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FITC Mouse Anti-Human CD23
Product Details
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BD™
CD23A; Fc-epsilon-RII; FCER2; FCE2; IGEBF; BLAST-2; CLEC4J; Leu-20
Human
Mouse BALB.B IgG1, κ
Epstein-Barr Virus Transformed Cell Line
Flow cytometry
12.5 µg/mL
20 μL
2208
RUO (GMP)


656148 Rev. 1
Antibody Details
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EBVCS-5

The CD23 antibody, clone EBVCS-5, is derived from the hybridization of Sp2/0 mouse myeloma cells with spleen cells from BALB/c mice immunized with an in vitro–transformed EBV cell line.

The CD23 antibody recognizes a 45-kilodalton (kDa) type II membrane glycoprotein, which is a human B-lymphocyte differentiation antigen. The CD23 antigen is also known as the low affinity IgE receptor, Fc epsilon RII, and FcεRII.

656148 Rev. 1
Format Details
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FITC
Fluorescein (FITC) is part of the BD blue family of dyes. This is a small organic fluorochrome with an excitation maximum (Ex Max) at 494-nm and an emission maximum (Em Max) at 518-nm. FITC is designed to be excited by the Blue laser (488-nm) and detected using an optical filter centered near 520 nm (e.g., a 530/30-nm bandpass filter). Please ensure that your instrument’s configurations (lasers and optical filters) are appropriate for this dye.
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FITC
Blue 488 nm
494 nm
518 nm
656148 Rev.1
Citations & References
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Development References (14)

  1. Capron M, Jouault T, Prin L, et al. Functional study of a monoclonal antibody to IgE Fc receptor (Fc epsilon R2) of eosinophils, platelets, and macrophages.. J Exp Med. 1986; 164(1):72-89. (Biology). View Reference
  2. Centers for Disease Control. Update: universal precautions for prevention of transmission of human immunodeficiency virus, hepatitis B virus, and other bloodborne pathogens in healthcare settings. MMWR. 1988; 37:377-388. (Biology).
  3. Clinical and Laboratory Standards Institute. 2005. (Biology).
  4. Gordon J, Rowe M, Walker L, Guy G. Ligation of the CD23,p45 (Blast-2, EBVCS) antigen triggers the cell-cycle progression of activated B lymphocytes. Eur J Immunol. 1986; 16:1075-1080. (Biology).
  5. Gordon J, Webb AJ, Walker L, Guy GR, Rowe M. Evidence of an association between CD23 and the receptor for a low molecular weight B cell growth factor. Eur J Immunol. 1986; 16:1627-1630. (Biology).
  6. Kikutani H, Inui S, Sato R, et al. Molecular structure of human lymphocyte receptor for immunoglobulin E.. Cell. 1986; 47(5):657-65. (Biology). View Reference
  7. Kikutani H, Suemura M, Owaki H, et al. Fc epsilon receptor, a specific differentiation marker transiently expressed on mature B cells before isotype switching.. J Exp Med. 1986; 164(5):1455-69. (Biology). View Reference
  8. Kintner C, Sugden B. Identification of antigenic determinants unique to the surfaces of cells transformed by Epstein-Barr Virus. Nature. 1981; 294:458-460. (Biology).
  9. Kwon HS, Park MC, Kim DG, et al. Identification of CD23 as a functional receptor for the proinflammatory cytokine AIMP1/p43. J Cell Sci. 2012; 125:4620-4629. (Biology).
  10. Nadler LM. Reinherz EL, Haynes BF, Nadler LM, Bernstein ID, ed. Leukocyte Typing II: Human B Lymphocytes. New York, NY: Springer-Verlag; 1986:25-26.
  11. Sherr E, Macy E, Kimata H, Gilly M, Saxon A. Binding the low affinity Fc ε R on B cells suppresses ongoing human IgE synthesis. J Immunol. 1989; 142:481-489. (Biology).
  12. Thorley-Lawson D, Nadler L, Bhan A, Schooley R. Blast-2 (EBVCS), an early cell surface marker of human B cell activation, is superinduced by Epstein Barr Virus. J Immunol. 1985; 134:3007-3012. (Biology).
  13. Yukawa K, Kikutani H, Owaki H, et al. A B-cell– specific differentiation antigen, CD23, is a receptor for IgE (FcεR) on lymphocytes. J Immunol. 1987; 138:2576-2580. (Biology).
  14. van Dongen JJ, Lhermitte L, Böttcher S, et al. EuroFlow antibody panels for standardized n-dimensional flow cytometric immunophenotyping of normal, reactive and malignant leukocytes. Leukemia. 2012; 26(9):1908-1975. (Biology). View Reference
View All (14) View Less
656148 Rev. 1

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