Characterization of cardiac differentiation of HES3 cells by quantitative real-time PCR (qRT-PCR). Expression of transcripts representing pluripotency (OCT4), cardiac mesoderm (MESP1), cardiac progenitors (NKX2.5, MEF2C), and cardiomyocytes (CTNT) at days 0, 12, and 20 during 20 days of cardiac differentiation. Note OCT-4 expression in undifferentiated cells is downregulated as the cells initiate differentiation. Early cardiac markers detected on day 12 and mature markers upregulated on day 20. Similar changes in transcripts expression observed when KIND1 cells were differentiated into cardiac cells as described earlier [43]. Error bars represent ÂąSEM. (PDF 410 kb
is Figure S1 showing cellular characteristics and HPC/HSC reprogramming. A Identification of HPC/HSC...
Figure S1. Differentiation capacities of bone-derived Nestin+ and Nestin− cells in vitro. (A) Histoc...
Figure S2. Effect of I/R injury on hiPSCs-hCMs without maturation step. Viability of hiPSC-CMs after...
Brightfield images of HES3 hES cells during directed differentiation into cardiac lineage. Different...
Characterization of cardiac differentiation of HES3 cells by immunofluorescence studies. Expression ...
Dystrophin gene expression during cardiac differentiation of KIND1 hES cells on days 0, 12, and 20 ...
ChIP sequencing in KIND1 and HES3 cells during cardiac differentiation visualized by Integrated Gen...
Figure S1. Showing characterization of human iPSCs and differentiated cardiomyocytes. (A) qRT-PCR de...
ChIP sequencing of occupancy of H3K79me2 on DMD gene during cardiac differentiation of KIND1 and HES...
Figure S1. Phenotypic characterization of hCPCs. hCPCs were characterized using specific cell marker...
Figure S2. Constitutive transactivator activity of Tcf7l1 augmented mesoderm markers. (A) Western bl...
Differentiation of hiPSCs to endothelial cells through an MESP1+ mesoderm progenitor stage. (a) FACS...
Figure S3. Phenotypic characterization of hiPSC-CMs. hiPSC-CMs were characterized using specific cel...
Figure S1. (A) Expression of Tcf7, Lef1, and Tcf7l2 in Tcf7l1−/− ESCs. (B) Comparison of conditional...
Figure S3. Isolation and characteristics of cardiac Sca-1+ cells. (A) Flow cytometry was used to iso...
is Figure S1 showing cellular characteristics and HPC/HSC reprogramming. A Identification of HPC/HSC...
Figure S1. Differentiation capacities of bone-derived Nestin+ and Nestin− cells in vitro. (A) Histoc...
Figure S2. Effect of I/R injury on hiPSCs-hCMs without maturation step. Viability of hiPSC-CMs after...
Brightfield images of HES3 hES cells during directed differentiation into cardiac lineage. Different...
Characterization of cardiac differentiation of HES3 cells by immunofluorescence studies. Expression ...
Dystrophin gene expression during cardiac differentiation of KIND1 hES cells on days 0, 12, and 20 ...
ChIP sequencing in KIND1 and HES3 cells during cardiac differentiation visualized by Integrated Gen...
Figure S1. Showing characterization of human iPSCs and differentiated cardiomyocytes. (A) qRT-PCR de...
ChIP sequencing of occupancy of H3K79me2 on DMD gene during cardiac differentiation of KIND1 and HES...
Figure S1. Phenotypic characterization of hCPCs. hCPCs were characterized using specific cell marker...
Figure S2. Constitutive transactivator activity of Tcf7l1 augmented mesoderm markers. (A) Western bl...
Differentiation of hiPSCs to endothelial cells through an MESP1+ mesoderm progenitor stage. (a) FACS...
Figure S3. Phenotypic characterization of hiPSC-CMs. hiPSC-CMs were characterized using specific cel...
Figure S1. (A) Expression of Tcf7, Lef1, and Tcf7l2 in Tcf7l1−/− ESCs. (B) Comparison of conditional...
Figure S3. Isolation and characteristics of cardiac Sca-1+ cells. (A) Flow cytometry was used to iso...
is Figure S1 showing cellular characteristics and HPC/HSC reprogramming. A Identification of HPC/HSC...
Figure S1. Differentiation capacities of bone-derived Nestin+ and Nestin− cells in vitro. (A) Histoc...
Figure S2. Effect of I/R injury on hiPSCs-hCMs without maturation step. Viability of hiPSC-CMs after...