Anti-SIGLEC7 Monoclonal Antibody (8B11)

Anti-SIGLEC7 Monoclonal Antibody (8B11)

Cat No: ASPC393

Summary
Host Species:
Mouse
Species Reactivity:
Human
Applications:
Western Blot, Enzyme-Linked Immunosorbent Assay, Flow Cytometry, Neutralization
Clone ID:
8B11
Clonality:
Monoclonal

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Product Information
Subcat Description Isotype Antibody Modification Conjugate Size Price Availability Quantity
ASPC393 Anti-SIGLEC7 Antibody (8B11) Mouse IgG1, Kappa None $460 In stock
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ASPC393-P Anti-SIGLEC7 Antibody (8B11), PE Mouse IgG1, Kappa PE $1,180 2-3 weeks
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ASPC393-A Anti-SIGLEC7 Antibody (8B11), APC Mouse IgG1, Kappa APC $980 2-3 weeks
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ASPC393-H Anti-SIGLEC7 Antibody (8B11), HRP Mouse IgG1, Kappa HRP $600 2-3 weeks
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ASPC393-B Anti-SIGLEC7 Antibody (8B11), Biotin Mouse IgG1, Kappa Biotin $680 2-3 weeks
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Custom Antibody We can also offer conjugation antibodies (Alexa Fluor, Cy, APC, etc.) and other format antibodies (low endotoxin, Fab, scFv, etc.)

  • Anti-SIGLEC7 Monoclonal Antibody (8B11)
    • Product Description:
      The Anti-SIGLEC7 antibody is a mouse monoclonal antibody recommended for use in western blot, ELISA, flow cytometry, neutralization and other applications. This antibody specifically targets SIGLEC7 and demonstrates reactivity with human.
      Applications:
      Western Blot, Enzyme-Linked Immunosorbent Assay, Flow Cytometry, Neutralization
      Target:
      SIGLEC7
      Target Species:
      Human
      Specificity:
      This antibody reacts with human SIGLEC7.
      Clonality:
      Monoclonal
      Clone ID:
      8B11
      Purification:
      The antibody was purified by affinity chromatography.
      Purity:
      >95% as determined by SDS-PAGE
      Aggregation:
      <5% as determined by SEC
      Form:
      Liquid
      Endotoxin:
      Please contact us for more information.
      Formulation:
      Contact us for custom product formulation.
      Preservative:
      BSA and Azide free.
      Stabilizer:
      None
      Shipping:
      Shipped at 4°C.
      Storage:
      This antibody can be store at 2°C-8°C for one month. Upon delivery aliquot. For longer storage, store at -20°C. Avoid repeated freeze-thaw cycles.
  • Anti-SIGLEC7 Monoclonal Antibody (8B11) Applications
    • Note:
      Optimal dilutions/concentrations should be determined by the end user.
Gene Symbol
SIGLEC7
Protein Name
Sialic acid-binding Ig-like lectin 7
Introduction
Sialic acid-binding Ig-like lectin 7 is a protein that in humans is encoded by the SIGLEC7 gene. SIGLEC7 has also been designated as CD328 (cluster of differentiation 328). Predicted to enable sialic acid binding activity. Predicted to be involved in cell adhesion. Predicted to be located in membrane. Predicted to be active in plasma membrane.
Alternative Names
p75; QA79; AIRM1; CD328; CDw328; D-siglec; SIGLEC-7; SIGLECP2; SIGLEC19P; p75/AIRM1
Gene ID
UniProt
Molecule Mass
CD Molecules, Siglec Molecules
Subcellular Location
Membrane; Single-pass type I membrane protein.
Tissue Specificity
Predominantly expressed by resting and activated natural killer cells and at lower levels by granulocytes and monocytes. High expression found in placenta, liver, lung, spleen, and peripheral blood leukocytes.
Cell Line Specificity
Group enriched
Function
Putative adhesion molecule that mediates sialic-acid dependent binding to cells. Preferentially binds to alpha-2,3- and alpha-2,6-linked sialic acid. Also binds disialogangliosides (disialogalactosyl globoside, disialyl lactotetraosylceramide and disialyl GalNAc lactotetraoslylceramide). The sialic acid recognition site may be masked by cis interactions with sialic acids on the same cell surface. In the immune response, may act as an inhibitory receptor upon ligand induced tyrosine phosphorylation by recruiting cytoplasmic phosphatase(s) via their SH2 domain(s) that block signal transduction through dephosphorylation of signaling molecules. Mediates inhibition of natural killer cells cytotoxicity. May play a role in hemopoiesis. Inhibits differentiation of CD34+ cell precursors towards myelomonocytic cell lineage and proliferation of leukemic myeloid cells (in vitro).
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