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1. FOXF1 promotes tumor vessel normalization and prevents lung cancer progression through FZD4

2. In vivo generation of bone marrow from embryonic stem cells in interspecies chimeras

3. Loss of FOXM1 in macrophages promotes pulmonary fibrosis by activating p38 MAPK signaling pathway.

4. IODVA1, a guanidinobenzimidazole derivative, targets Rac activity and Ras-driven cancer models.

5. FOXM1 activates AGR2 and causes progression of lung adenomas into invasive mucinous adenocarcinomas.

6. SPDEF inhibits prostate carcinogenesis by disrupting a positive feedback loop in regulation of the Foxm1 oncogene.

7. Comparative analyses of lung transcriptomes in patients with alveolar capillary dysplasia with misalignment of pulmonary veins and in foxf1 heterozygous knockout mice.

8. Postnatal ablation of Foxm1 from cardiomyocytes causes late onset cardiac hypertrophy and fibrosis without exacerbating pressure overload-induced cardiac remodeling.

9. Expression of Foxm1 transcription factor in cardiomyocytes is required for myocardial development.

10. Deletion of Forkhead Box M1 transcription factor from respiratory epithelial cells inhibits pulmonary tumorigenesis.

11. Novel FOXF1-Stabilizing Compound TanFe Stimulates Lung Angiogenesis in Alveolar Capillary Dysplasia

12. In vivo cyclic induction of the FOXM1 transcription factor delays natural and progeroid aging phenotypes and extends healthspan

13. Lung endothelial cells regulate pulmonary fibrosis through FOXF1/R-Ras signaling

16. Data from The FOXM1 Inhibitor RCM-1 Decreases Carcinogenesis and Nuclear β-Catenin

19. Data from Targeting EYA3 in Ewing Sarcoma Retards Tumor Growth and Angiogenesis

27. Supplementary Figure 1 from Increased Levels of the FoxM1 Transcription Factor Accelerate Development and Progression of Prostate Carcinomas in both TRAMP and LADY Transgenic Mice

30. Data from Increased Levels of the FoxM1 Transcription Factor Accelerate Development and Progression of Prostate Carcinomas in both TRAMP and LADY Transgenic Mice

31. Therapeutic Potential of Endothelial Progenitor Cells in Pulmonary Diseases

32. Generation of Pulmonary Endothelial Progenitor Cells for Cell-based Therapy Using Interspecies Mouse–Rat Chimeras

34. FOXF1 is required for the oncogenic properties of PAX3-FOXO1 in rhabdomyosarcoma

35. In Vivo Generation of Lung and Thyroid Tissues from Embryonic Stem Cells Using Blastocyst Complementation

36. FOXM1 nuclear transcription factor translocates into mitochondria and inhibits oxidative phosphorylation

37. Endothelial progenitor cells stimulate neonatal lung angiogenesis through FOXF1-mediated activation of BMP9/ACVRL1 signaling

39. A Census of the Lung: CellCards from LungMAP

40. In vivo generation of bone marrow from embryonic stem cells in interspecies chimeras

41. The S52F FOXF1 Mutation Inhibits STAT3 Signaling and Causes Alveolar Capillary Dysplasia

42. Nanoparticle Delivery of STAT3 Alleviates Pulmonary Hypertension in a Mouse Model of Alveolar Capillary Dysplasia

43. Blastocyst complementation reveals that <scp>NKX2</scp> ‐1 establishes the <scp>proximal‐peripheral</scp> boundary of the airway epithelium

44. Targeting EYA3 in Ewing Sarcoma Retards Tumor Growth and Angiogenesis

45. Genome Editing for Rare Diseases

46. Nanoparticle Delivery of Proangiogenic Transcription Factors into the Neonatal Circulation Inhibits Alveolar Simplification Caused by Hyperoxia

47. Loss of FOXM1 in macrophages promotes pulmonary fibrosis by activating p38 MAPK signaling pathway

48. FOXF1 Inhibits Pulmonary Fibrosis by Preventing CDH2-CDH11 Cadherin Switch in Myofibroblasts

49. IODVA1, a guanidinobenzimidazole derivative, targets Rac activity and Ras-driven cancer models

50. Molecular, cellular, and bioengineering approaches to stimulate lung regeneration after injury

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