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Anti-GD2 KIR CAR (XW-452) Vector (XS-1122-YF452)

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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-GD2 KIR chimeric antigen receptor (CAR) is constructed for the engineering of T cells to target Human GD2. The T cells are genetically modified through transduction with a lentiviral vector expressing scFv (XW-452) of anti-GD2 antibody linked to KIR2DS2 TM & ICD and DAP12. The vector product was designed for the discovery and development of cellular therapy against Neuroblastoma. This KIR signaling is designed to prolong KIR-CAR T cells' efficacy period by coupling the receptor chains during activation and decoupling them during rest, avoiding T cell exhaustion even in challenging solid-tumor environments.

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Details

  • Target
  • GD2
  • Targeting Cell Type
  • T Cell
  • Targeting Diseases
  • Neuroblastoma
  • Vector Name
  • pCDCAR1
  • Vector Length
  • ~8kb
  • Vector Type
  • Lentiviral vector
  • Receptor Construction
  • scFv-KIR2DS2 TM&ICD-2A-DAP12
  • Discription of Signaling Cassetes
  • The dual binding and signal chains are designed to come together to form a single receptor complex when bound to a tumor target. Dual chain signaling provides prolonged T cell activation even in challenging solid-tumor environments. KIR CAR combines the power of NK cell KIR receptors with the long-term durability of T cells, resulting in a long-lasting and powerful anti-cancer efficacy. KIR CAR-T cells maintained activation and potent cytotoxic activities in solid tumors compared with the CD28 and 4-1BB co-stimulated CD3-ζ -based traditional CAR T cells. The DAP12 signal functions as both activation and co-stimulation for T cells, circumventing the CD3-ζ pathway to allow prolonged KIR-CAR function.

Target

  • Clone
  • XW-452
  • Host
  • Mouse
  • Target Species
  • Human
  • Gene Name
  • Ganglioside GD2
  • Synonyms
  • GD2 ganglioside; GD2
  • Introduction
  • Gangliosides are carbohydrate-containing sphingolipids that are widely expressed in normal tissues, making most subtypes unsuitable as targets for cancer therapy. However, the disialoganglioside GD2 subtype has limited expression in normal tissues but is overexpressed across a wide range of tumors. Disialoganglioside GD2 can be considered a tumor-associated antigen and well-suited as a target for cancer therapy. Disialoganglioside GD2 is implicated in tumor development and malignant phenotypes through enhanced cell proliferation, motility, migration, adhesion, and invasion, depending on the tumor type. This provides a rationale for targeting disialoganglioside GD2 in cancer therapy with the development of anti-GD2 monoclonal antibodies and other therapeutic approaches.

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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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