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CHO/Human STEAP1 Stable Cell Line Development Service

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  1. Genetically modified cell lines best reflect MOA (Mechanism of Action)
  2. Higher activity and larger assay window for robust and reproducible cell-based bioassay
  3. Comprehensive application data to support assay development and validation
  4. Full tracible record, stringent quality control and validated cell passage stability
  5. Parental cell line legally obtained from internationally recognized cell resource bank and commercially licensed
  6. Global commercial license assistance whenever regulatory filing is required
  • Description
    The CHO/Human STEAP1 Stable Cell Line was engineered to express the receptor full length human STEAP1 (Gene ID: 26872), used to mimic cancer target cells. Surface expression of human STEAP1 was confirmed by flow cytometry.
  • Application

    • Useful for cell-based STEAP1 binding assay

  • Growth Properties
    Adherent
  • Selection Marker
    Puromycin (2 μg/mL)
  • Complete Growth Medium
    F-12K + 10% FBS
  • Freeze Medium
    Serum-free cell cryopreservation medium
  • Quantity
    1 vial contains at least 5×10^6 cells in 1 mL serum-free cryopreservation medium
  • Storage
    Frozen in liquid nitrogen.
  • Mycoplasma Testing
    Negative
  • Sterility Testing
    Negative
  • Instructions for Use
    See data sheet for detailed culturing and assay protocol.
Receptor Assay
 STEAP1 FACS

Expression analysis of human STEAP1 on CHO/Human STEAP1 Stable Cell Line by FACS.
Cell surface staining was performed on CHO/Human STEAP1 Stable Cell Line or negative control cell using anti-human STEAP1 antibody followed by staining with PE anti-human IgG Fc Antibody.

Please contact us if you are interested in related cell pool service.

  • Background
    Six-transmembrane epithelial antigen of the prostate 1 (STEAP1) is an integral membrane protein that is highly up-regulated on the cell surface of several human cancers, making it a promising therapeutic target to manage these diseases. It shares sequence homology with three enzymes (STEAP2-STEAP4) that catalyze the DPH-dependent reduction of iron(III). Taking into account its high specificity and overexpression in human cancers, STEAP1 is nowadays a promising candidate to be imposed as a therapeutic target.
  • Limited Use&License Disclosure

    BY USE OF THIS PRODUCT, RESEARCHER AGREES TO BE BOUND BY THE FOLLOWING TERMS OF LIMITED USE OF THIS CELL LINE PRODUCT.

    1. If the researcher is not willing to accept the terms of limited use of this cell line product, and the product is unused, ACRO will accept return of the unused product.
    2. Researchers may use this product for research use only, no commercial use is allowed. "Commercial use" means any and all uses of this product and derivatives by a party for profit or other consideration and may include but is not limited to use in: (1) product manufacture; and (2) to provide a service, information or data; and/or resale of the product or its derivatives, whether or not such product or derivatives are resold for use in research.
    3. This cell line is neither intended for any animal or human therapeutic purposes nor for any direct human in vivo use . You have no right to share, modify, transfer, distribute, sell, sublicense, or otherwise make the cell line available for use to other researchers, laboratories, research institutions, hospitals, universities, or service organizations.
    4. ACROBIOSYSTEMS MAKES NO WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESSED OR IMPLIED, WITH RESPECT TO THE SUITABILITY OF THE CELL LINE FOR ANY PARTICULAR USE.
    5. ACROBIOSYSTEMS ACCEPTS NO LIABILITY IN CONNECTION WITH THE HANDLING OR USE OF THE CELL LINE.
    6. Modifications of the cell line, transfer to a third party, or commercial use of the cell line may require a separate license and additional fees. Please contact order@acrobiosystems.com for further details.
  • Clinical and Translational Updates

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ETA of in-stock products: 2 business days

Price(USD) : $3785.00

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Drug Development Status

  • Number of Launched Drugs:0 Details
  • Number of Drugs in Clinical Trials:4 Details
  • Latest Research Phase:Phase 2 Clinical

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