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Cytometric Bead Array NHP Th1/Th2 Cytokine Kit

Cytometric Bead Array NHP Th1/Th2 Cytokine Kit

(RUO)
Product Details
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BD™ Cytometric Bead Array (CBA)
Cynomolgus,Baboon (QC Testing)
RUO
AB_2869098


557800 Rev. 1
Components
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Description Quantity/Size Part Number
C) Human Th1/Th2 Cytokine Standards N/A 51-2428KC
E1) PE Positive Control Detector N/A 51-2429KC
CBA NHP Th1/Th2 PE Detection Reagent (B) N/A 51-9001780
Human IL-4 Capture Beads 1 Each (1 ea) 51-9005715
Human IL-5 Capture Beads 1 Each (1 ea) 51-9005718
Human TNF Capture Beads 1 Each (1 ea) 51-9005724
Human IFN-γ Capture Beads 1 Each (1 ea) 51-9005727
E1 PE Positive Control Detector 1 Each (1 ea) 51-9005732
E2 FITC Positive Control Detector 1 Each (1 ea) 51-9005734
D Cytometer Setup Beads 1 Each (1 ea) 51-9005731
Human IL-6 Capture Beads 1 Each (1 ea) 51-9005721
Human IL-2 Capture Beads 1 Each (1 ea) 51-9005712
G Assay Diluent 1 Each (1 ea) 51-2432KC
F Wash Buffer 1 Each (1 ea) 51-2431KC
557800 Rev. 1
Citations & References
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Development References (13)

  1. Bishop JE, Davis KA. A flow cytometric immunoassay for β2-microglobulin in whole blood. J Immunol Methods. 1997; 210:79–87. (Biology).
  2. Camilla C, Defoort JP, Delaage M, et al. A new flow cytometry-based multi-assay system 1, Application to cytokine immunoassays. Cytometry Suppl. 1998; 8:132. (Biology).
  3. Carson R, Vignali D. Simultaneous quantitation of 15 cytokines using a multiplexed flow cytometric assay. J Immunol Methods. 1999; 227:41–52. (Biology).
  4. Chen, R, L Lowe, et al. Simultaneous quantification of six human cytokines in a single sample using microparticle-based flow cytometric technology. Clin Chem. 1999; 9:1693-1694. (Biology).
  5. Collins DP, Luebering BJ, Shaut DM. T-lymphocyte functionality assessed by analysis of cytokine receptor expression, intracellular cytokine expression, and femtomolar detection of cytokine secretion by quantitative flow cytometry. Cytometry. 1998; 33:249-255. (Biology).
  6. Cook, EB, JL Stahl, et al. Simultaneous measurement of six cytokines in a single sample of human tears using microparticle-based flow cytometry: allergics vs non-allergics. J Immunol Methods. 2001; 254:109-118. (Biology).
  7. Dotti, G, B Salvodo, et al. Adenovector-induced expression of human-CD40-ligand (hCD40L) by multiple myeloma cells: A model for immunotherapy. Exp Hematol. 2001; 29:952-961. (Biology).
  8. Fulton RJ, McDade RL, Smith PL, Kienker LJ, Kettman JR Jr. Advanced multiplexed analysis with the FlowMetrix system. Clin Chem. 1997; 43:1749-1756. (Biology).
  9. Kricka LJ. Diamandis EP, Christopoulos TK, ed. Immunoassay. Academic Press; 1996:389-404.
  10. Lund-Johansen F, Davis K, Bishop J, de Waal Malefyt R. Flow cytometric analysis of immunoprecipitates: high-throughput analysis of protein phosphorylation and protein-protein interactions. Cytometry. 2000; 39(4):250-259. (Biology). View Reference
  11. McHugh TM. Flow microsphere immunoassay for the quantitative and simultaneous detection of multiple soluble analytes. Methods Cell Biol. 1994; 33:613-629. (Biology). View Reference
  12. Oliver KG, Kettman JR, Fulton RJ. Multiplexed analysis of human cytokines by use of the FlowMetrix system. Clin Chem. 1998; 44:2057-2060. (Biology).
  13. Stall, A, Q Sun, et al. A single tube flow cytometric multibead assay for isotyping mouse monoclonal antibodies, Abstract LB77. Experimental Biology Meeting. 1998. (Biology).
View All (13) View Less
557800 Rev. 1

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Comparisons, where applicable, are made against older BD Technology, manual methods or are general performance claims.  Comparisons are not made against non-BD technologies, unless otherwise noted.

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