Figure S2. The simplified two-dimensional Oct4-Nanog model on the phase plate and the distribution of Oct4. (A)The nullclines and the vector field of the simplified two-dimensional Oct4-Nanog model on the phase plate. A typical trajectory is illustrated to indicate the excitable mechanism of the model. (d[Oct4]/dt = 0: Red line; d[Nanog]/dt = 0: Blue line.) (B) Distributions of Sox2 level within simulated cell population (N = 10,000). (PDF 102 kb
Figure S1. Schematic of nanopattern fabrication used in this study. Figure S2. Polarization graph of...
Positive and negative staining controls. For each indicated antigen detected by immunohistochemistry...
Preconditioning of the mouse immune system by IP injected MSC. Live or dead MSC were injected IP int...
Table S2. Parameters used in Eq. (2) for the simplified Oct4-Nanog model. (DOCX 42Â kb
Figure S3. Parameter sensitivity analysis for the model. Illustration of the relative changes of the...
Figure S6. Three different strategies of reprogramming demonstrate additional Nanog activation is ne...
Figure S5. The MAP of the reprogramming process in the WT model. The MAP (white curve) starting from...
Generation and characterization of induced pluripotent stem cell (iPSC) clones derived from wildtype...
In vitro differentiation analysis and karyotyping of LiPSC. (A) Representative karyotype of the esta...
Figure S3. Quantification of the dendritic length of TuJ1-positive neurons. * p < 0.05, ** p < 0.01,...
(A) Different clones of wildtype (wt) and Hmga2 knockout (KO) induced pluripotent stem cells (iPSCs)...
BackgroundHeterogeneous gene expressions of cells are widely observed in self-renewing pluripotent s...
Additional file 3: Figure S2. Protein expression of OCT4, TRA1-60, NANOG, and CD133 in day 7 iOVCAR-...
Figure S1. Schematic diagram of the TranswellÂŽ system. DRGs were seeded in the lower chambers of th...
Showing effect of initial cell seeding density of hMSCs on their adipogenic differentiation when cul...
Figure S1. Schematic of nanopattern fabrication used in this study. Figure S2. Polarization graph of...
Positive and negative staining controls. For each indicated antigen detected by immunohistochemistry...
Preconditioning of the mouse immune system by IP injected MSC. Live or dead MSC were injected IP int...
Table S2. Parameters used in Eq. (2) for the simplified Oct4-Nanog model. (DOCX 42Â kb
Figure S3. Parameter sensitivity analysis for the model. Illustration of the relative changes of the...
Figure S6. Three different strategies of reprogramming demonstrate additional Nanog activation is ne...
Figure S5. The MAP of the reprogramming process in the WT model. The MAP (white curve) starting from...
Generation and characterization of induced pluripotent stem cell (iPSC) clones derived from wildtype...
In vitro differentiation analysis and karyotyping of LiPSC. (A) Representative karyotype of the esta...
Figure S3. Quantification of the dendritic length of TuJ1-positive neurons. * p < 0.05, ** p < 0.01,...
(A) Different clones of wildtype (wt) and Hmga2 knockout (KO) induced pluripotent stem cells (iPSCs)...
BackgroundHeterogeneous gene expressions of cells are widely observed in self-renewing pluripotent s...
Additional file 3: Figure S2. Protein expression of OCT4, TRA1-60, NANOG, and CD133 in day 7 iOVCAR-...
Figure S1. Schematic diagram of the TranswellÂŽ system. DRGs were seeded in the lower chambers of th...
Showing effect of initial cell seeding density of hMSCs on their adipogenic differentiation when cul...
Figure S1. Schematic of nanopattern fabrication used in this study. Figure S2. Polarization graph of...
Positive and negative staining controls. For each indicated antigen detected by immunohistochemistry...
Preconditioning of the mouse immune system by IP injected MSC. Live or dead MSC were injected IP int...