CYP2C9 Induction Reporter Assay Kit – 100 tests

Brand:
Cayman
Storage:
-20

Early screening of drug candidate’s potential to induce or inhibit CYP2C9 is a critical step in the drug development process. The CYP2C9 Induction Reporter Assay Kit is a novel method to evaluate CYP2C9 induction by drug candidates. Cayman’s CYP2C9 Induction Reporter Assay Kit consists of a 96-well plate coated with a transfection complex containing a Secreted Alkaline Phosphatase (SEAP) reporter regulated by the human CYP2C9 gene promoter. Cells grown on the CYP2C9 Reporter Reverse Transfection Strip Plate will introduce the reporter gene and express GRα as well as HNF4α. Test compounds that promote binding of the nuclear receptors to the CYP2C9 promoter initiates SEAP expression. SEAP activity is subsequently measured using a luminescence readout. The kit is simple to use and can be easily adapted to high-throughput screening for potential nuclear receptor-mediated CYP2C9 inducers.  

 

Available on backorder

SKU: 601120 - 100 tests Category:

Description

Early screening of drug candidate’s potential to induce or inhibit CYP2C9 is a critical step in the drug development process. The CYP2C9 Induction Reporter Assay Kit is a novel method to evaluate CYP2C9 induction by drug candidates. Cayman’s CYP2C9 Induction Reporter Assay Kit consists of a 96-well plate coated with a transfection complex containing a Secreted Alkaline Phosphatase (SEAP) reporter regulated by the human CYP2C9 gene promoter. Cells grown on the CYP2C9 Reporter Reverse Transfection Strip Plate will introduce the reporter gene and express GRα as well as HNF4α. Test compounds that promote binding of the nuclear receptors to the CYP2C9 promoter initiates SEAP expression. SEAP activity is subsequently measured using a luminescence readout. The kit is simple to use and can be easily adapted to high-throughput screening for potential nuclear receptor-mediated CYP2C9 inducers.


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Application|Reverse Transfection Reporter Assay||Product Type|Assay Kits|Cell-Based Assays|Reverse Transfection||Research Area|Toxicology|Drug Metabolism|Cytochrome P450