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1. Grainyhead-like 2 is required for morphological integrity of mouse embryonic stem cells and orderly formation of inner ear-like organoids

2. Double cytoplast embryonic cloning improves in vitro but not in vivo development from mitotic pluripotent cells in cattle

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3. KDM4B-mediated reduction of H3K9me3 and H3K36me3 levels improves somatic cell reprogramming into pluripotency

4. Multiple-Cylindrical Electrode System for Rotational Electric Field Generation in Particle Rotation Applications

5. A virus-free poly-promoter vector induces pluripotency in quiescent bovine cells under chemically defined conditions of dual kinase inhibition.

7. Controlled Cytoplast Arrest and Morula Aggregation Enhance Development, Cryoresilience, andIn VivoSurvival of Cloned Sheep Embryos

8. Testes of DAZL null neonatal sheep lack prospermatogonia but maintain normal somatic cell morphology and marker expression

9. Embryo-mediated genome editing for accelerated genetic improvement of livestock

10. Targeted histone demethylation improves somatic cell reprogramming into cloned blastocysts but not postimplantation bovine concepti†

12. Controlled Cytoplast Arrest and Morula Aggregation Enhance Development, Cryoresilience, and

14. Episomal minicircles persist in periods of transcriptional inactivity and can be transmitted through somatic cell nuclear transfer into bovine embryos

15. Testes of DAZL null sheep lack spermatogonia and maintain normal somatic cells

16. Targeted demethylation of H3K9me3 and H3K36me3 improves somatic cell reprogramming into cloned preimplantation but not postimplantation bovine concepti

17. Bovine blastocyst development depends on threonine catabolism

18. Inner Cell Mass Development

19. KDM4B-mediated reduction of H3K9me3 and H3K36me3 levels improves somatic cell reprogramming into pluripotency

20. AC electric field induced dipole-based on-chip 3D cell rotation

21. Dual Kinase Inhibition Promotes Pluripotency in Finite Bovine Embryonic Cell Lines

22. Transient JMJD2B-Mediated Reduction of H3K9me3 Levels Improves Reprogramming of Embryonic Stem Cells into Cloned Embryos

23. Exposure to DNA is insufficient for in vitro transgenesis of live bovine sperm and embryos

25. Cattle Cloned from Increasingly Differentiated Muscle Cells1

26. Red Deer Cloned from Antler Stem Cells and Their Differentiated Progeny1

27. Aggregating Embryonic but Not Somatic Nuclear Transfer Embryos Increases Cloning Efficiency in Cattle1

28. Donor cell differentiation, reprogramming, and cloning efficiency: Elusive or illusive correlation?

29. Signal Inhibition Reveals JAK/STAT3 Pathway as Critical for Bovine Inner Cell Mass Development1

30. Signal Inhibition Reveals JAK/STAT3 Pathway as Critical for Bovine Inner Cell Mass Development

31. Modifications to Improve the Efficiency of Zona-Free Mouse Nuclear Transfer

32. Couplet alignment and improved electrofusion by dielectrophoresis for a zona-free high-throughput cloned embryo production system

33. Cloning livestock: a return to embryonic cells

34. Practical Aspects of Donor Cell Selection for Nuclear Cloning

35. Increased MAP Kinase Inhibition Enhances Epiblast-Specific Gene Expression in Bovine Blastocysts1

36. Increased MAP kinase inhibition enhances epiblast-specific gene expression in bovine blastocysts

37. Expression of the antiproliferative gene TIS21 at the onset of neurogenesis identifies single neuroepithelial cells that switch from proliferative to neuron-generating division

38. Neuroepithelial cells downregulate their plasma membrane polarity prior to neural tube closure and neurogenesis

39. Inhibition of MAP2K and GSK3 Signaling Promotes Bovine Blastocyst Development and Epiblast-Associated Expression of Pluripotency Factors1

40. Inhibition of MAP2K and GSK3 signaling promotes bovine blastocyst development and epiblast-associated expression of pluripotency factors

41. Quiescence Loosens Epigenetic Constraints in Bovine Somatic Cells and Improves Their Reprogramming into Totipotency

42. A virus-free poly-promoter vector induces pluripotency in quiescent bovine cells under chemically defined conditions of dual kinase inhibition

44. A novel micropit device integrates automated cell positioning by dielectrophoresis and nuclear transfer by electrofusion

45. A micropit for biological cell positioning

46. Coplanar film electrodes facilitate bovine nuclear transfer cloning

47. Climbing Mount Efficiency--small steps, not giant leaps towards higher cloning success in farm animals

48. 53 TARGETED SCREEN FOR AMINO ACIDS THAT REGULATE BOVINE INNER CELL MASS DEVELOPMENT

49. Cloning Cattle

50. Red deer cloned from antler stem cells and their differentiated progeny