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Keyword [neuronal differentiation]
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1. Isolation And Culture Of Embryonic Stem Cells And Neuronal Differentiation Of Cultured Human Embryonic Germ Cells
2. Investigation Of The Differentiation Of Murine Embryonic Stem Cells Into Neural Or Muscle Fate.
3. Neurons The Differentiation Related Protein Dok5 Of And Map1b Function Research
4. Ra Induced Neuronal Differentiation Of P19 Cells Histone To Go The Demethylase Jmjd3 On Mash1 Gene Expression Regulation
5. Mouse Mesenchymal Stem Cells Isolation,Culture And Differentiation Into Neuron-like Cells
6. Study On Roles Of ERK Pathway, P53/P21 And CDK5/P35 During NGF-induced Differentiation Of PC12 Cells
7. Mouse Bone Marrow Mesenchymal Stem Cellsdifferentiation Into Neuron-Like Cells In Vitro
8. A Study On The Roles Of Nuclear-localized SrGAPs In Neuronal Differentiation
9. Ezh2 In Ra Induced Neuronal Differentiation In P19 Cells
10. Molecular And Cellular Mechanismunderlyingdendritic Development And Neuronal Differentiation Of The Srgap Family Members
11. As A Histone Demethylase PHF8Involved In Neural Differentiation And The Function Of UHRF1and UHRF2in The Regulation Of De Novo DNA Methylation
12. Effects Of ADAM10Deletion On Notch-1Signaling Pathway And Neuronal Differentiation In Adult Mouse Brain
13. RING Finger Protein10Regulates Cell Cycle Exit And Neuronal Differentiation Of Stem Cells
14. Identification Of Novel Targets Of DNA Methyltransferase3b, Their Regulation Of Expression And Function In Neuronal Differentiation
15. The Role Of E2F1/Topo?? Signaling Pathway In Neuronal Differentiation Of SH-SY5Y Cells
16. Functional Study Of Demethylase KDM3A During Neural Development In Xenopus Laevis
17. Calcium-responsive Transactivator CREST Promotes Neuronal Differentiation Through P300 To Regulate Acetylation Of P53
18. Analysis Of Chimeric RNA In Infant Brain Tissues And Function Of DUS4L-BCAP29
19. Identification Of A Novel Non-catalytic Role Of TET Proteins Negtively Regulating Neuronal Differentiation
20. Calcium-responsive Transactivator (CREST) Promotes Neurite Growth By Increasing Microtubule Stability And Dynamic Assembly
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