For research use only
| Cat No. | ABC-SC012Y |
| Product Type | Human Induced Pluripotent Stem Cells |
| Cell Type | Skeletal Muscle Cells |
| Species | Human |
| Growth Conditions | 37 ℃, 5% CO2 |
| Source Organ | Bone |
| Disease | Normal |
| Storage | Liquid Nitrogen |
HighQC™ Human iPSC-derived Skeletal Myocytes provide physiologically relevant cells for muscle biology, disease modeling, and therapeutic drug evaluation.
Skeletal Myocytes are human iPSC-derived skeletal muscle cells, precision reprogrammed using technology. Upon revival, these cells mature rapidly to form elongated, striated, multinucleated muscle fibers that contract within 10 days. The cells exhibit high population purity, are easy to culture, and express key myofilament proteins, making them ideal for mechanistic and functional studies, disease modeling, and drug development.
| Product Code | HighQC™ Human iPSC-Derived Skeletal Myocytes, Human iPSC Skeletal Myocytes, hiPSC Myocytes, Skeletal Muscle Cells, iPSC-SkMCs |
| Species | Human |
| Cat.No | ABC-SC012Y |
| Product Category | Stem Cells |
| Size/Quantity | 1 vial |
| Cell Type | Skeletal Muscle Cells |
| Growth Mode | Adherent |
| Shipping Info | Dry Ice |
| Growth Conditions | 37 ℃, 5% CO2 |
| Source Organ | Bone |
| Disease | Normal |
| Biosafety Level | 1 |
| Storage | Liquid Nitrogen |
| Product Type | Human Induced Pluripotent Stem Cells |
| Quality Control | All cells test negative for mycoplasma, bacteria, yeast, and fungi. |
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).
HighQC™ Human iPSC-Derived Skeletal Myocytes are supplied as cryopreserved, differentiated human iPSC-derived skeletal myocytes, rather than undifferentiated iPSCs. Following recovery, the cells can undergo further maturation under the recommended culture conditions. Cell identity is confirmed by the expression of skeletal muscle-specific markers, including Desmin and Myosin Heavy Chain (MyHC), supporting their suitability for skeletal muscle research and disease modeling.