Epithelial Cells Exposed to a Hypoxic Microenvironment.

40. HIF-1α triggers ER stress and CHOP-mediated apoptosis in alveolar epithelial cells, a key event in pulmonary fibrosis.

41. Intermittent Hypoxia Increases the Severity of Bleomycin-Induced Lung Injury in Mice.

42. Mesenchymal stem cells reduce hypoxia-induced apoptosis in alveolar epithelial cells by modulating HIF and ROS hypoxic signaling.

43. Mesenchymal stem cells protect from hypoxia-induced alveolar epithelial-mesenchymal transition.

44. Cycloheximide and lipopolysaccharide downregulate αENaC mRNA via different mechanisms in alveolar epithelial cells.

45. PatA and PatB form a functional heterodimeric ABC multidrug efflux transporter responsible for the resistance of Streptococcus pneumoniae to fluoroquinolones.

46. Modulation of epithelial sodium channel activity by lipopolysaccharide in alveolar type II cells: involvement of purinergic signaling.

47. [Na+ Transport in the lungs: differential impact of ENaC in the airways and alveoli].

48. Proinflammatory effect of sodium 4-phenylbutyrate in deltaF508-cystic fibrosis transmembrane conductance regulator lung epithelial cells: involvement of extracellular signal-regulated protein kinase 1/2 and c-Jun-NH2-terminal kinase signaling.

49. Cystic fibrosis transmembrane conductance regulator controls lung proteasomal degradation and nuclear factor-kappaB activity in conditions of oxidative stress.

50. Oxidative stress induces extracellular signal-regulated kinase 1/2 mitogen-activated protein kinase in cystic fibrosis lung epithelial cells: Potential mechanism for excessive IL-8 expression.

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