For research use only
| Cat No. | ABC-SC0068 |
| Product Type | Human Adult Stem Cells |
| Cell Type | Stem Cell |
| Species | Human |
| Growth Conditions | 37 ℃, 5% CO2 |
| Source Organ | Human Cord Blood |
| Disease | Normal |
| Storage | Liquid Nitrogen |
HighQC™ Human Neuronal trans-differentiated Human Cord Blood derived Stem Cell enables studies of neurogenesis, neuronal differentiation, and regeneration.
HighQC™ Human Neuronal Trans-differentiated Cord Blood Stem Cells are human neuronal cells directly generated from CD34+ hematopoietic stem cells isolated from umbilical cord blood. Through lineage conversion strategies, these cells are transdifferentiated into neuron-like cells without passing through a pluripotent intermediate state. The resulting cells exhibit typical neuronal morphology, including bipolar or multipolar cell bodies with extended neuritic processes, and express canonical neuronal markers such as βIII-tubulin and MAP2. They also show early functional features such as calcium flux and synaptic protein expression under appropriate conditions. Each lot undergoes rigorous screening and isolation procedures, and is rigorously tested to ensure it is free of contamination from HIV-1, HBV, HCV, syphilis, mycoplasma, fungi, yeast, and bacteria.
| Product Code | HighQC™ Human Neuronal Trans-Differentiated Human Cord Blood Derived Stem Cell, Human TD Neural SC, hCB-NSC, Human Transdifferentiated Neural Stem Cells |
| Species | Human |
| Cat.No | ABC-SC0068 |
| 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 | Human Cord Blood |
| Disease | Normal |
| Biosafety Level | 1 |
| Storage | Liquid Nitrogen |
| Product Type | Human Adult Stem Cells |
HighQC™ neural cells offer a human-derived platform for modeling neurodevelopment, synaptogenesis, and disease mechanisms such as neurodegeneration and neurotoxicity. Their direct lineage conversion and reduced variability compared with iPSC-derived neurons make them suitable for high-throughput screening of neurologically active compounds and studying neuronal response to toxins or injury in a reproducible setting. They also integrate well in co-culture systems, brain-on-a-chip platforms, and 3D organoid assays for network and functional studies.
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).