For research use only
| Cat No. | ABC-SC2028 |
| Product Type | Human Adult Stem Cells |
| Cell Type | Stem Cell |
| Species | Human |
| Growth Conditions | 37 ℃, 5% CO2 |
| Source Organ | Cord Blood |
| Disease | Normal |
| Storage | Liquid Nitrogen |
Use HighQC™ Human IPSC From Cord Blood Cells CD34+ for pluripotent stem cell research, differentiation, and disease modeling in hematopoietic systems.
HighQC™ Human Induced Pluripotent Stem Cells (iPSCs) From Cord Blood CD34+ Cells are derived from human umbilical cord blood CD34+ hematopoietic progenitor cells using standardized episomal reprogramming protocols. Morphologically, these cells display tight colony boundaries, high nuclear-to-cytoplasmic ratios, and clonal growth patterns. Reprogramming was performed using episomal vectors, which transiently express key human transcription factors to initiate the reprogramming process. These iPSCs exhibit pluripotency, with the ability to differentiate into types of all three germ layers under defined conditions, and express the pluripotency marker SSEA-4. The cells undergo rigorous screening and isolation procedures, and are rigorously tested to ensure they are free of contamination from HIV-1, HBV, HCV, Syphilis, Mycoplasma, Fungi, Yeast, and Bacteria.
| Product Code | HighQC™ Human IPSC From Cord Blood Cells CD34+, Cord Blood-Derived hiPSC, hiPSC-CD34+, Human Induced Pluripotent Stem Cells from CD34+ Cells |
| Species | Human |
| Cat.No | ABC-SC2028 |
| Product Category | Stem Cells |
| Size/Quantity | 1 vial |
| Cell Type | Stem Cell |
| Growth Mode | Adherent |
| Shipping Info | Dry Ice |
| Growth Conditions | 37 ℃, 5% CO2 |
| Source Organ | Cord Blood |
| Disease | Normal |
| Storage | Liquid Nitrogen |
| Product Type | Human Adult Stem Cells |
HighQC™ Human iPSCs derived from CD34+ cord blood cells provide a powerful in vitro platform for studying human pluripotency, early lineage commitment, and hematopoietic development, representing a type of cord ips within human iPSC lines. These cells are particularly well suited for directed differentiation into mesodermal and blood-related lineages, supporting research on hematopoiesis, vascular development, and immune cell specification. In addition, they are widely applied in gene regulation, epigenetic reprogramming, and developmental pathway analyses, as well as for comparative studies examining the influence of donor cell origin on iPSC differentiation potential and transcriptional profiles under defined experimental conditions.
When you publish your research, please cite our product as "AcceGen Biotech Cat.# XXX-0000". In return, we’ll give you a $200 coupon. Simply click here and submit your paper’s PubMed ID (PMID).