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2. De novo hematopoiesis from the fetal lung

4. Ebola virus infection induces a delayed type I IFN response in bystander cells and the shutdown of key liver genes in human iPSC-derived hepatocytes

5. Multi-modal profiling of human fetal liver hematopoietic stem cells reveals the molecular signature of engraftment

7. Mapping cellular response to destabilized transthyretin reveals cell- and amyloidogenic protein-specific signatures.

8. De Novo Generation of Pulmonary Ionocytes from Normal and Cystic Fibrosis Human Induced Pluripotent Stem Cells

9. Growth Hormone Accelerates Recovery From Acetaminophen-Induced Murine Liver Injury

10. Human iPSC-hepatocyte modeling of alpha-1 antitrypsin heterozygosity reveals metabolic dysregulation and cellular heterogeneity

11. De Novo Hematopoiesis from the Fetal LUNG

12. Mapping Cellular Response to Destabilized Transthyretin Reveals Cell- and Amyloidogenic Protein-Specific Signatures

13. Directed differentiation of mouse pluripotent stem cells into functional lung-specific mesenchyme

14. Durable alveolar engraftment of PSC-derived lung epithelial cells into immunocompetent mice

15. CRISPR interference interrogation of COPD GWAS genes reveals the functional significance of desmoplakin in iPSC-derived alveolar epithelial cells

16. Human iPSC-hepatocyte modeling of alpha-1 antitrypsin heterozygosity reveals metabolic dysregulation and cellular heterogeneity [Dataset]

17. CRISPR interference interrogation of COPD GWAS genes reveals the functional significance of desmoplakin in iPSC-derived alveolar epithelial cells [Dataset]

18. Human iPSC-hepatocyte modeling of alpha-1 antitrypsin heterozygosity reveals metabolic dysregulation and cellular heterogeneity

19. Air-liquid interface culture promotes maturation and allows environmental exposure of pluripotent stem cell–derived alveolar epithelium

20. CRISPR interference interrogation of COPD GWAS genes reveals the functional significance of desmoplakin in iPSC-derived alveolar epithelial cells

22. Air-liquid interface culture promotes maturation and allows environmental exposure of pluripotent stem cell–derived alveolar epithelium

23. Human airway lineages derived from pluripotent stem cells reveal the epithelial responses to SARS-CoV-2 infection

24. DE-NOVO HEMATOPOIESIS FROM THE FETAL LUNG

25. Modeling of Alpha-1 Antitrypsin Deficiency with Syngeneic Human iPSC-Hepatocytes Reveals Metabolic Dysregulation and Cellular Heterogeneity in PiMZ and PiZZ Hepatocytes

26. 3213 – MULTI-MODAL PROFILING OF HUMAN FETAL LIVER HEMATOPOIETIC STEM CELLS REVEALS THE MOLECULAR SIGNATURE OF ENGRAFTMENT

27. 3134 – MULTI-MODAL PROFILING OF HUMAN FETAL LIVER HEMATOPOIETIC STEM CELLS REVEALS THE MOLECULAR SIGNATURE OF ENGRAFTMENT

28. Human airway lineages derived from pluripotent stem cells reveal the epithelial responses to SARS-CoV-2 infection

30. Ebola virus infection induces a type I interferon response and the shutdown of key liver functions in human iPSC-derived hepatocytes

31. SARS-CoV-2 Infection of Pluripotent Stem Cell-Derived Human Lung Alveolar Type 2 Cells Elicits a Rapid Epithelial-Intrinsic Inflammatory Response

32. Human airway lineages derived from pluripotent stem cells reveal the epithelial responses to SARS-CoV-2 infection.

33. Multi-Modal Profiling of Human Fetal Liver-Derived Hematopoietic Stem Cells Reveals the Molecular Signature of Engraftment Potential

34. Transcriptional, Protein-Level and Functional Profiling of Human Fetal Liver (FL)-Derived Hematopoietic Stem Cells (HSCs) at Single Cell Resolution

35. 3139 – TRANSCRIPTIONAL, PROTEIN-LEVEL AND FUNCTIONAL PROFILING OF HUMAN FETAL LIVER-DERIVED HEMATOPOIETIC STEM CELLS AT SINGLE CELL RESOLUTION

36. Human iPSC-derived alveolar and airway epithelial cells can be cultured at air-liquid interface and express SARS-CoV-2 host factors

38. Human iPSC-hepatocyte modeling of alpha-1 antitrypsin heterozygosity reveals metabolic dysregulation and cellular heterogeneity

39. Growth Hormone Accelerates Recovery From Acetaminophen-Induced Murine Liver Injury.

40. Human airway lineages derived from pluripotent stem cells reveal the epithelial responses to SARS-CoV-2 infection.

41. SARS-CoV-2 Infection of Pluripotent Stem Cell-derived Human Lung Alveolar Type 2 Cells Elicits a Rapid Epithelial-Intrinsic Inflammatory Response.

42. Human iPSC-derived alveolar and airway epithelial cells can be cultured at air-liquid interface and express SARS-CoV-2 host factors.

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