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Multicolor flow cytometric analysis of CD45R/B220 expression on viable Mouse splenic leukocytes. C57BL/6 Mouse splenocytes were preincubated with Purified Rat Anti-Mouse CD16/CD32 antibody (Mouse BD Fc Block™) [Cat. No. 553142]. The cells were then stained with PE Hamster Anti-Mouse CD3e antibody (Cat. No. 553064) and with either BD Horizon™ BUV615 Rat IgG2a, κ Isotype Control (Cat. No. 613005; Left Plot) or BD Horizon™ BUV615 Rat Anti-Mouse CD45R/B220 antibody (Cat. No. 569724; Right Plot) at 0.25 µg/test. DAPI (4',6-Diamidino-2-Phenylindole, Dihydrochloride) Solution (Cat. No. 564907) was added to cells right before analysis. The bivariate pseudocolor density plot showing the correlated expression of CD45R/B220 (or Ig Isotype control staining) versus CD3e was derived from gated events with the forward and side light-scatter characteristics of viable (DAPI-negative) splenic leukocytes. Flow cytometry and data analysis were performed using a BD LSRFortessa™ X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multicolor flow cytometric analysis of CD45R/B220 expression on viable Mouse splenic leukocytes. C57BL/6 Mouse splenocytes were preincubated with Purified Rat Anti-Mouse CD16/CD32 antibody (Mouse BD Fc Block™) [Cat. No. 553142]. The cells were then stained with PE Hamster Anti-Mouse CD3e antibody (Cat. No. 553064) and with either BD Horizon™ BUV615 Rat IgG2a, κ Isotype Control (Cat. No. 613005; Left Plot) or BD Horizon™ BUV615 Rat Anti-Mouse CD45R/B220 antibody (Cat. No. 569724; Right Plot) at 0.25 µg/test. DAPI (4',6-Diamidino-2-Phenylindole, Dihydrochloride) Solution (Cat. No. 564907) was added to cells right before analysis. The bivariate pseudocolor density plot showing the correlated expression of CD45R/B220 (or Ig Isotype control staining) versus CD3e was derived from gated events with the forward and side light-scatter characteristics of viable (DAPI-negative) splenic leukocytes. Flow cytometry and data analysis were performed using a BD LSRFortessa™ X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multicolor flow cytometric analysis of CD45R/B220 expression on viable Mouse splenic leukocytes. C57BL/6 Mouse splenocytes were preincubated with Purified Rat Anti-Mouse CD16/CD32 antibody (Mouse BD Fc Block™) [Cat. No. 553142]. The cells were then stained with PE Hamster Anti-Mouse CD3e antibody (Cat. No. 553064) and with either BD Horizon™ BUV615 Rat IgG2a, κ Isotype Control (Cat. No. 613005; Left Plot) or BD Horizon™ BUV615 Rat Anti-Mouse CD45R/B220 antibody (Cat. No. 569724; Right Plot) at 0.25 µg/test. DAPI (4',6-Diamidino-2-Phenylindole, Dihydrochloride) Solution (Cat. No. 564907) was added to cells right before analysis. The bivariate pseudocolor density plot showing the correlated expression of CD45R/B220 (or Ig Isotype control staining) versus CD3e was derived from gated events with the forward and side light-scatter characteristics of viable (DAPI-negative) splenic leukocytes. Flow cytometry and data analysis were performed using a BD LSRFortessa™ X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multicolor flow cytometric analysis of CD45R/B220 expression on viable Mouse splenic leukocytes. C57BL/6 Mouse splenocytes were preincubated with Purified Rat Anti-Mouse CD16/CD32 antibody (Mouse BD Fc Block™) [Cat. No. 553142]. The cells were then stained with PE Hamster Anti-Mouse CD3e antibody (Cat. No. 553064) and with either BD Horizon™ BUV615 Rat IgG2a, κ Isotype Control (Cat. No. 613005; Left Plot) or BD Horizon™ BUV615 Rat Anti-Mouse CD45R/B220 antibody (Cat. No. 569724; Right Plot) at 0.25 µg/test. DAPI (4',6-Diamidino-2-Phenylindole, Dihydrochloride) Solution (Cat. No. 564907) was added to cells right before analysis. The bivariate pseudocolor density plot showing the correlated expression of CD45R/B220 (or Ig Isotype control staining) versus CD3e was derived from gated events with the forward and side light-scatter characteristics of viable (DAPI-negative) splenic leukocytes. Flow cytometry and data analysis were performed using a BD LSRFortessa™ X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multicolor flow cytometric analysis of CD45R/B220 expression on viable Mouse splenic leukocytes. C57BL/6 Mouse splenocytes were preincubated with Purified Rat Anti-Mouse CD16/CD32 antibody (Mouse BD Fc Block™) [Cat. No. 553142]. The cells were then stained with PE Hamster Anti-Mouse CD3e antibody (Cat. No. 553064) and with either BD Horizon™ BUV615 Rat IgG2a, κ Isotype Control (Cat. No. 613005; Left Plot) or BD Horizon™ BUV615 Rat Anti-Mouse CD45R/B220 antibody (Cat. No. 569724; Right Plot) at 0.25 µg/test. DAPI (4',6-Diamidino-2-Phenylindole, Dihydrochloride) Solution (Cat. No. 564907) was added to cells right before analysis. The bivariate pseudocolor density plot showing the correlated expression of CD45R/B220 (or Ig Isotype control staining) versus CD3e was derived from gated events with the forward and side light-scatter characteristics of viable (DAPI-negative) splenic leukocytes. Flow cytometry and data analysis were performed using a BD LSRFortessa™ X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multicolor