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SKU: 0810ATC

COR-L105 Human Lung Lung Adenocarcinoma Epithelial Cells


Tumor Cell Lines > Lung Cancer Cell Lines

Product Type: Human Lung Cancer Cell Lines

Species: Human

Cell Type: Epithelial Cells

Source Organ: Lung


Regular price $1,249.00

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Cell Name: COR-L105

Human Caucasian lung adenocarcinoma. Derived from the pleural effusion of a Caucasian male. Cells grow partially attached and in suspension.

  • Description
    COR-L105 is a human non-small cell lung cancer (NSCLC) cell line established from the pleural effusion of a Caucasian male patient with lung adenocarcinoma. The cells exhibit an epithelial-like morphology and grow partially attached and in suspension without forming a confluent monolayer. Functionally, COR-L105 cells may be involved in tumor microenvironment regulation and amino acid metabolic reprogramming due to high expression of genes such as PPBP and SLC6A14. Its complex karyotype (containing at least 15 chromosomal translocations) reflects the genomic instability of NSCLC. Although the in vivo tumorigenicity has not been fully clarified, this cell line has been widely used in the study of the mechanism of lung adenocarcinoma, including: the molecular pathway of apoptosis induced by histone deacetylase inhibitors (HDACi) and the adhesion mechanism of tumor cells to brain endothelial cells, providing an in vitro model for the study of NSCLC brain metastasis.
  • Product Name
    COR-L105
  • Product Type
    Human Lung Cancer Cell Lines
  • Species
    Human
  • Cell Type
    Epithelial-like
  • Source Organ
    Lung
  • Disease
    Lung Adenocarcinoma
  • Product Type
    Human Lung Cancer Cell Lines
  • Growth Conditions
    37 °C, 5% CO2
  • Application
    COR-L105 can be used to study the mechanism of action of histone deacetylation in the progression of NSCLC. These cells can also be used to evaluate the pro-apoptotic effects of histone deacetylase inhibitors (HDACi) and explore the regulatory network of CIP/KIP family proteins. COR-L105 can also be applied to screen potential drug targets that inhibit blood-brain barrier penetration and provide an experimental model for anti-metastatic therapy.
  • Size/Quantity
    1 vial
  • Recommended Medium And Supplement

    RPMI 1640 + 10% FBS
  • Shipping Conditions
    Dry Ice
  • Storage
    Liquid Nitrogen
  • Biosafety Level
    1

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