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Anti-KLK3 TCR-ABR-β (XW-585) CAR Vector (XS-1122-YF2425)

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All products and services are For Research Use Only and CANNOT be used in the treatment or diagnosis of disease.

The vector of anti-KLK3 TCR-fused Antigen Binding Receptor (TCR-ABR) CAR is constructed for the engineering of T cells to target Human KLK3. The T cells are genetically modified through transduction with a lentiviral vector expressing scFv (XW-585) of anti-KLK3 antibody linked to TCRβ subunit. The vector product was designed for the discovery and development of cellular therapy against Prostate cancer. The TCR-ABR can effectively reprogram an intact TCR complex to recognize tumor surface antigens. TCR-ABR-T cells are shown to engage the signaling capacity of the entire TCR complex in an HLA-independent manner.

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Details

  • Target
  • KLK3
  • Targeting Cell Type
  • T Cell
  • Targeting Diseases
  • Prostate cancer
  • Vector Name
  • pCDCAR1
  • Vector Length
  • ~8kb
  • Vector Type
  • Lentiviral vector
  • Receptor Construction
  • scFv-TCRβ
  • Discription of Signaling Cassetes
  • The scFv used to generate CAR-T cells or single domain antibodies can be fused to the extracellular N-termini of TCRα, TCRβ, CD3γ, CD3δ, or CD3ε subunits, resulting in the activation of target-specific TCR-ABR-T cells. TCR-ABR-T cells have been shown to use the entire TCR complex's signaling capacity in an HLA-independent manner.

Target

  • Clone
  • XW-585
  • Host
  • Mouse
  • Target Species
  • Human
  • Gene Name
  • gamma-seminoprotein or kallikrein-3
  • Synonyms
  • KLK3; APS; KLK2A1; PSA; hK3; kallikrein related peptidase 3; Prostate Specific Antigen
  • Introduction
  • Kallikreins are a subgroup of serine proteases having diverse physiological functions. Growing evidence suggests that many kallikreins are implicated in carcinogenesis and some have potential as novel cancer and other disease biomarkers. The gene is one of the fifteen kallikrein subfamily members located in a cluster on chromosome 19. It encodes a single-chain glycoprotein, a protease which is synthesized in the epithelial cells of the prostate gland, and is present in seminal plasma. It is thought to function normally in the liquefaction of seminal coagulum, presumably by hydrolysis of the high molecular mass seminal vesicle protein. The serum level of this protein, called PSA in the clinical setting, is useful in the diagnosis and monitoring of prostatic carcinoma. Alternate splicing of this gene generates several transcript variants encoding different isoforms.

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For research use only. Not intended for any clinical use. No products from Creative Biolabs may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative Biolabs.

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