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1. Resistance to mesenchymal reprogramming sustains clonal propagation in metastatic breast cancer

2. Alveolar regeneration through a Krt8+ transitional stem cell state that persists in human lung fibrosis.

4. WNT Signalling in Lung Physiology and Pathology

5. Stimuli-Specific Senescence of Primary Human Lung Fibroblasts Modulates Alveolar Stem Cell Function.

6. Lipid A in outer membrane vesicles shields bacteria from polymyxins.

7. Ex vivo tissue perturbations coupled to single-cell RNA-seq reveal multilineage cell circuit dynamics in human lung fibrogenesis

8. Inhibition of LTβR signalling activates WNT-induced regeneration in lung

10. Spatiotemporal analysis of inflammaging and senescence programs in lung fibrosis using time-resolved single-cell transcriptomics and multiplexed immunofluorescence

12. Cytokine signaling converging on IL11 in ILD fibroblasts provokes aberrant epithelial differentiation signatures

13. DNA sensing via the cGAS/STING pathway activates the immunoproteasome and adaptive T‐cell immunity

14. ERS International Congress 2022: highlights from the Basic and Translational Science Assembly

15. Publisher Correction: Inhibition of LTβR signalling activates WNT-induced regeneration in lung

16. Fibroblasts-derived extracellular vesicles contain SFRP1 and mediate pulmonary fibrosis

17. Cytokine signaling converging onIL11in ILD fibroblasts provokes aberrant epithelial differentiation signatures

18. Stem cells, cell therapies, and bioengineering in lung biology and disease 2021

23. Single-cell RNA sequencing identifies G-protein coupled receptor 87 as a basal cell marker expressed in distal honeycomb cysts in idiopathic pulmonary fibrosis

24. Supplemental Data

25. Resolving aging-related cellular phenotypes in pulmonary fibrosis by longitudinal single-cell transcriptomics

27. G-protein coupled receptor 87 is a novel basal cell marker in distal IPF bronchioles

30. Single cell RNA Sequencing Identifies G-protein Coupled Receptor 87 as a Novel Basal Cell Marker of Distal Honeycomb Cysts in Idiopathic Pulmonary Fibrosis

31. A drug screen with approved compounds identifies amlexanox as a novel Wnt/β‐catenin activator inducing lung epithelial organoid formation

33. Publisher Correction: Inhibition of LTβR signalling activates WNT-induced regeneration in lung

35. Stem Cells, Cell Therapies, and Bioengineering in Lung Biology and Disease 2019

38. Maintenance of epithelial traits and resistance to mesenchymal reprogramming promote proliferation in metastatic breast cancer

39. ERS International Congress, Madrid, 2019: highlights from the Basic and Translational Science Assembly

41. Reduced Frizzled Receptor 4 Expression Prevents WNT/β-catenin-driven Alveolar Lung Repair in COPD

42. Additional file 3: of Differential effects of Nintedanib and Pirfenidone on lung alveolar epithelial cell function in ex vivo murine and human lung tissue cultures of pulmonary fibrosis

43. Additional file 1: of Differential effects of Nintedanib and Pirfenidone on lung alveolar epithelial cell function in ex vivo murine and human lung tissue cultures of pulmonary fibrosis

44. Additional file 2: of Differential effects of Nintedanib and Pirfenidone on lung alveolar epithelial cell function in ex vivo murine and human lung tissue cultures of pulmonary fibrosis

45. Additional file 4: of Differential effects of Nintedanib and Pirfenidone on lung alveolar epithelial cell function in ex vivo murine and human lung tissue cultures of pulmonary fibrosis

47. Longitudinal single cell transcriptomics reveals Krt8+ alveolar epithelial progenitors in lung regeneration

49. Increased Extracellular Vesicles Mediate WNT5A Signaling in Idiopathic Pulmonary Fibrosis

50. Cell-surface phenotyping identifies CD36 and CD97 as novel markers of fibroblast quiescence in lung fibrosis

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