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CD44 antibody | F10-44-2

Product Code Applications Pack Size List Price Your Price Qty
MCA89T
Datasheet Datasheet Datasheet
SDS Safety Datasheet SDS
C F IF P 20 µg loader
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loader
MCA89
Datasheet Datasheet Datasheet
SDS Safety Datasheet SDS
C F IF P 0.2 mg loader
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loader

Mouse anti Human CD44 antibody, clone F10-44-2 recognizes human CD44, also known as Epican, HCAM, Phagocytic Glycoprotein 1 (PGP-1) or Hyaluronate receptor . Human CD44 is a single pass, type I transmembrane glycoprotein of variable molecular weight ranging from ~90kDa to ~220kDa depending on alternate splicing of the variable region exons and on the degree of glycosylation. CD44 is expressed on multiple cell types and is involved in multiple functions including cell-cell interactions and cell-extracellular matrix binding. Hyaluronan, a high molecular weight polysaccharide component of the extracellular matrix acts as the principal ligand for the CD44 receptor (Laurent and Fraser 1992).

CD44 isoforms containing one or more sequences encoded by the variant region exons have a much more restricted expression pattern both in terms of organ specificity and immune activation (Mackay et al. 1994). .

Mouse anti Human CD44 antibody, clone F10-44-2 recognizes an epitope on human CD44 outside the regions coded for by the variable region exons and is thus expected to recognize all isoforms of human CD44 (Mackay et al. 1994).

Target Species
Human
Species Cross-Reactivity
Target SpeciesCross Reactivity
Cynomolgus monkey
N.B. Antibody reactivity and working conditions may vary between species.
Product Form
Purified IgG - liquid
Preparation
Purified IgG prepared by affinity chromatography on Protein G from tissue culture supernatant
Buffer Solution
Phosphate buffered saline
Preservative Stabilisers
0.09%Sodium Azide
Carrier Free
Yes
Immunogen
Human T lymphocytes.
Approx. Protein Concentrations
IgG concentration 1mg/ml
Fusion Partners
Spleen cells of immunised BALB/c mice were fused with cells from the mouse NS1 myeloma line.
Regulatory
For research purposes only
Guarantee
12 months from date of despatch

This product is shipped at ambient temperature. It is recommended to aliquot and store at -20°C on receipt. When thawed, aliquot the sample as needed. Keep aliquots at 2-8°C for short term use (up to 4 weeks) and store the remaining aliquots at -20°C.

Avoid repeated freezing and thawing as this may denature the antibody. Storage in frost-free freezers is not recommended.

This product has been reported to work in the following applications. This information is derived from testing within our laboratories, peer-reviewed publications or personal communications from the originators. Please refer to references indicated for further information. For general protocol recommendations, please visit the antibody protocols page.
Application Name Verified Min Dilution Max Dilution
Flow Cytometry 1/10 1/20
Immunofluorescence
Immunohistology - Frozen
Immunohistology - Paraffin 1/50 1/100
Where this antibody has not been tested for use in a particular technique this does not necessarily exclude its use in such procedures. Suggested working dilutions are given as a guide only. It is recommended that the user titrates the antibody for use in their own system using appropriate negative/positive controls.
Flow Cytometry
Use 10ul of the suggested working dilution to label 106 cells in 100ul.
Histology Positive Control Tissue
Human Tonsil

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Description Goat anti Mouse IgG (Fc):FITC
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Description Goat anti Mouse IgG/A/M:HRP (Human Adsorbed)
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Description Rabbit F(ab')2 anti Mouse IgG:FITC

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Description Mouse IgG2a Negative Control