flow cytometric analysis of CD45R/B220 expression on viable Mouse splenic leukocytes. C57BL/6 Mouse splenocytes were preincubated with Purified Rat Anti-Mouse CD16/CD32 antibody (Mouse BD Fc Block™) [Cat. No. 553142]. The cells were then stained with PE Hamster Anti-Mouse CD3e antibody (Cat. No. 553064) and with either BD Horizon™ BUV615 Rat IgG2a, κ Isotype Control (Cat. No. 613005; Left Plot) or BD Horizon™ BUV615 Rat Anti-Mouse CD45R/B220 antibody (Cat. No. 569724; Right Plot) at 0.25 µg/test. DAPI (4',6-Diamidino-2-Phenylindole, Dihydrochloride) Solution (Cat. No. 564907) was added to cells right before analysis. The bivariate pseudocolor density plot showing the correlated expression of CD45R/B220 (or Ig Isotype control staining) versus CD3e was derived from gated events with the forward and side light-scatter characteristics of viable (DAPI-negative) splenic leukocytes. Flow cytometry and data analysis were performed using a BD LSRFortessa™ X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Any use of products other than the permitted use without the express written authorization of Becton, Dickinson and Company is strictly prohibited.
BD® CompBeads can be used as surrogates to assess fluorescence spillover (compensation). When fluorochrome conjugated antibodies are bound to BD® CompBeads, they have spectral properties very similar to cells. However, for some fluorochromes there can be small differences in spectral emissions compared to cells, resulting in spillover values that differ when compared to biological controls. It is strongly recommended that when using a reagent for the first time, users compare the spillover on cells and BD® CompBeads to ensure that BD® CompBeads are appropriate for your specific cellular application.
For optimal and reproducible results, BD Horizon Brilliant™ Stain Buffer should be used anytime BD Horizon Brilliant dyes are used in a multicolor flow cytometry panel. Fluorescent dye interactions may cause staining artifacts which may affect data interpretation. The BD Horizon Brilliant Stain Buffer was designed to minimize these interactions. When BD Horizon Brilliant Stain Buffer is used in the multicolor panel, it should also be used in the corresponding compensation controls for all dyes to achieve the most accurate compensation. For the most accurate compensation, compensation controls created with either cells or beads should be exposed to BD Horizon Brilliant Stain Buffer for the same length of time as the corresponding multicolor panel. More information can be found in the Technical Data Sheet of the BD Horizon Brilliant Stain Buffer (Cat. No. 563794/566349) or the BD Horizon Brilliant Stain Buffer Plus (Cat. No. 566385).
Note: When using high concentrations of antibody, background binding of this dye to erythroid cell subsets (mature erythrocytes and precursors) has been observed. For researchers studying these cell populations, or in cases where light scatter gating does not adequately exclude these cells from the analysis, this background may be an important factor to consider when selecting reagents for panel(s).
The RA3-6B2 monoclonal antibody specifically binds to an epitope on the extracellular domain of the transmembrane CD45 glycoprotein which is dependent upon the expression of exon A and specific carbohydrate residues. It is expressed on B lymphocytes at all stages from pro-B through mature and activated B cell, but it is decreased on plasma cells and a subset of memory B cells. The levels of CD45R expression on the B-cell lineage appear to be developmentally regulated. It is also reportedly found on the abnormal T cells involved in the lymphadenopathy of lpr/lpr and gld/gld mutant mice, on lytically active subsets of lymphokine-activated killer cells (NK cells and non-MHC-restricted CTL), on apoptotic T lymphocytes of mice injected with bacterial superantigen, on a population of NK-cell precursors in the bone marrow, and on B-lymphocyte, T-lymphocyte, and macrophage progenitors in fetal liver. The CD45R antigen has been reported not to be on hematopoietic stem cells, naive T lymphocytes, or MHC-restricted CTL. CD45 is a member of the Protein Tyrosine Phosphatase (PTP) family: Its intracellular (COOH-terminal) region contains two PTP catalytic domains, and the extracellular region is highly variable due to alternative splicing of exons 4, 5, and 6 (designated A, B, and C, respectively), plus differing levels of glycosylation. The CD45 isoforms detected in the mouse are cell type-, maturation, and activation state-specific. The CD45 isoforms play complex roles in T-cell and B-cell antigen receptor signal transduction. CD45R is commonly used as a pan B-cell marker; however, CD19 expression, detectable by the rat anti-mouse CD19 antibody (clone 1D3), is reported to be more restricted to the B-cell lineage. The rat anti-mouse CD45R antibody (clone RA3-6B2) has been reported to enhance isotype switching during in vitro B-cell responses and to inhibit in vivo B-cell responses. Cross-reaction of the RA3-6B2 clone with activated human T lymphocytes has also been reportedly observed.
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