BD Pharmingen™ Purified NA/LE Hamster Anti-Mouse CD28

BD Pharmingen™ Purified NA/LE Hamster Anti-Mouse CD28

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品牌: BD Pharmingen
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    反应种属:
    Mouse (QC Testing)
    Mouse (QC Testing)
    来源宿主:
    Syrian Hamster IgG2, λ1
    Syrian Hamster IgG2, λ1
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    产品介绍
    产品信息
    抗原名称
    CD28
    宿主
    Syrian Hamster IgG2, λ1
    免疫原
    Mouse EL-4 (T-cell lymphoma) Cells
    简单描述
    The 37.51 antibody reacts with CD28, which is expressed on most thymocytes, at low density on nearly all CD4+ and CD8+ peripheral T cells, and at even lower density on NK cells. The expression of CD28, in splenocytes and thymocytes,  has been reported to increase after activation. CD28 transcripts are found in mast cells, and cell-surface expression of CD28 is induced upon maturation or activation of mast cells. It has been reported that CD28 is not expressed on some populations of intraepithelial T lymphocytes. CD28 is a costimulatory receptor; its ligands include CD80 (B7-1) and CD86 (B7-2). The 37.51 mAb augments proliferation and cytokine production by activated T and NK cells and can provide a costimulatory signal for CTL induction. There is considerable evidence that CD28 is a costimulatory receptor involved in many, but not all, T cell-dependent immune responses.
    商品描述
    37.51 The 37.51 antibody reacts with CD28, which is expressed on most thymocytes, at low density on nearly all CD4+ and CD8+ peripheral T cells, and at even lower density on NK cells. The expression of CD28, in splenocytes and thymocytes,  has been reported to increase after activation. CD28 transcripts are found in mast cells, and cell-surface expression of CD28 is induced upon maturation or activation of mast cells. It has been reported that CD28 is not expressed on some populations of intraepithelial T lymphocytes. CD28 is a costimulatory receptor; its ligands include CD80 (B7-1) and CD86 (B7-2). The 37.51 mAb augments proliferation and cytokine production by activated T and NK cells and can provide a costimulatory signal for CTL induction. There is considerable evidence that CD28 is a costimulatory receptor involved in many, but not all, T cell-dependent immune responses.
    同种型
    Syrian Hamster IgG2, λ1
    克隆号
    克隆 37.51 (RUO)
    浓度
    1.0 mg/ml
    产品详情
    NA/LE
    NA/LE refers to the culture and purification methods and buffer used to produce purified antibodies with no azide and low endotoxin: Aqueous buffered solution containing no preservative, 0.2µm sterile filtered. Endotoxin level is ≤0.01 EU/µg (≤0.001 ng/µg) of protein as determined by the LAL assay.NA/LE are perfectly suited to be used in culture or in vivo (for nonhuman studies) for functional assays — blocking, neutralizing, activation or depletion — where the presence of azide may damage cells or exogenous endotoxin may signal or activate cells.
    应用
    实验应用
    Flow cytometry (Routinely Tested), Immunohistochemistry-frozen (Tested During Development), (Co)-stimulation (Reported)
    反应种属
    Mouse (QC Testing)
    目标/特异性
    CD28
    背景
    别名
    Cd28; CD28 antigen; T-cell-specific surface glycoprotein CD28
    制备和贮存
    存储溶液
    No azide/low endotoxin: Aqueous buffered solution containing protein stabilizer, no preservative, sterile filtered(0.2µm pore size membrane). Endotoxin level is ≤0.1 EU/µg (≤0.01 ng/µg) of protein as determined by the LAL assay.
    保存方式
    No azide/low endotoxin: Aqueous buffered solution containing protein stabilizer, no preservative, 0.2µm sterile filtered. Endotoxin level is ≤0.01 EU/µg (≤0.001 ng/µg) of protein as determined by the LAL assay.
