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Anti-Mouse CD279 (PD-1) - FITC

Leinco Technologies
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Product Details

Cat. No.
P351-100 µg
Clonality
Monoclonal
Leinco Technologies

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Product Overview

Anti-Mouse CD279 (PD-1) - FITC

Leinco Technologies
0.0/5.0
|0 Reviews

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Leinco Technologies

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  • Summary
  • Reviews

Description

PD-1 is a 50-55 kD member of the B7 Ig superfamily. PD-1 is also a member of the extended CD28/CTLA-4 family of T cell regulators and is suspected to play a role in lymphocyte clonal selection and peripheral tolerance. The ligands of PD-1 are PD-L1 and PD-L2, and are also members of the B7 Ig superfamily. PD-1 and its ligands negatively regulate immune responses. PD-L1, or B7-Homolog 1, is a 40 kD type I transmembrane protein that has been reported to costimulate T cell growth and cytokine production. The interaction of PD-1 with its ligand PD-L1 is critical in the inhibition of T cell responses that include T cell proliferation and cytokine production. PD-L1 has increased expression in several cancers. Inhibition of the interaction between PD-1 and PD-L1 can serve as an immune checkpoint blockade by improving T-cell responses In vitro and mediating preclinical antitumor activity. Within the field of checkpoint inhibition, combination therapy using anti-PD1 in conjunction with anti-CTLA4 has significant therapeutic potential for tumor treatments. PD-L2 is a 25 kD type I transmembrane ligand of PD-1. Via PD-1, PD-L2 can serve as a coinhibitor of T cell functions. Regulation of T cell responses, including enhanced T cell proliferation and cytokine production, can result from mAbs that block the PD-L2 and PD-1 interaction.

Biological Information

  • Clonality: Monoclonal
  • Reactivity: Mouse
  • Antigen: PD-1 is expressed on a subset of CD4-CD8- thymocytes, and on activated T and B cells.
  • Clone: J43
  • Conjugate: Fluorescein (FITC)
  • Isotype: IgG
  • Gene: 18566

Handling

  • Quantity: 100 µg
  • Storage: This Fluorescein (FITC) conjugate is stable when stored at 2-8°C. Do not freeze.

Applications

  • Immunoprecipitation (IP)
  • In Situ Hybridization (ISH)
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