Primary Cells

Human Skeletal Muscle Cells, Postnatal

  • For research use only

Cat No.

ABC-TC3798

Product Type

Skeletal Muscle Cells

Cell Type

Skeletal Muscle Cell

Species

Human

Growth Conditions

37 ℃, 5% CO2

Source Organ

Muscle

Disease

Normal

Storage

Liquid Nitrogen

Human skeletal muscle cells are derived from whole muscle that has been dissociated into single cells and cultured.

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Description

Human Skeletal Muscle Cells, Postnatal (HSkMC, Postnatal), are isolated from postnatal skeletal muscle tissue and consist mainly of myoblasts, the precursor cells responsible for muscle growth and regeneration after birth. The cells exhibit elongated, spindle-shaped morphology with adherent growth. Functionally, these cells are critical for studying muscle development, repair mechanisms, and muscle-related disorders such as muscular dystrophies and atrophy. Karyotype analysis confirms genomic stability, while muscle-specific markers such as Desmin and MyoD are highly expressed. 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

Human Skeletal Muscle Cells, Postnatal, Postnatal SkMCs, Postnatal Myocytes, Postnatal Skeletal Muscle Cells

Species

Human

Cat.No

ABC-TC3798

Product Category

Primary Cells

Size/Quantity

1 vial

Cell Type

Skeletal Muscle Cell

Growth Mode

Adherent

Shipping Info

Dry Ice

Growth Conditions

37 ℃, 5% CO2

Source Organ

Muscle

Disease

Normal

Storage

Liquid Nitrogen

Product Type

Skeletal Muscle Cells

Quality Control

All cells test negative for mycoplasma, bacteria, yeast, and fungi.

Application

  • Human skeletal muscle cell line, postnatal (HSkMC, Postnatal), also referred to as postnatal human skeletal muscle cells (hSKMC), serve as a powerful in vitro model for studying muscle physiology, regeneration, and disease mechanisms. These cells are particularly valuable for investigating postnatal myogenesis, muscular dystrophies, and age-related muscle atrophy, as well as for screening potential therapeutics for neuromuscular disorders. Additionally, hSkMCs enable toxicological assessments of drug-induced myotoxicity and support advances in tissue engineering for muscle repair. This cell model enables researchers to elucidate molecular pathways regulating muscle growth and degeneration, identify novel biomarkers, and develop targeted therapies to enhance muscle function and recovery in pathological conditions.

Citation

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).

Inquiring Human Skeletal Muscle Cells, Postnatal

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High Viability
To succeed in cell culture
Precision and Reliability
To support a consistent result
Customization Options
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