CyFlow™ CD4 APC-Cy7
Alternative Name: | Leu3a, T4 |
Antibody: | Yes |
Antigen: | CD4 |
Clonality: | monoclonal |
Clone: | MEM-241 |
Emission Maximum: | 780 nm |
Excitation Maximum: | 650 nm, 750 nm |
Field of Interest: | Immunophenotyping |
Format/Fluorochrome: | APC-Cy7 |
Isotype: | IgG1 |
Laser: | Red |
Regulatory Status: | ASR |
Source Species: | Mouse |
Target Species: | Human |
Product number: | BG403070 |
Analytical and performance characteristics are not established
HLDA Workshop | HCDM (HLDA VIII)—WS Code M241 |
Concentration Unit | µg/mL |
Concentration | 20 |
Volume | 1.0 mL |
Immunogen | 2 N-terminal domains of human CD4 fused to human IgG1 Fc |
Antigen Distribution | CD4 (T4, Leu3a) is a 55 kDa single-chain transmebrane glycoprotein expressed on a subset of T lymphocytes (''helper'' T-cells) and also on monocytes, tissue macrophages and granulocytes. In extracellular region there are 4 immunoglobulin-like domains (1 Ig-like V-type and 3 Ig-like C2-type). Transmembrane region forms 25 aa, cytoplasmic tail consists of 38 aa. Domains 1, 2 and 4 are stabilized by disulfide bonds. The intracellular domain of CD4 is associated with p56Lck, a Src-like protein tyrosine kinase. |
Usage | The reagent may have application in various test methodologies, including Flow Cytometry. Vial has sufficient volume for 100 tests, if used at 10 μL·/·test. User has responsibility for determining reagent quantity per test for any ASR reagent. |
Storage Buffer | The reagent is provided in stabilizing phosphate buffered saline (PBS) solution, pH ≈7.4, containing 0.09% (w/v) sodium azide. |
Storage | Avoid prolonged exposure to light. Store in the dark at 2-8°C. Do not freeze. |
Stability | Do not use after expiration date stamped on vial label. |
| Millan J, Cerny J, Horejsi V, Alonso MA: CD4 segregates into specific detergent‑resistant T‑cell membrane microdomains. Tissue·Antigens. 1999·Jan; 53(1):33‑40. <·PMID:·10082429·> | Foti M, Phelouzat MA, Holm A, Rasmusson BJ, Carpentier JL: p56Lck anchors CD4 to distinct microdomains on microvilli. Proc·Natl·Acad·Sci·USA. 2002·Feb·19; 99(4):2008‑13. <·PMID:·11854499·> | Clapham PR, McKnight A: Cell surface receptors, virus entry and tropism of primate lentiviruses. . J·Gen·Virol. 2002·Aug; 83(8):1809‑29. <·PMID:·12124446·> | Brdicková N, Brdicka T, Angelisová P, Horváth O, Spicka J, Hilgert I, Paces J, Simeoni L, Kliche S, Merten C, Schraven B, Horejsí V: LIME: a new membrane Raft‑associated adaptor protein involved in CD4 and CD8 coreceptor signaling. J·Exp·Med. 2003·Nov·17; 198(10):1453‑62. <·PMID:·14610046·> | Zola H, Swart B, Banham A, Barry S, Beare A, Bensussan A, Boumsell L, D Buckley C, Buhring HJ, Clark G, Engel P, Fox D, Jin BQ, Macardle PJ, Malavasi F, Mason D, Stockinger H, Yang X: CD molecules 2006: human cell differentiation molecules. J·Immunol·Methods. 2007·Jan·30; 319(1‑2):1‑5. <·PMID:·17174972·> | Manasa J, Musabaike H, Masimirembwa C, Burke E, Luthy R, Mudzori J: Evaluation of the Partec flow cytometer against the BD FACSCalibur system for monitoring immune responses of human immunodeficiency virus‑infected patients in Zimbabwe. Clin·Vaccine·Immunol. 2007·Mar; 14(3):293‑8. <·PMID:·17267593·> | Anderson AE, Sayers BL, Haniffa MA, Swan DJ, Diboll J, Wang XN, Isaacs JD, Hilkens CM: Differential regulation of naïve and memory CD4+ T cells by alternatively activated dendritic cells. J·Leukoc·Biol. 2008·Jul; 84(1):124‑33. <·PMID:·18430785·> | Karlsson KR, Cowley S, Martinez FO, Shaw M, Minger SL, James W: Homogeneous monocytes and macrophages from human embryonic stem cells following coculture‑free differentiation in M‑CSF and IL‑3. Exp·Hematol. 2008·Sep; 36(9):1167‑75. <·PMID:·18550257·> | Hovden AO, Karlsen M, Jonsson R, Aarstad HJ, Appel S: Maturation of monocyte derived dendritic cells with OK432 boosts IL‑12p70 secretion and conveys strong T‑cell responses. BMC·Immunol. 2011·Jan·5; 12:2. <·PMID:·21208424·> | Kanderova V, Kuzilkova D, Stuchly J, Vaskova M, Brdicka T, Fiser K, Hrusak O, Lund‐Johansen F, Kalina T: High‐resolution antibody array analysis of childhood acute leukemia cells. Mol·Cell·Proteomics. 2016·Apr·1; 15(4):1246‐61. <·PMID:·26785729·>
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