References for CD44 antibody

  1. Dalchau, R. et al. (1980) Monoclonal antibody to a human brain-granulocyte-T lymphocyte antigen probably homologous to the W 3/13 antigen of the rat.
    Eur J Immunol. 10 (10): 745-9.
  2. Daar, A.S. & Fabre, J.W. (1981) Demonstration with monoclonal antibodies of an unusual mononuclear cell infiltrate and loss of normal epithelial membrane antigens in human breast carcinomas.
    Lancet. 2 (8244): 434-8.
  3. Mackay, F. et al. (1993) Tumor necrosis factor alpha (TNF-alpha)-induced cell adhesion to human endothelial cells is under dominant control of one TNF receptor type, TNF-R55.
    J Exp Med. 177: 1277-86.
  4. Cattoretti, G. et al. (1993) Antigen unmasking on formalin-fixed, paraffin-embedded tissue sections.
    J Pathol. 171 (2): 83-98.
  5. Oshiro, N. et al. (1998) Phosphorylation of moesin by rho-associated kinase (Rho-kinase) plays a crucial role in the formation of microvilli-like structures.
    J Biol Chem. 273: 34663-6.
  6. Ito, T. et al. (1999) A CD1a+/CD11c+ subset of human blood dendritic cells is a direct precursor of Langerhans cells.
    J Immunol. 163: 1409-19.
  7. Roscic-Mrkic, B. et al. (2003) RANTES (CCL5) uses the proteoglycan CD44 as an auxiliary receptor to mediate cellular activation signals and HIV-1 enhancement.
    Blood. 102: 1169-77.
  8. Sundström, M. (2003) Functional and phenotypic studies of two variants of a human mast cell line with a distinct set of mutations in the c-kit proto-oncogene.
    Immunology. 108: 89-97.
  9. View The Latest Product References
  10. Avigdor, A. et al. (2004) CD44 and hyaluronic acid cooperate with SDF-1 in the trafficking of human CD34+ stem/progenitor cells to bone marrow.
    Blood. 103: 2981-9.
  11. Chang, Y.C. et al. (2006) The glycosaminoglycan-binding domain of decoy receptor 3 is essential for induction of monocyte adhesion.
    J Immunol. 176: 173-80.
  12. Hughes, G.J. et al. (2007) Virus immunocapture provides evidence of CD8 lymphocyte-derived HIV-1 in vivo.
    AIDS. 21: 1507-13.
  13. Hughes, G.J. et al. (2007) Virus immunocapture provides evidence of CD8 lymphocyte-derived HIV-1 in vivo.
    AIDS. 21: 1507-13.
  14. Stolzing, A. et al. (2008) Age-related changes in human bone marrow-derived mesenchymal stem cells: consequences for cell therapies.
    Mech Ageing Dev. 129: 163-73.
  15. Horwitz, K.B. et al. (2008) Rare steroid receptor-negative basal-like tumorigenic cells in luminal subtype human breast cancer xenografts.
    Proc Natl Acad Sci U S A. 105: 5774-9.
  16. Amirghofran, Z. et al. (2008) Evaluation of CD44 and CD44v6 in colorectal carcinoma patients: soluble forms in relation to tumor tissue expression and metastasis.
    J Gastrointest Cancer. 39: 73-8.
  17. Walker, M.M. et al. (2008) The intercellular adhesion molecule, cadherin-10, is a marker for human prostate luminal epithelial cells that is not expressed in prostate cancer.
    Mod Pathol. 2008 Feb;21: 85-95.
  18. Reim, F. et al. (2009) Immunoselection of breast and ovarian cancer cells with trastuzumab and natural killer cells: selective escape of CD44high/CD24low/HER2low breast cancer stem cells.
    Cancer Res. 69: 8058-66.
  19. Norrmen, C. et al. (2010) Liprin (beta)1 is highly expressed in lymphatic vasculature and is important for lymphatic vessel integrity.
    Blood. 115: 906-9.
  20. Hauser, P.V. et al. (2010) Stem cells derived from human amniotic fluid contribute to acute kidney injury recovery.
    Am J Pathol. 177: 2011-21.
  21. Yin, S. et al. (2010) Chondrogenic transdifferentiation of human dermal fibroblasts stimulated with cartilage-derived morphogenetic protein 1.
    Tissue Eng Part A. 16: 1633-43.
  22. Yi, T. et al. (2015) Manufacture of Clinical-Grade Human Clonal Mesenchymal Stem Cell Products from Single Colony Forming Unit-Derived Colonies Based on the Subfractionation Culturing Method.
    Tissue Eng Part C Methods. 21 (12): 1251-62.
  23. Lee, H.J. et al. (2017) ICOSL expression in human bone marrow-derived mesenchymal stem cells promotes induction of regulatory T cells.
    Sci Rep. 7: 44486.
  24. Xu, L. et al. (2017) Umbilical cord-derived mesenchymal stem cells on scaffolds facilitate collagen degradation via upregulation of MMP-9 in rat uterine scars.
    Stem Cell Res Ther. 8 (1): 84.
  25. Squillace, N. et al. (2018) Evaluation of adhesion molecules and immune parameters in HIV-infected patients treated with an atazanavir/ritonavir- compared with a lopinavir/ritonavir-based regimen.
    J Antimicrob Chemother. 73 (8): 2162-70.
  26. Hou, B. et al. (2018) Xenogeneic acellular nerve scaffolds supplemented with autologous bone marrow-derived stem cells promote axonal outgrowth and remyelination but not nerve function.
    J Biomed Mater Res A. 106 (12): 3065-78.
  27. Noda, G.S. et al. (2020) Specificities and isotypes of erythrocytes autoantibodies in patients with warm autoimmune hemolytic anemia
    Rev Cubana Hematol Inmunol Hemoter 36(4): e1283

Flow Cytometry

Immunofluorescence

Synonyms
H-CAM
PGP-1
RRID
AB_871977
UniProt
P16070
Entrez Gene
CD44

MCA89T

160808 1711

MCA89

0511R 155281

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