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1. LincRNA-EPS Promotes Proliferation of Aged Dermal Fibroblast by Inducing CCND1

2. miR-146a Decreases Inflammation and ROS Production in Aged Dermal Fibroblasts

3. LncRNA MALAT1 Regulates Hyperglycemia Induced EMT in Keratinocyte via miR-205

4. Nanosilk Increases the Strength of Diabetic Skin and Delivers CNP-miR146a to Improve Wound Healing

5. Discovery of Small Molecule Activators of Chemokine Receptor CXCR4 That Improve Diabetic Wound Healing

6. LncRNA MALAT1 Modulates TGF-β1-Induced EMT in Keratinocyte

7. Mesenchymal stromal cells contract collagen more efficiently than dermal fibroblasts: Implications for cytotherapy.

8. Contributors

10. Role of microRNA-21 and Its Underlying Mechanisms in Inflammatory Responses in Diabetic Wounds

11. Long non-coding RNA Lethe regulates hyperglycemia-induced reactive oxygen species production in macrophages.

12. Upregulation of long noncoding RNA growth arrest-specific 5 mediates pro-inflammatory mechanisms of diabetic wound healing impairment

13. Cerium oxide nanoparticle delivery of microRNA-146a for local treatment of acute lung injury

14. Deviations in MicroRNA-21 Expression Patterns Identify a Therapeutic Target for Diabetic Wound Healing

15. Cerium oxide nanoparticles conjugated to anti-inflammatory microRNA-146a prevent bleomycin-induced acute lung injury

16. Role of microRNA-21 and Its Underlying Mechanisms in Inflammatory Responses in Diabetic Wounds

17. Long non-coding RNA GAS5 regulates macrophage polarization and diabetic wound healing

18. Contributors

19. Role of mesenchymal stem cells in diabetic wound healing

20. Cardiac Progenitor Cell Recruitment Drives Fetal Cardiac Regeneration by Enhanced Angiogenesis

22. LncRNA MALAT1 Modulates TGF-β1-Induced EMT in Keratinocyte

23. Mesenchymal stem cells correct impaired diabetic wound healing by decreasing ECM proteolysis

24. 1154-P: Genetic and Pharmacological Suppression of Cathepsin K Promotes Wound Healing in Diabetic Mice

25. Mesenchymal stromal cells contract collagen more efficiently than dermal fibroblasts: Implications for cytotherapy

26. Mechanisms of mesenchymal stem cell correction of the impaired biomechanical properties of diabetic skin: The role of miR-29a

27. Use of oral contraceptives and risk of ulcerative colitis - A systematic review and meta-analysis

28. Use of Cerium Oxide Nanoparticles Conjugated with MicroRNA-146a to Correct the Diabetic Wound Healing Impairment

29. Differential Expression of Transforming Growth Factor-β1 Is Associated With Fetal Regeneration After Myocardial Infarction

30. SCF increases in utero-labeled stem cells migration and improves wound healing

31. The role of microRNA-15b in the impaired angiogenesis in diabetic wounds

32. Dysregulation of collagen production in diabetes following recurrent skin injury: Contribution to the development of a chronic wound

33. Modulation of the inflammatory response by increasing fetal wound size or interleukin-10 overexpression determines wound phenotype and scar formation

34. Targeting Inflammatory Cytokines and Extracellular Matrix Composition to Promote Wound Regeneration

36. Nanosilk Reduces Pressure Ulcer Formation

40. Mammalian Cardiac Regeneration After Fetal Myocardial Infarction Requires Cardiac Progenitor Cell Recruitment

41. Lentiviral-mediated over-expression of hyaluronan synthase-1 (HAS-1) decreases the cellular inflammatory response and results in regenerative wound repair

43. The Role of MicroRNA-146a in the Pathogenesis of the Diabetic Wound-Healing Impairment

45. An in vivo map of bone morphogenetic protein 2 post-transcriptional repression in the heart

46. Impaired Biomechanical Properties of Diabetic Skin

49. NF1 Regulates a Ras-Dependent Vascular Smooth Muscle Proliferative Injury Response

50. Modulation of Bone Morphogenetic Protein (BMP) 2 gene expression by Sp1 transcription factors

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