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1. Advancing stem cell technologies for conservation of wildlife biodiversity.

5. Stem cell-derived porcine macrophages as a new platform for studying host-pathogen interactions

8. MeCP2 binds to methylated DNA independently of phase separation and heterochromatin organisation

12. Stem cell-derived macrophages as a new platform for studying host-pathogen interactions in livestock

13. The whey acidic protein

14. Stem cell-derived macrophages as a new platform for studying host-pathogen interactions in livestock

23. Self-renewal of pluripotent embryonic stem cells is mediated via activation of STAT3

24. Correction: Pleiotropic Impacts of Macrophage and Microglial Deficiency on Development in Rats with Targeted Mutation of the Csf1r Locus

25. The whey acidic protein

26. Pleiotropic Impacts of Macrophage and Microglial Deficiency on Development in Rats with Targeted Mutation of the Csf1r Locus

27. LIF-dependent survival of embryonic stem cells is regulated by a novel palmitoylated Gab1 signalling protein

28. Reduced levels of dopamine and altered metabolism in brains of HPRT knock-out rats: a new rodent model of Lesch-Nyhan Disease

29. Tuning Differentiation Signals for Efficient Propagation and In Vitro Validation of Rat Embryonic Stem Cell Cultures

30. Paracrine induction of stem cell renewal by LIF-deficient cells: a new ES cell regulatory pathway

32. Bone Marrow Stem Cell Derived Paracrine Factors for Regenerative Medicine: Current Perspectives and Therapeutic Potential

35. Reprogramming Pig Fetal Fibroblasts Reveals a Functional LIF Signaling Pathway

37. An interspecies analysis reveals a key role for unmethylated CpG dinucleotides in vertebrate Polycomb complex recruitment

38. Parkinson's disease induced pluripotent stem cells with triplication of the α-synuclein locus

48. BoneMarrow Stem Cell Derived Paracrine Factors for RegenerativeMedicine: Current Perspectives and Therapeutic Potential.

50. Analysis of Oct4-Dependent Transcriptional Networks Regulating Self-Renewal and Pluripotency in Human Embryonic Stem Cells.

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