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  1. Regulation of corneal epithelial differentiation: miR-141-3p promotes the arrest of cell proliferation and enhances the expression of terminal phenotype
  2. Participation of the TBP‐associated factors (TAFs) in cell differentiation
  3. Transcriptional profiles along cell programming into corneal epithelial differentiation
  4. Acanthamoeba mauritaniensis genotype T4D: An environmental isolate displays pathogenic behavior
  5. The use of a compound contained in green tea for treatment of ocular burns
  6. Vimentin is a possible marker of corneal epithelial stem/progenitor cells
  7. TRPV4 Regulates Tight Junctions and Affects Differentiation in a Cell Culture Model of the Corneal Epithelium
  8. Mitos y realidades del uso de las células troncales en la terapia oftalmológica
  9. Vimentin and epithelial cell motility
  10. vimentin-keratin interaction
  11. Lipogenic Enzymes Complexes and Cytoplasmic Lipid Droplet Formation During Adipogenesis
  12. Which are the features of the corneal stem cell niche?
  13. Vimentin is necessary for colony growth of human diploid keratinocytes
  14. Development of a bone nonunion in a noncritical segmental tibia defect model in sheep utilizing interlocking nail as an internal fixation system
  15. The corneal epithelial barrier assembly depends on cell differentiation
  16. (−)-Epigallocatechin-3-gallate blocks 3T3-L1 adipose conversion by inhibition of cell proliferation and suppression of adipose phenotype expression
  17. Decorin gene expression and its regulation in human keratinocytes
  18. Challenges to the study of asymmetric cell division in corneal and limbal epithelia
  19. Asymmetrical cell division and differentiation are not dependent upon stratification in a corneal epithelial cell line
  20. Aromatic hydrocarbons upregulate glyceraldehyde-3-phosphate dehydrogenase and induce changes in actin cytoskeleton. Role of the aryl hydrocarbon receptor (AhR)
  21. Pax6 drives corneal epithelial differentiation
  22. Epidermal keratinocytes do not activate peripheral T-cells: interleukin-10 as a possible regulator
  23. Fibromodulin gene is expressed in human epidermal keratinocytes in culture and in human epidermis in vivo
  24. Staurosporine rapidly commits 3T3-F442A cells to the formation of adipocytes by activation of GSK-3β and mobilization of calcium
  25. Corneal epithelial cell cultures as a tool for research, drug screening and testing
  26. RCE1 Corneal Epithelial Cell Line: Its Variability on Phenotype Expression and Differential Response to Growth Factors
  27. Interleukin-6 promotes human epidermal keratinocyte proliferation and keratin cytoskeleton reorganization in culture
  28. An Inexpensive Method for Applying Nitrogen Evaporation to Hexane-containing 24- or 96-well Plates
  29. A simple and sensitive assay for GH activity based on 3T3-F442A cell differentiation
  30. Commitment of 3T3-F442A cells to adipocyte differentiation takes place during the first 24–36 h after adipogenic stimulation: TNF-α inhibits commitment
  31. Frozen cultured sheets of epidermal keratinocytes in reepithelialization and repair of the cornea after photorefractive keratectomy
  32. Differentiation-dependent Increases in Lactate Dehydrogenase Activity and Isoenzyme Expression in Rabbit Corneal Epithelial Cells
  33. Growth factors and extracellular matrix proteins during wound healing promoted with frozen cultured sheets of human epidermal keratinocytes
  34. Frozen cultured sheets of human epidermal keratinocytes enhance healing of full-thickness wounds in mice
  35. Cultivation, Serial Transfer, and Differentiation of Epidermal Keratinocytes in Serum-Free Medium
  36. Regulation of K3 keratin gene transcription by Sp1 and AP-2 in differentiating rabbit corneal epithelial cells.
  37. Combined Use of Allograft and Autograft Epidermal Cultures in Therapy of Burns
  38. 22-kDa and 20-kDa hGH Isoforms Show Differential-Effects When Assayed in 3T3-F442A and 3T3-F442A/C4 Adipocytes
  39. A preadipose 3T3 cell variant highly sensitive to adipogenic factors and to human growth hormone
  40. Inhibition of 3T3 Adipogenesis by Retinoic Acid Is Not Mediated by Cytoplasmic Retinoic Acid-Binding Protein
  41. HGH isoforms: cDNA expression, adipogenic activity and production in cell culture
  42. Quantitation of adipose conversion and triglycerides by staining intracytoplasmic lipids with oil red O
  43. Commitment of adipocyte differentiation in 3T3 cells is inhibited by retinoic acid, and the expression of lipogenic enzymes is modulated through cytoskeleton stabilization