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2. Early-life pulmonary viral infection leads to long-term functional and lower airway structural changes in the lungs.

3. Hox genes and patterning the vertebrate body.

5. Characterization of a novel Hoxa5eGFP mouse line.

6. Hox11-expressing interstitial cells contribute to adult skeletal muscle at homeostasis.

7. Hox genes in development and beyond.

8. EWS::FLI1 and HOXD13 Control Tumor Cell Plasticity in Ewing Sarcoma.

9. The Lung Elastin Matrix Undergoes Rapid Degradation Upon Adult Loss of Hox5 Function.

10. Squamous cell carcinoma subverts adjacent histologically normal epithelium to promote lateral invasion.

11. Novel Lineage-Tracing System to Identify Site-Specific Ectopic Bone Precursor Cells.

12. Ovarian Cells Have Increased Proliferation in Response to Heparin-Binding Epidermal Growth Factor as Collagen Density Increases.

13. Hox genes maintain critical roles in the adult skeleton.

14. Differential Contribution of Pancreatic Fibroblast Subsets to the Pancreatic Cancer Stroma.

15. Two CRISPR/Cas9-mediated methods for targeting complex insertions, deletions, or replacements in mouse.

16. Bone morphology is regulated modularly by global and regional genetic programs.

17. Hox11 expressing regional skeletal stem cells are progenitors for osteoblasts, chondrocytes and adipocytes throughout life.

18. Anatomic Origin of Osteochondrogenic Progenitors Impacts Sensitivity to EWS-FLI1-Induced Transformation.

19. Development, repair, and regeneration of the limb musculoskeletal system.

20. Hox5 genes direct elastin network formation during alveologenesis by regulating myofibroblast adhesion.

21. Loss of Hox5 function results in myofibroblast mislocalization and distal lung matrix defects during postnatal development.

22. Hox11 Function Is Required for Region-Specific Fracture Repair.

23. Hox5 Paralogous Genes Modulate Th2 Cell Function during Chronic Allergic Inflammation via Regulation of Gata3 .

24. Hox genes in the adult skeleton: Novel functions beyond embryonic development.

25. Regionally Restricted Hox Function in Adult Bone Marrow Multipotent Mesenchymal Stem/Stromal Cells.

26. Evolution of Hoxa11 regulation in vertebrates is linked to the pentadactyl state.

27. In vivo structural and cellular remodeling of engineered bone-ligament-bone constructs used for anterior cruciate ligament reconstruction in sheep.

28. Fresh and Frozen Tissue-Engineered Three-Dimensional Bone-Ligament-Bone Constructs for Sheep Anterior Cruciate Ligament Repair Following a 2-Year Implantation.

29. Hox6 genes modulate in vitro differentiation of mESCs to insulin-producing cells.

30. Hox genes and evolution.

31. Mesenchymal Hox6 function is required for mouse pancreatic endocrine cell differentiation.

32. Hox11 genes regulate postnatal longitudinal bone growth and growth plate proliferation.

33. Hox5 Genes Regulate the Wnt2/2b-Bmp4-Signaling Axis during Lung Development.

34. Fresh versus frozen engineered bone-ligament-bone grafts for sheep anterior cruciate ligament repair.

35. Allogeneic versus autologous derived cell sources for use in engineered bone-ligament-bone grafts in sheep anterior cruciate ligament repair.

36. Hox genes and limb musculoskeletal development.

37. Wnt signaling inhibits adrenal steroidogenesis by cell-autonomous and non-cell-autonomous mechanisms.

39. Hox5 interacts with Plzf to restrict Shh expression in the developing forelimb.

40. Sox9 plays multiple roles in the lung epithelium during branching morphogenesis.

41. Hox11 genes are required for regional patterning and integration of muscle, tendon and bone.

42. Partial functional redundancy between Hoxa5 and Hoxb5 paralog genes during lung morphogenesis.

43. Changing topographic Hox expression in blood vessels results in regionally distinct vessel wall remodeling.

44. The role of Pax2 in mouse prostate development.

45. Hox genes and kidney development.

46. Axial Hox9 activity establishes the posterior field in the developing forelimb.

47. Hox10 genes function in kidney development in the differentiation and integration of the cortical stroma.

48. Hox11 genes establish synovial joint organization and phylogenetic characteristics in developing mouse zeugopod skeletal elements.

49. Hox genes and regional patterning of the vertebrate body plan.

50. Hox11 paralogous genes are required for formation of wrist and ankle joints and articular surface organization.

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