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Product Details
anti-T-cell surface glycoprotein CD4 (CD4) antibody (FITC)
Overview
| Antigen: | T-cell surface glycoprotein CD4 (CD4) |
| Clonality: | Monoclonal (EDU-2) |
| Application: | Flow Cytometry (FACS), Immunoprecipitation (IP), Immunohistochemistry (Frozen Sections) (IHC (fro)) |
| Reactivity: | Human |
| Host: | Mouse |
|
8 references available |
| Conjugate: | FITC |
| Quantity: | |
| Price: | 337,68 $ (Plus shipping costs $25 and VAT, Invoice in EUR) |
| Order number: | ABIN94100 |
| Availability: | Ships within 1 to 3 Business days |
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Additional Information » anti-T-cell surface glycoprotein CD4 (CD4) antibody (FITC)
| Antigen | T-cell surface glycoprotein CD4 (CD4) |
| Gene ID | 12pter-p12 |
| Immunogen | Human T-lymphocytes |
| Reactivity | Human |
| Clonality | Monoclonal |
| Isotype | IgG2a »Matching secondary antibodies |
| Clone | EDU-2 |
| Host | Mouse |
| Specificity | The antibody EDU-2 recognizes CD4 antigen, a 55 kDa transmebrane glycoprotein expressed on a subset of T lymphocytes (“,helper“, T-cells) and also on monocytes, tissue macrophages and granulocytes.HLDA II., WS Code T 107HLDA III., WS Code T 512 |
Application Details » anti-T-cell surface glycoprotein CD4 (CD4) antibody (FITC)
| Application |
Flow Cytometry (FACS), Immunoprecipitation (IP), Immunohistochemistry (Frozen Sections) (IHC (fro))
» Click here to view 6 available protocols! |
| Application Notes | The Applications are presented only at purified format of antibody. |
| Conjugate | FITC |
| Buffer | The reagent is provided in phosphate buffered saline (PBS) containing 15 mM sodium azide and 0.2% (w/v) high-grade protease free Bovine Serum Albumin (BSA) as a stabilizing agent. |
| Storage | Store in the dark at 2-8 |
| Research Area | Immunology, Adaptive Immunity, Hematopoietic Progenitors, CD Antigens, Surface Receptors of Immune Cells |
| Restrictions | For Research Use only |
Publications » anti-T-cell surface glycoprotein CD4 (CD4) antibody (FITC)
| Publications |
Gallart, Roelcke, Blay et al.: "Anti-Sia-lb (anti-Gd) cold agglutinins bind the domain NeuNAc alpha2-3Gal in sialyl Lewis(x), sialyl Lewis(a), and related carbohydrates on nucleated cells and in soluble cancer-associated mucins." In: Blood
, Vol. 90, Issue 4, pp. 1576-87, 1997 (PubMed)
Arnold, Balkow, Staats et al.: "Increase in perforin-positive peripheral blood lymphocytes in extrinsic and intrinsic asthma." In: American journal of respiratory and critical care medicine , Vol. 161, Issue 1, pp. 182-6, 2000 (PubMed) Le Gall, Reusch, Little et al.: "Effect of linker sequences between the antibody variable domains on the formation, stability and biological activity of a bispecific tandem diabody." In: Protein engineering, design & selection : PEDS , Vol. 17, Issue 4, pp. 357-66, 2004 (PubMed) Karlsson, Rugtveit, Brandtzaeg: "Allergen-responsive CD4+CD25+ regulatory T cells in children who have outgrown cow's milk allergy." In: The Journal of experimental medicine , Vol. 199, Issue 12, pp. 1679-88, 2004 (PubMed) Cassens U, Gohde W, Kuling G et al.: "Simplified volumetric flow cytometry allows feasible and accurate determination of CD4 T lymphocytes in immunodeficient patients worldwide." In: Antivir Ther , Vol. 9, Issue 3, pp. 395-405, 2004 (PubMed) Heusser, Yuan, Neagoe et al.: "Scavenging of 14-3-3 proteins reveals their involvement in the cell-surface transport of ATP-sensitive K+ channels." In: Journal of cell science , Vol. 119, Issue Pt 20, pp. 4353-63, 2006 (PubMed) Ma, Visser, Blokzijl et al.: "The CD4+CD26- T-cell population in classical Hodgkin's lymphoma displays a distinctive regulatory T-cell profile." In: Laboratory investigation; a journal of technical methods and pathology , Vol. 88, Issue 5, pp. 482-90, 2008 (PubMed) Olsen, Tollefsen, Aagaard et al.: "Isolation of Mycobacterium avium subspecies paratuberculosis reactive CD4 T cells from intestinal biopsies of Crohn's disease patients." In: PloS one , Vol. 4, Issue 5, pp. e5641, 2009 (PubMed) |



