38 results on '"Cao, Shangtao"'
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2. Single-cell RNA sequencing reveals the developmental program underlying proximal–distal patterning of the human lung at the embryonic stage
3. KMT2D deficiency leads to cellular developmental disorders and enhancer dysregulation in neural-crest-containing brain organoids
4. MYOCD is Required for Cardiomyocyte-like Cells Induction from Human Urine Cells and Fibroblasts Through Remodeling Chromatin
5. Species-specific rewiring of definitive endoderm developmental gene activation via endogenous retroviruses through TET1-mediated demethylation
6. Generation of mitochondria-rich kidney organoids from expandable intermediate mesoderm progenitors reprogrammed from human urine cells under defined medium
7. BMP4 drives primed to naïve transition through PGC-like state
8. H3K27ac mediated SS18/BAFs relocation regulates JUN induced pluripotent-somatic transition
9. Generation of musculoskeletal cells from human urine epithelium-derived presomitic mesoderm cells.
10. SS18 regulates pluripotent-somatic transition through phase separation
11. Forkhead box family transcription factors as versatile regulators for cellular reprogramming to pluripotency
12. Single-cell analysis reveals bronchoalveolar epithelial dysfunction in COVID-19 patients
13. BMP4 resets mouse epiblast stem cells to naive pluripotency through ZBTB7A/B-mediated chromatin remodelling
14. Sin3a and CDX2 Target TBX15 to Dissociate HES7 Oscillation From Anterior-Posterior Elongation in vitro
15. Regeneration of the human segmentation clock in somitoids in vitro
16. Appropriate Exogenous Expression Stoichiometry of GATA4 as an Important Factor for Cardiac Reprogramming of Human Dermal Fibroblasts
17. Additional file 7 of H3K27ac mediated SS18/BAFs relocation regulates JUN induced pluripotent-somatic transition
18. Additional file 1 of H3K27ac mediated SS18/BAFs relocation regulates JUN induced pluripotent-somatic transition
19. Additional file 1 of Generation of mitochondria-rich kidney organoids from expandable intermediate mesoderm progenitors reprogrammed from human urine cells under defined medium
20. Additional file 3 of H3K27ac mediated SS18/BAFs relocation regulates JUN induced pluripotent-somatic transition
21. Additional file 2 of Generation of mitochondria-rich kidney organoids from expandable intermediate mesoderm progenitors reprogrammed from human urine cells under defined medium
22. Additional file 5 of H3K27ac mediated SS18/BAFs relocation regulates JUN induced pluripotent-somatic transition
23. Additional file 6 of H3K27ac mediated SS18/BAFs relocation regulates JUN induced pluripotent-somatic transition
24. Additional file 4 of H3K27ac mediated SS18/BAFs relocation regulates JUN induced pluripotent-somatic transition
25. Additional file 2 of H3K27ac mediated SS18/BAFs relocation regulates JUN induced pluripotent-somatic transition
26. Species-Specific Rewiring of Definitive Endoderm Developmental Gene Activation via Endogenous Retroviruses Through TET1 Mediated Demethylation
27. Single Cell Sequencing Reveals Early PGC-like Intermediates During Mouse Primed to Naïve Transition
28. Induction of Pluripotent Stem Cells from Mouse Embryonic Fibroblasts by Jdp2-Jhdm1b-Mkk6-Glis1-Nanog-Essrb-Sall4
29. Resolving Cell Fate Decisions during Somatic Cell Reprogramming by Single-Cell RNA-Seq
30. Induction of Pluripotency by Alternative Factors
31. Chromatin Accessibility Dynamics during Chemical Induction of Pluripotency
32. Kdm2b Regulates Somatic Reprogramming through Variant PRC1 Complex-Dependent Function
33. Chemical reprogramming of mouse embryonic and adult fibroblast into endoderm lineage
34. Tissue engineering with peripheral blood-derived mesenchymal stem cells promotes the regeneration of injured peripheral nerves
35. Osteogenesis of peripheral blood mesenchymal stem cells in self assembling peptide nanofiber for healing critical size calvarial bony defect
36. Erratum: Corrigendum: The oncogene c-Jun impedes somatic cell reprogramming
37. The oncogene c-Jun impedes somatic cell reprogramming
38. Corrigendum: The oncogene c-Jun impedes somatic cell reprogramming.
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