    文献
    文献
    研发参考(19) 1. Bluestone JA. New perspectives of CD28-B7-mediated T cell costimulation. Immunity. 1995; 2(6):555-559. (Biology). 2. Chen Z, Ji Z, Ngiow SF, et al. TCF-1-Centered Transcriptional Network Drives an Effector versus Exhausted CD8 T Cell-Fate Decision. Immunity. 2019; 51(5):840-855. (Clone-specific: Flow cytometry). 3. Cibotti R, Punt JA, Dash KS, Sharrow SO, Singer A. Surface molecules that drive T cell development in vitro in the absence of thymic epithelium and in the absence of lineage-specific signals. Immunity. 1997; 6(3):245-255. (Biology). 4. Gelfanov V, Lai YG, Gelfanova V, Dong JY, Su JP, Liao NS. Differential requirement of CD28 costimulation for activation of murine CD8+ intestinal intraepithelial lymphocyte subsets and lymph node cells. J Immunol. 1995; 155(1):76-82. (Biology). 5. Gross JA, Callas E, Allison JP. Identification and distribution of the costimulatory receptor CD28 in the mouse. J Immunol. 1992; 149(2):380-388. (Immunogen: (Co)-stimulation, Immunoprecipitation). 6. Harding FA, Allison JP. CD28-B7 interactions allow the induction of CD8+ cytotoxic T lymphocytes in the absence of exogenous help. J Exp Med. 1993; 177(6):1791-1796. (Biology: (Co)-stimulation). 7. Harding FA, McArthur JG, Gross JA, Raulet DH, Allison JP. CD28-mediated signalling co-stimulates murine T cells and prevents induction of anergy in T-cell clones. Nature. 1992; 356(6370):607-609. (Biology: (Co)-stimulation). 8. Johnson JL, Georgakilas G, Petrovic J, et al. Lineage-Determining Transcription Factor TCF-1 Initiates the Epigenetic Identity of T Cells.. Immunity. 2018; 48(2):243-257.e10. (Clone-specific: Flow cytometry). 9. June CH, Bluestone JA, Nadler LM, Thompson CB. The B7 and CD28 receptor families. Immunol Today. 1994; 15(7):321-331. (Biology). 10. Krummel MF, Allison JP. CD28 and CTLA-4 have opposing effects on the response of T cells to stimulation. J Exp Med. 1995; 182(2):459-465. (Biology: (Co)-stimulation). 11. Lepesant H, Pierres M, Naquet P. Deficient antigen presentation by thymic epithelial cells reveals differential induction of T cell clone effector functions by CD28-mediated costimulation. Cell Immunol. 1995; 161(2):279-287. (Biology: (Co)-stimulation). 12. Marietta EV, Weis JJ, Weis JH. CD28 expression by mouse mast cells is modulated by lipopolysaccharide and outer surface protein A lipoprotein from Borrelia burgdorferi. J Immunol. 1997; 159(6):2840-2848. (Biology). 13. Masten BJ, Yates JL, Pollard Koga AM, Lipscomb MF. Characterization of accessory molecules in murine lung dendritic cell function: roles for CD80, CD86, CD54, and CD40L. Am J Respir Cell Mol Biol. 1997; 16(3):335-342. (Biology: Blocking). 14. Nandi D, Gross JA, Allison JP. CD28-mediated costimulation is necessary for optimal proliferation of murine NK cells. J Immunol. 1994; 152(7):3361-3369. (Biology: (Co)-stimulation). 15. Nishio M, Spielman J, Lee RK, Nelson DL, Podack ER. CD80 (B7.1) and CD54 (intracellular adhesion molecule-1) induce target cell susceptibility to promiscuous cytotoxic T cell lysis. J Immunol. 1996; 157(10):4347-4353. (Biology: (Co)-stimulation, Cytotoxicity). 16. Ong CJ, Lim AS, Teh HS. CD28-induced cytokine production and proliferation by thymocytes are differentially regulated by the p59fyn tyrosine kinase. J Immunol. 1997; 159(5):2169-2176. (Biology: (Co)-stimulation). 17. Rakasz E, Hagen M, Sandor M, Lynch RG. Gamma delta T cells of the murine vagina: T cell response in vivo in the absence of the expression of CD2 and CD28 molecules. Int Immunol. 1997; 9(1):161-167. (Biology). 18. Shahinian A, Pfeffer K, Lee KP, et al. Differential T cell costimulatory requirements in CD28-deficient mice. Science. 1993; 261(5121):609-612. (Biology). 19. Wells AD, Gudmundsdottir H, Turka LA. Following the fate of individual T cells throughout activation and clonal expansion. Signals from T cell receptor and CD28 differentially regulate the induction and duration of a proliferative response. J Clin Invest. 1997; 100(12):3173-3183. (Biology: (Co)-stimulation).
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    货号:
    567110
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    询价
    2mg
    500ug
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