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51. NIH SenNet Consortium: Mapping Senescent Cells in the Human Body to Understand Health and Disease

53. Cholesterol metabolism promotes B‐cell positioning during immune pathogenesis of chronic obstructive pulmonary disease

56. Mitochondrial uncoupling protein‐2 reprograms metabolism to induce oxidative stress and myofibroblast senescence in age‐associated lung fibrosis

57. Autocrine Sfrp1 inhibits lung fibroblast invasion during transition to injury induced myofibroblasts

58. NIH SenNet Consortium: Mapping Senescent Cells in the Human Body to Understand Health and Disease

61. NIH SenNet Consortium to map senescent cells throughout the human lifespan to understand physiological health

62. Chronic lung diseases are associated with gene expression programs favoring SARS-CoV-2 entry and severity

63. The arginine methyltransferase PRMT7 promotes extravasation of monocytes resulting in tissue injury in COPD

70. Mast cells mediate malignant pleural effusion formation

71. Analysis of mammalian gene function through broad-based phenotypic screens across a consortium of mouse clinics

75. Monocyte migration and COPD pathogenesis are epigenetically regulated by PRMT7

77. Phenotypic drug screening in a human fibrosis model identified a novel class of antifibrotic therapeutics

78. Patterns of Carbon-Bound Exogenous Compounds in Patients with Lung Cancer and Association with Disease Pathophysiology

79. Exercise Reduces Lung Fibrosis Involving Serotonin/Akt Signaling

80. Impairment of Immunoproteasome Function by Cigarette Smoke and in Chronic Obstructive Pulmonary Disease

84. Epigenetic regulation via PRMT7 controls monocyte migration and COPD pathogenesis

90. National Heart, Lung, and Blood Institute and Building Respiratory Epithelium and Tissue for Health (BREATH) Consortium Workshop Report: Moving Forward in Lung Regeneration

91. Update in Interstitial Lung Disease 2020

92. National Heart, Lung, and Blood Institute and Building Respiratory Epithelium and Tissue for Health (BREATH) Consortium Workshop Report: Moving Forward in Lung Regeneration

93. Phenotypic drug screening in a human fibrosis model identified a novel class of antifibrotic therapeutics

94. Innovations in phenotyping of mouse models in the German Mouse Clinic

97. CXCR2 mediates NADPH oxidase-independent neutrophil extracellular trap formation in cystic fibrosis airway inflammation

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