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CyFlow™ CD3 PerCP-Cy5.5

CyFlow™ CD3 PerCP-Cy5.5
Antigen: CD3
Alternative Name: Leu4, T3
Clone: 145-2C11
Application: Flow cytometry
Format/Fluorochrome: PerCP-Cy5.5
Laser: Blue, Green
Target Species: Mouse
Field of Interest: Immunophenotyping, MHC
Species of Origin: Hamster
Regulatory Status: RUO
Clonality: monoclonal
Emission Maximum: 695 nm
Excitation Maximum: 482 nm
Isotype: IgG
Order number: BJ628650

For Research Use Only
Not for use in diagnostic or therapeutic procedures.

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EUROBIOTECH2017

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*1 Offer valid until 23/09/2017
Concentration Unit mg/mL Concentration 0.5 Quantity 0.1 mg Volume 0.2... more
CyFlow™ CD3 PerCP-Cy5.5
Concentration Unitmg/mL
Concentration0.5
Quantity0.1 mg
Volume0.2
ImmunogenMouse BM10-37 cytotoxic T lymphocytes
Background InformationCD3 complex is crucial in transducing antigen-recognition signals into the cytoplasm of T cells and in regulating the cell surface expression of the TCR complex. T cell activation through the antigen receptor (TCR) involves the cytoplasmic tails of the CD3 subunits CD3γ, CD3 δ, CD3ε and CD3ζ. These CD3 subunits are structurally related members of the immunoglobulins superfamily encoded by closely linked genes on human chromosome 11. The CD3 components have long cytoplasmic tails that associate with cytoplasmic signal transduction molecules. This association is mediated at least in part by a double tyrosine-based motif present in a single copy in the CD3 subunits. CD3 may play a role in TCR-induced growth arrest, cell survival and proliferation.
UsageThe reagent is designed for Flow Cytometry analysis. Working concentrations should be determined by the investigator.
Storage BufferThe reagent is provided in phosphate buffered saline (PBS) solution, pH ≈7.4, containing 0.09% (w/v) sodium azide.
StorageAvoid prolonged exposure to light. Store in the dark at 2-8°C. Do not freeze.
StabilityDo not use after expiration date stamped on vial label.

Specific References

| Leo O, Foo M, Sachs DH, Samelson LE, Bluestone JA: Identification of a monoclonal antibody specific for a murine T3 polypeptide. Proc·Natl·Acad·Sci·USA. 1987·Mar; 84(5):1374‑8. <·PMID:·2950524·> | Samelson LE, O'Shea JJ, Luong H, Ross P, Urdahl KB, Klausner RD, Bluestone J: T cell antigen receptor phosphorylation induced by an anti‑receptor antibody. J·Immunol. 1987·Oct·15; 139(8):2708‑14. <·PMID:·2443570·> | Payer E, Elbe A, Stingl G: Circulating CD3+/T cell receptor V gamma 3+ fetal murine thymocytes home to the skin and give rise to proliferating dendritic epidermal T cells. J·Immunol. 1991·Apr·15; 146(8):2536‑43. <·PMID:·1826696·> | Jacobs H, Vandeputte D, Tolkamp L, de Vries E, Borst J, Berns A: CD3 components at the surface of pro‑T cells can mediate pre‑T cell development in vivo. Eur·J·Immunol. 1994·Apr; 24(4):934‑9. <·PMID:·8149963·> | Salvadori S, Gansbacher B, Pizzimenti AM, Zier KS: Abnormal signal transduction by T cells of mice with parental tumors is not seen in mice bearing IL‑2‑secreting tumors. J·Immunol. 1994·Dec·1; 153(11):5176‑82. <·PMID:·7963575·> | Vossen AC, Tibbe GJ, Kroos MJ, van de Winkel JG, Benner R, Savelkoul HF: Fc receptor binding of anti‑CD3 monoclonal antibodies is not essential for immunosuppression, but triggers cytokine‑related side effects. Eur·J·Immunol. 1995·Jun; 25(6):1492‑6. <·PMID:·7614975·> | Henrickson M, Reid J, Bellet JS, Sawchuk SS, Hirsch R: Comparison of in vivo efficacy and mechanism of action of antimurine monoclonal antibodies directed against TCR alpha beta (H57‑597) and CD3 (145‑2C11). Transplantation. 1995·Oct·27; 60(8):828‑35. <·PMID:·7482743·> | Kinnaert P, Pradier O, Bournonville B, Habrant C, Goldman M, Van Geertruyden N: Role of CD18‑dependent and CD18‑independent mechanisms in the increased leukocyte adhesiveness and in the variations of circulating white blood cell populations induced by anti‑CD3 monoclonal antibodies. Transpl·Int. 1996; 9(4):386‑91. <·PMID:·8819275·> | Kearse KP: Calnexin associates with monomeric and oligomeric (disulfide‑linked) CD3delta proteins in murine T lymphocytes. J·Biol·Chem. 1998·Jun·5; 273(23):14152‑7. <·PMID:·9603915·> | Han WR, Murray-Segal LJ, Gershenzon A, Zhang JG, Hodder AN, Pietersz GA, Mottram PL: Idarubicin‑145‑2C11‑F(ab')2 promotes peripheral tolerance and reduces chronic vascular disease in mouse cardiac allografts. Transpl·Immunol. 1999·Dec; 7(4):207‑13. <·PMID:·10638833·> | Tilley SL, Jaradat M, Stapleton C, Dixon D, Hua X, Erikson CJ, McCaskill JG, Chason KD, Liao G, Jania L, Koller BH, Jetten AM: Retinoid‑related orphan receptor gamma controls immunoglobulin production and Th1/Th2 cytokine balance in the adaptive immune response to allergen. J·Immunol. 2007·Mar·1; 178(5):3208‑18. <·PMID:·17312169·>

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